Temperature control method and device for oil and gas pipeline equipment room and storage medium
Patent Information
- Application Number
- CN202211386119.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-11-07
- Publication Date
- 2026-09-25
- Estimated Expiration
- 2042-11-07
AI Technical Summary
然而,该温度控制方法需要操作人员手动调节,存在温度调节不及时的问题,进而影响主体设备的正常运行
[0050]本申请实施例提供的油气管道设备间的温度控制方法,通过设置在油气管道设备间的可编程控制器件获取油气管道设备间内的温度、电源状态以及当前时间,根据电源状态和当前时间分情况确定温度调节件的运行方式,并向温度调节件发送包含选定的运行方式的控制指令,使得温度调节件可以根据油气管道设备间内的温度、电源状态和当前时间确定预设时间段内的启动温度和设置温度以及工作模式,取代了现有人为手动调节油气管道设备间内温度的方式,可以对油气管道设备间内的温度进行及时调节,保障主体设备的正常运行。
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Figure CN117991838B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of oil and gas pipeline equipment control technology, and in particular to a temperature control method, device and storage medium for oil and gas pipeline equipment. Background Technology
[0002] In oil and gas pipeline equipment rooms, multiple oil and gas pipeline system cabinets are typically installed; these cabinets can be referred to as the main equipment. To ensure the normal operation of the main equipment in the equipment room, auxiliary equipment, such as air conditioners and electric heaters, is often needed to regulate the temperature of the oil and gas pipeline equipment room.
[0003] Currently, temperature control in oil and gas pipeline equipment rooms is mainly achieved by operators manually adjusting auxiliary equipment based on temperature sensors installed within the room. However, this method requires manual adjustment, which can lead to delays in temperature regulation and consequently affect the normal operation of the main equipment. Summary of the Invention
[0004] In view of this, this application provides a temperature control method, device and storage medium for oil and gas pipeline equipment rooms, which can adjust the temperature of oil and gas pipeline equipment rooms in a timely manner to ensure the normal operation of the main equipment.
[0005] Specifically, the following technical solutions are included:
[0006] On one hand, this application provides a temperature control method for an oil and gas pipeline equipment room, applied to a programmable controller within the oil and gas pipeline equipment room, the method comprising:
[0007] Obtain the temperature, power status, and current time within the oil and gas pipeline equipment room;
[0008] In response to the power status being external power connected and the current time representing a winter month, based on the temperature inside the oil and gas pipeline equipment room, the operating mode of the temperature regulator is determined to be the first operating mode, wherein the operating mode includes the start-up temperature and set temperature within a preset time period each day, as well as the working mode, wherein the working mode includes a cooling mode and a heating mode.
[0009] In response to the power supply status being externally powered on and the current time representing a summer month, the operating mode of the temperature regulating component is determined to be the second operating mode based on the temperature in the oil and gas pipeline equipment room;
[0010] In response to the power supply status being externally powered and the current time representing a month that is not in winter or summer, the temperature regulator is controlled not to start.
[0011] In response to the power supply status being an external power interruption, based on the temperature inside the oil and gas pipeline equipment room and the current time, the operating mode of the temperature regulator is determined to be the third operating mode;
[0012] Send control commands containing the operating mode to the temperature regulator.
[0013] In some embodiments, the winter months include December, January, and February. In response to the power supply status being externally powered and the current time representing winter, the temperature regulator is determined to operate in a first operating mode based on the temperature within the oil and gas pipeline equipment room, including:
[0014] In response to the power supply status being externally powered and the current time being within the first time period of the day, when the temperature in the oil and gas pipeline equipment room is lower than the first start-up temperature, the temperature regulator is activated, the set temperature is set to the first preset temperature, and the working mode is set to the heating mode.
[0015] In response to the power supply status being externally powered on and the current time being within the first time period of the day, if the temperature inside the oil and gas pipeline equipment room is greater than or equal to the first start-up temperature, the temperature regulator is controlled not to start.
[0016] In response to the power supply status being externally powered on and the current time being within the second time period of the day, if the temperature inside the oil and gas pipeline equipment room is greater than or equal to the second start-up temperature, the temperature regulator is controlled not to start.
[0017] In response to the power supply status being externally powered and the current time being within the second time period of the day, if the temperature inside the oil and gas pipeline equipment room is lower than the second start-up temperature, the temperature regulator is activated, the set temperature is set to the second preset temperature, and the working mode is set to the heating mode, wherein the sum of the duration of the first time period and the duration of the second time period is 24 hours.
[0018] In some embodiments, the summer months include June, July, and August. In response to the power state being externally powered and the current time representing summer, the temperature regulator is determined to operate in a second mode based on the temperature between the oil and gas pipeline equipment rooms, including:
[0019] In response to the power supply status being externally powered and the current time being within the first time period of the day, if the temperature in the oil and gas pipeline equipment room is greater than or equal to the third start-up temperature, the temperature regulator is activated, the set temperature is set to the first preset temperature, and the working mode is set to the cooling mode.
[0020] In response to the power supply status being externally powered on and the current time being within the first time period of the day, if the temperature inside the oil and gas pipeline equipment room is lower than the third start-up temperature, the temperature regulator is controlled not to start.
[0021] In response to the power supply status being externally powered on and the current time being within the second time period of the day, if the temperature inside the oil and gas pipeline equipment room is lower than the fourth start-up temperature, the temperature regulator is controlled not to start, wherein the sum of the duration of the first time period and the duration of the second time period is 24 hours.
[0022] In some embodiments, the third operating mode includes a first sub-operating mode and a second sub-operating mode. The step of determining the operating mode of the temperature regulator as the third operating mode in response to an external power outage, based on the temperature within the oil and gas pipeline equipment room and the current time, includes:
[0023] In response to the power supply status being an external power outage and the current time representing a winter month, the operating mode of the temperature regulator is determined to be the first sub-operating mode based on the temperature inside the oil and gas pipeline equipment room.
[0024] In response to the power supply status being an external power outage and the current time representing a summer month, the operating mode of the temperature regulator is determined to be the second sub-operating mode based on the temperature inside the oil and gas pipeline equipment room;
[0025] In response to the power supply status being an external power interruption and the current time representing a month that is not in winter or summer, the temperature regulator is controlled not to start.
[0026] In some embodiments, the winter months include December, January, and February. In response to a power outage and the current time representing a winter month, based on the temperature within the oil and gas pipeline equipment room, the operating mode of the temperature regulator is determined to be the first sub-operating mode, including:
[0027] In response to the power supply status being an external power outage and the current time being within the first time period of the day, when the temperature in the oil and gas pipeline equipment room is lower than the fifth start-up temperature, the temperature regulator is activated, the set temperature is set to the first preset temperature, and the working mode is set to the heating mode.
[0028] In response to the power supply status being an external power outage and the current time being within the first time period of the day, if the temperature inside the oil and gas pipeline equipment room is greater than or equal to the fifth start-up temperature, the temperature regulator is controlled not to start.
[0029] In response to the power supply status being an external power outage and the current time being within the second time period of the day, if the temperature in the oil and gas pipeline equipment room is lower than the sixth start-up temperature, the temperature regulator is activated, the set temperature is set to the second preset temperature, and the working mode is set to the heating mode.
[0030] In response to the power supply status being an external power outage and the current time being within the second time period of the day, if the temperature inside the oil and gas pipeline equipment room is greater than the seventh start-up temperature, the temperature regulator is controlled not to start, wherein the sum of the duration of the first time period and the duration of the second time period is 24 hours.
[0031] In some embodiments, the summer months include June, July, and August. In response to a power outage and the current time representing a summer month, the temperature regulator is determined to operate in the second sub-operation mode based on the temperature within the oil and gas pipeline equipment room, including:
[0032] In response to the power supply status being an external power outage and the current time being within the first time period of the day, if the temperature inside the oil and gas pipeline equipment room is greater than the eighth start-up temperature and less than the ninth start-up temperature, the temperature regulator is controlled not to start.
[0033] In response to the power supply status being an external power outage and the current time being within the first time period of the day, if the temperature in the oil and gas pipeline equipment room is greater than or equal to the ninth start-up temperature, the temperature regulator is activated, the set temperature is set to the second preset temperature, and the working mode is set to the cooling mode.
[0034] In response to the power supply status being an external power outage and the current time being within the second time period of the day, if the temperature in the oil and gas pipeline equipment room is greater than or equal to the eighth start-up temperature, the temperature regulator is activated, the set temperature is set to the third preset temperature, and the working mode is set to the cooling mode.
[0035] In response to the power supply status being an external power outage and the current time being within the second time period of the day, if the temperature inside the oil and gas pipeline equipment room is greater than the tenth start-up temperature but less than the eighth start-up temperature, the temperature regulator is controlled not to start, wherein the sum of the duration of the first time period and the duration of the second time period is 24 hours.
[0036] In some embodiments, before sending the control command containing the operating mode to the temperature regulator, the method further includes:
[0037] Obtain the device status of the temperature regulating component;
[0038] Based on the device status of the temperature regulator, it is determined that a signal connection has been established with the temperature regulator.
[0039] In some embodiments, after sending a control command including an operating mode to the temperature regulator, the method further includes:
[0040] Obtain the energy consumption of the temperature regulating component;
[0041] Based on the energy consumption of the temperature regulator, data on the reduction in energy consumption of the temperature regulator are obtained.
[0042] On the other hand, embodiments of this application provide a temperature control device for an oil and gas pipeline equipment room, the device comprising:
[0043] The first acquisition module is used to acquire the temperature, power status and current time inside the oil and gas pipeline equipment room;
[0044] The first determining module is used to determine the operating mode of the temperature regulator as a first operating mode in response to the power state being external power connected and the current time representing a winter month, based on the temperature inside the oil and gas pipeline equipment room. The operating mode includes the start-up temperature and set temperature within a preset time period each day, as well as the working mode, which includes a cooling mode and a heating mode.
[0045] The second determining module is used to determine the operating mode of the temperature regulating component as the second operating mode in response to the power supply status being external power on and the current time representing a summer month, based on the temperature in the oil and gas pipeline equipment room.
[0046] The control module is configured to control the temperature regulator not to start in response to the power state being external power on and the current time representing a month that is not in winter or summer.
[0047] The third determining module is used to determine the operating mode of the temperature regulating component as the third operating mode in response to the power supply status being an external power interruption, based on the temperature inside the oil and gas pipeline equipment room and the current time.
[0048] The transmitting module is used to send control commands, including the operating mode, to the temperature regulator.
[0049] In another aspect, embodiments of this application provide a non-volatile computer-readable storage medium that, when instructions in the storage medium are executed by a processor of an electronic device, enables the electronic device to perform the temperature control method for oil and gas pipeline equipment as described in any of the above aspects.
[0050] The temperature control method for oil and gas pipeline equipment rooms provided in this application embodiment acquires the temperature, power status, and current time within the oil and gas pipeline equipment room through a programmable controller installed in the room. Based on the power status and current time, the operating mode of the temperature regulator is determined, and a control command containing the selected operating mode is sent to the temperature regulator. This allows the temperature regulator to determine the start-up temperature, set temperature, and operating mode within a preset time period based on the temperature, power status, and current time within the oil and gas pipeline equipment room. This replaces the existing method of manually adjusting the temperature within the oil and gas pipeline equipment room, enabling timely temperature adjustment and ensuring the normal operation of the main equipment. Attached Figure Description
[0051] To more clearly illustrate the technical solutions in the embodiments of this application, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0052] Figure 1 This application provides a schematic diagram of an application scenario for an oil and gas pipeline equipment room.
[0053] Figure 2 A flowchart illustrating a temperature control method for an oil and gas pipeline equipment room provided in this application embodiment;
[0054] Figure 3 The flowchart illustrates a temperature control method for an oil and gas pipeline equipment room provided in this application, which determines the operating mode of the temperature regulator to be the first operating mode in response to the power supply being connected to the external power supply and the current time being a winter month, based on the temperature inside the oil and gas pipeline equipment room.
[0055] Figure 4 The flowchart illustrates a temperature control method for an oil and gas pipeline equipment room provided in this application, which determines the operating mode of the temperature regulator to be the second operating mode in response to the power supply being connected to the external power supply and the current time being a summer month, based on the temperature of the oil and gas pipeline equipment room.
[0056] Figure 5 The flowchart illustrates a temperature control method for an oil and gas pipeline equipment room provided in this application, which determines the operating mode of the temperature regulator to be the third operating mode in response to an external power outage, based on the temperature inside the oil and gas pipeline equipment room and the current time.
[0057] Figure 6 This is a schematic diagram of a temperature control device for an oil and gas pipeline equipment room provided in an embodiment of this application. Detailed Implementation
[0058] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.
[0059] Because the operation of the equipment requires specific temperature control within the oil and gas pipeline equipment room, to ensure the stable operation of the main equipment, the temperature is primarily controlled by operators manually adjusting auxiliary equipment such as air conditioners and electric heaters based on the temperature readings from the temperature sensors within the equipment room. However, this method requires manual adjustment, leading to untimely temperature regulation. Furthermore, when the external power supply is interrupted, the air conditioners and electric heaters cannot be shut off promptly, resulting in significant energy consumption. In cases of insufficient power reserves, this can even lead to power depletion, severely impacting the normal operation of the main equipment.
[0060] Therefore, this application provides a temperature control method for oil and gas pipeline equipment rooms, which can adjust the temperature of oil and gas pipeline equipment rooms in a timely manner.
[0061] Figure 1 This is a schematic diagram illustrating an application scenario for an oil and gas pipeline equipment room, provided as an embodiment of this application. See also... Figure 1 The implementation environment includes: a remote control console 100, an oil and gas pipeline equipment room 101, and programmable logic devices 102, temperature measuring devices 103, main equipment 104, temperature regulating devices 105 and power supply 106 located in the oil and gas pipeline equipment room.
[0062] The programmable logic device 102 is connected to the temperature measuring element 103, the main device 104, the temperature regulating element 105, the power supply 106 and the remote control console 100, respectively. The programmable logic device 102 is equipped with a system program 1020, and the power supply 106 is equipped with a power controller 1060.
[0063] Figure 2 A flowchart illustrating a temperature control method for an oil and gas pipeline equipment room provided in an embodiment of this application. See also... Figure 2 This method is applied to programmable logic controllers in oil and gas pipeline equipment rooms and includes the following steps:
[0064] Step 201: Obtain the temperature, power status, and current time inside the oil and gas pipeline equipment room.
[0065] By acquiring the temperature, power status, and current time of the oil and gas pipeline equipment room, the temperature, power status, and current time of the oil and gas pipeline equipment room are used to provide a basis for subsequent temperature control.
[0066] In some embodiments, since the programmable logic controller is connected to a thermometer, the programmable logic controller can use the temperature sensor to obtain the temperature between oil and gas pipeline equipment; since the programmable logic controller is connected to a power supply, the system program within the programmable logic controller can obtain the power status from the power supply via the MODBUS protocol; the current time can be provided by a clock source in the system program running on the programmable controller, and the current time can be characterized by the system time indicated by the clock source.
[0067] In some embodiments, the power supply status includes external power connection and external power interruption. External power connection means that the power supply is connected to the mains power and stores electrical energy; external power interruption means that the power supply is disconnected from the mains power and the power supply uses the stored electrical energy to supply power to the oil and gas pipeline equipment.
[0068] In some embodiments, the power controller within the power supply can acquire the power status.
[0069] In some embodiments, the power supply may be an uninterruptible power supply.
[0070] In some embodiments, normal operation of the main equipment requires the temperature in the oil and gas pipeline equipment room to be within the range of 0°C to 45°C.
[0071] Step 202: In response to the power supply status being externally powered on and the current time representing a winter month, the operating mode of the temperature regulator is determined to be the first operating mode based on the temperature inside the oil and gas pipeline equipment room.
[0072] The operation mode includes the start-up temperature and set temperature within a preset time period each day, as well as the working mode, which includes cooling mode and heating mode.
[0073] When the power status indicates external power is on, it means there is sufficient power to meet the electrical needs of the main equipment in the oil and gas pipeline equipment room and maintain the operation of the temperature control components. If the current time indicates a winter month, it means the temperature in the oil and gas pipeline equipment room is low, requiring heating methods such as heating systems to ensure the normal operation of the main equipment. By determining the operating mode of the temperature control components based on the power status, the current time, and the temperature inside the oil and gas pipeline equipment room, temperature control of the equipment room can be achieved.
[0074] Understandably, since the programmable logic device is connected to the temperature regulator, after determining the operating mode of the temperature regulator, the programmable logic device can control the start-up temperature, set temperature, and operating mode of the temperature regulator.
[0075] In some embodiments, the temperature control device can be an air conditioner or an electric heater. It should be noted that the electric heater is only used during the winter months, while the air conditioner can be used in all seasons.
[0076] In some embodiments, winter months include December, January, and February, see [link to relevant documentation]. Figure 3 This step can specifically include the following sub-steps:
[0077] Step 2021: In response to the power supply status being externally connected and the current time being within the first time period of the day, if the temperature in the oil and gas pipeline equipment room is lower than the first start-up temperature, the temperature regulator is activated, the set temperature is set to the first preset temperature, and the working mode is set to heating mode.
[0078] When the power supply is on and the current time is within the first time period of the day, if the temperature in the oil and gas pipeline equipment room is lower than the first start-up temperature, it indicates that the temperature inside the oil and gas pipeline equipment room is low and it is necessary to control the temperature regulator to adjust the heating to raise the temperature inside the oil and gas pipeline equipment room.
[0079] In some embodiments, the first time period can be from 8 a.m. to 6 p.m.
[0080] It should be noted that the first time period was set with the length of daytime in winter in mind. Dividing the day into this period is beneficial for controlling the temperature of oil and gas pipeline equipment rooms during the day.
[0081] In some embodiments, the first start-up temperature can be 15°C, and the first preset temperature can be 21°C.
[0082] It should be noted that the setting of the first start-up temperature takes into account the low temperature in the oil and gas pipeline equipment room during the day in winter. By setting the first preset temperature to 21°C, it is beneficial for the oil and gas pipeline equipment room to heat up more quickly during the day.
[0083] Step 2022: In response to the power supply status being externally powered on and the current time being within the first time period of the day, if the temperature inside the oil and gas pipeline equipment room is greater than or equal to the first start-up temperature, the temperature regulating component is controlled not to start.
[0084] When the power supply is on and the current time is within the first time period of the day, if the temperature in the oil and gas pipeline equipment room is greater than or equal to the first start-up temperature, it indicates that the temperature in the oil and gas pipeline equipment room is within a suitable temperature range. Within this suitable temperature range, the normal operation of the main equipment can be guaranteed, and there is no need to use temperature regulating components to adjust the temperature. Therefore, there is no need to start the temperature regulating components.
[0085] Step 2023: In response to the power supply status being externally powered on and the current time being within the second time period of the day, if the temperature inside the oil and gas pipeline equipment room is greater than or equal to the second start-up temperature, the temperature regulating component is not activated.
[0086] The sum of the duration of the first time period and the duration of the second time period is 24 hours. In other words, the temperature of the oil and gas pipeline equipment room can be controlled around the clock through the first and second time periods.
[0087] In this embodiment of the application, corresponding to the first time period, the second time period can be from 6 p.m. to 8 a.m. the next day.
[0088] When the power supply is on and the current time is within the second time period of the day, if the temperature in the oil and gas pipeline equipment room is greater than or equal to the second start-up temperature, it indicates that the temperature in the oil and gas pipeline equipment room is within a suitable temperature range. Within this suitable temperature range, the normal operation of the main equipment can be guaranteed, and there is no need to use temperature regulating components to adjust the temperature. Therefore, there is no need to start the temperature regulating components.
[0089] In some embodiments, the second start-up temperature can be 10°C.
[0090] Step 2024: In response to the power supply status being externally connected and the current time being within the second time period of the day, if the temperature inside the oil and gas pipeline equipment room is lower than the second start-up temperature, the temperature regulator is activated, the set temperature is set to the second preset temperature, and the working mode is set to heating mode.
[0091] When the power supply is on and the current time is within the second time period of the day, if the temperature in the oil and gas pipeline equipment room is lower than the second start-up temperature, it indicates that the temperature in the oil and gas pipeline equipment room is low and the temperature regulator needs to be controlled to adjust the heating to raise the temperature inside the oil and gas pipeline equipment room.
[0092] In some embodiments, the second start-up temperature can be 10°C, and the second preset temperature can be 25°C.
[0093] It should be noted that the initial start-up temperature setting takes into account the fact that the temperature in the oil and gas pipeline equipment room is lower at night than during the day in winter. By setting the temperature to 25°C, it is beneficial for the oil and gas pipeline equipment room to heat up more quickly at night.
[0094] Step 203: In response to the power supply status being externally powered on and the current time representing a summer month, the operating mode of the temperature regulator is determined to be the second operating mode based on the temperature in the oil and gas pipeline equipment room.
[0095] When the power status indicates external power is on, it means there is sufficient power to meet the power needs of the main equipment in the oil and gas pipeline equipment room and maintain the operation of the temperature control components. If the current time indicates a summer month, it means the temperature in the oil and gas pipeline equipment room is high, requiring cooling methods such as refrigeration to ensure the normal operation of the main equipment. By determining the operating mode of the temperature control components based on the power status, current time, and temperature inside the oil and gas pipeline equipment room, temperature control can be achieved.
[0096] In some embodiments, summer months include June, July, and August, see [link to relevant documentation]. Figure 4 This step can specifically include the following sub-steps:
[0097] Step 2031: In response to the power supply status being externally powered on and the current time being within the first time period of the day, if the temperature in the oil and gas pipeline equipment room is greater than or equal to the third start-up temperature, the temperature regulator is activated, the set temperature is set to the first preset temperature, and the working mode is set to cooling mode.
[0098] When the power supply is on and the current time is within the first time period of the day, if the temperature in the oil and gas pipeline equipment room is greater than or equal to the third start-up temperature, it indicates that the temperature inside the oil and gas pipeline equipment room is high and the temperature regulator needs to be controlled for cooling to reduce the temperature inside the oil and gas pipeline equipment room.
[0099] In some embodiments, the third start-up temperature can be 25°C, and the first preset temperature can be 21°C.
[0100] It should be noted that the setting of the third start-up temperature takes into account the high temperature in the oil and gas pipeline equipment room during the day in summer. By setting the first preset temperature to 21℃, it is beneficial for the oil and gas pipeline equipment room located during the day to cool down more quickly.
[0101] Step 2032: In response to the power supply status being externally powered on and the current time being within the first time period of the day, if the temperature inside the oil and gas pipeline equipment room is lower than the third start-up temperature, the temperature regulating component is controlled not to start.
[0102] When the power supply is on and the current time is within the first time period of the day, if the temperature in the oil and gas pipeline equipment room is lower than the third start-up temperature, it means that the temperature in the oil and gas pipeline equipment room is within a suitable temperature range. Within this suitable temperature range, the normal operation of the main equipment can be guaranteed, and there is no need to use temperature regulating components to adjust the temperature. Therefore, there is no need to start the temperature regulating components.
[0103] Step 2033: In response to the power supply status being externally powered on and the current time being within the second time period of the day, if the temperature inside the oil and gas pipeline equipment room is lower than the fourth start-up temperature, the temperature regulating component is not activated.
[0104] When the power supply is on and the current time is within the second time period of the day, if the temperature in the oil and gas pipeline equipment room is lower than the fourth start-up temperature, it means that the temperature in the oil and gas pipeline equipment room is within a suitable temperature range. Within this suitable temperature range, the normal operation of the main equipment can be guaranteed, and there is no need to use temperature regulating components to adjust the temperature. Therefore, there is no need to start the temperature regulating components.
[0105] Step 204: In response to the power supply status being externally powered and the current time being a month that is not in winter or summer, the temperature regulator is controlled not to start.
[0106] When the current time refers to a month that is not in winter or summer, that is, when the current time refers to spring or autumn, the temperature in the oil and gas pipeline equipment room is within a suitable temperature range. Within this suitable temperature range, the normal operation of the main equipment can be guaranteed, and there is no need to use temperature regulating components to adjust the temperature. Therefore, there is no need to start the temperature regulating components.
[0107] Step 205: In response to the power supply status being an external power outage, based on the temperature inside the oil and gas pipeline equipment room and the current time, determine the operating mode of the temperature regulator to be the third operating mode.
[0108] When the power supply status indicates an external power outage, meaning insufficient power, the stored power is used to supply power to the main equipment and temperature control components. Based on the temperature inside the oil and gas pipeline equipment room and the current time, the operating mode of the temperature control components is determined, thereby controlling the temperature of the oil and gas pipeline equipment room and ensuring low energy consumption in this operating mode. This ensures that the operation of the main equipment is prioritized even with insufficient power. Simultaneously, by setting the temperature control components to a third operating mode, allowing them to operate with low energy consumption, the time required for maintenance personnel to reach the oil and gas pipeline equipment room in case of a power outage can be reduced. Scientific and rational energy management in the equipment room ensures that the power supply can maintain the operation of the main equipment after a power outage.
[0109] In some embodiments, in response to an external power interruption, the programmable controller sends an alarm signal to the remote control console to control the human-machine interface of the remote control console to display the alarm information of the external power interruption; in response to receiving the control signal of the third operating mode from the remote control console, the operating mode of the temperature regulator is determined to be the third operating mode to achieve low-power operation of the temperature regulator.
[0110] In some embodiments, the third operating mode includes a first sub-operating mode and a second sub-operating mode.
[0111] Further, see Figure 5 This step may include the following sub-steps:
[0112] Step 2051: In response to the power supply status being an external power outage and the current time representing a winter month, the operating mode of the temperature regulator is determined to be the first sub-operating mode based on the temperature inside the oil and gas pipeline equipment room.
[0113] When the power supply is interrupted and the current time indicates a winter month, taking into account both the power supply status and the temperature inside the oil and gas pipeline equipment room to determine the sub-operation mode of the temperature regulator can result in lower energy consumption of the temperature regulator under that sub-operation mode.
[0114] In some embodiments, this step may include the following sub-steps:
[0115] Step 20511: In response to the power supply status being an external power outage and the current time being within the first time period of the day, if the temperature in the oil and gas pipeline equipment room is lower than the fifth start-up temperature, the temperature regulator is activated, the set temperature is set to the first preset temperature, and the working mode is set to heating mode.
[0116] When the power is insufficient and the current time is within the first time period of the day, if the temperature in the oil and gas pipeline equipment room is lower than the fifth start-up temperature, it indicates that the temperature in the oil and gas pipeline equipment room is low. It is necessary to control the temperature regulator to adjust the heating to raise the temperature in the oil and gas pipeline equipment room.
[0117] In some embodiments, the fifth start-up temperature can be 10°C, and the first preset temperature can be 21°C.
[0118] It should be noted that the fifth start-up temperature setting takes into account the low temperature and insufficient power in the oil and gas pipeline equipment room during the day in winter. The first preset temperature is set to 21℃, which is conducive to the heating of the oil and gas pipeline equipment room during the day, and the energy consumption of the temperature regulating component is small.
[0119] Step 20512: In response to the power supply status being an external power outage and the current time being within the first time period of the day, if the temperature inside the oil and gas pipeline equipment room is greater than or equal to the fifth start-up temperature, the temperature regulating component is controlled not to start.
[0120] When the power is insufficient and the current time is within the first time period of the day, if the temperature in the oil and gas pipeline equipment room is greater than or equal to the fifth start-up temperature, it indicates that the temperature in the oil and gas pipeline equipment room is within a suitable temperature range. Within this suitable temperature range, the normal operation of the main equipment can be guaranteed, and there is no need to use temperature regulating components to adjust the temperature. Therefore, there is no need to start the temperature regulating components, thereby reducing the energy consumption of the temperature regulating components.
[0121] Step 20513: In response to the power supply status being an external power outage and the current time being within the second time period of the day, if the temperature inside the oil and gas pipeline equipment room is lower than the sixth start-up temperature, the temperature regulator is activated, the set temperature is set to the second preset temperature, and the working mode is set to heating mode.
[0122] When the power is insufficient and the current time is within the second time period of the day, if the temperature in the oil and gas pipeline equipment room is less than or equal to the sixth start-up temperature, it indicates that the temperature in the oil and gas pipeline equipment room is low and it is necessary to control the temperature regulator to adjust the heating to raise the temperature in the oil and gas pipeline equipment room.
[0123] In some embodiments, the sixth start-up temperature can be 5°C, and the second preset temperature can be 25°C.
[0124] It should be noted that the setting of the sixth start-up temperature takes into account that the temperature of the oil and gas pipeline equipment room at night in winter is lower than that during the day and that the power is insufficient. The second preset temperature is set to 25°C, which is beneficial for heating the oil and gas pipeline equipment room at night, and the energy consumption of the temperature regulating component is relatively small.
[0125] Step 20514: In response to the power supply status being an external power outage and the current time being within the second time period of the day, if the temperature inside the oil and gas pipeline equipment room is greater than the seventh start-up temperature, the temperature regulator is controlled not to start.
[0126] When the power is insufficient and the current time is within the second time period of the day, if the temperature in the oil and gas pipeline equipment room is greater than the seventh start-up temperature, it indicates that the temperature in the oil and gas pipeline equipment room is within a suitable temperature range. Within this suitable temperature range, the normal operation of the main equipment can be guaranteed, and there is no need to use temperature regulators to adjust the temperature. Therefore, there is no need to start the temperature regulators, thereby reducing the energy consumption of the temperature regulators.
[0127] In some embodiments, the seventh start-up temperature can be 15°C.
[0128] In one possible example, when the power supply is interrupted and the current time is between 8:00 AM and 6:00 PM on a certain day in December, if the temperature in the oil and gas pipeline equipment room is less than 10°C, the air conditioner is controlled to start in heating mode or the electric heater is started, and the temperature is set to 21°C, thereby raising the temperature inside the oil and gas pipeline equipment room; when the power supply is interrupted and the current time is between 8:00 AM and 6:00 PM on a certain day in December, if the temperature in the oil and gas pipeline equipment room is greater than or equal to 10°C, the air conditioner and / or electric heater are controlled. The air conditioner will not start; when the power supply is interrupted and the current time is between 6 PM and 8 AM the next day on a certain day in December, and the temperature in the oil and gas pipeline equipment room is less than 5°C, the air conditioner will be controlled to start in heating mode or the electric heater will be started, and the temperature will be set to 25°C to raise the temperature in the oil and gas pipeline equipment room; when the power supply is interrupted and the current time is between 6 PM and 8 AM the next day on a certain day in December, and the temperature in the oil and gas pipeline equipment room is greater than 15°C, the air conditioner and / or electric heater will not start.
[0129] Step 2052: In response to the power supply status being an external power interruption and the current time representing a summer month, the operating mode of the temperature regulator is determined to be the second sub-operating mode based on the temperature inside the oil and gas pipeline equipment room.
[0130] When the power supply is interrupted and the current time indicates a summer month, taking into account both the power supply status and the temperature inside the oil and gas pipeline equipment room to determine the sub-operation mode of the temperature regulator can result in lower energy consumption of the temperature regulator under that sub-operation mode.
[0131] In some embodiments, this step may include the following sub-steps:
[0132] Step 20521: In response to the power supply status being an external power outage and the current time being within the first time period of the day, if the temperature inside the oil and gas pipeline equipment room is greater than the eighth start-up temperature but less than the ninth start-up temperature, the temperature regulating component is not activated.
[0133] When the power is insufficient and the time is within the first time period of the day, if the temperature in the oil and gas pipeline equipment room is greater than the eighth start-up temperature but less than the ninth start-up temperature, it indicates that the temperature in the oil and gas pipeline equipment room is within a suitable temperature range. Within this suitable temperature range, the normal operation of the main equipment can be guaranteed, and there is no need to use temperature regulating components to adjust the temperature. Therefore, there is no need to start the temperature regulating components, thereby reducing the energy consumption of the temperature regulating components.
[0134] In some embodiments, the eighth start-up temperature can be 25°C, and the ninth start-up temperature can be 30°C.
[0135] Step 20522: In response to the power supply status being an external power outage and the current time being within the first time period of the day, if the temperature in the oil and gas pipeline equipment room is greater than or equal to the ninth start-up temperature, the temperature regulator is activated, the set temperature is set to the second preset temperature, and the working mode is set to cooling mode.
[0136] When the power is insufficient and the current time is within the first time period of the day, if the temperature in the oil and gas pipeline equipment room is greater than or equal to the ninth start-up temperature, it indicates that the temperature in the oil and gas pipeline equipment room is very high, and it is necessary to control the temperature regulator to perform cooling regulation in order to raise the temperature in the oil and gas pipeline equipment room.
[0137] In some embodiments, the ninth start-up temperature can be 30°C, and the second preset temperature can be 25°C.
[0138] It should be noted that the setting of the ninth start-up temperature takes into account the high daytime temperature and insufficient power in the oil and gas pipeline equipment room during summer. The second preset temperature is set to 25℃, which is conducive to the cooling of the temperature regulating components during the daytime and has low energy consumption.
[0139] Step 20523: In response to the power supply status being an external power outage and the current time being within the second time period of the day, if the temperature in the oil and gas pipeline equipment room is greater than or equal to the eighth start-up temperature, the temperature regulator is activated, the set temperature is set to the third preset temperature, and the working mode is set to cooling mode.
[0140] When the power is insufficient and the current time is within the second time period of the day, and the temperature in the oil and gas pipeline equipment room is greater than or equal to the eighth start-up temperature, in order to prevent the temperature in the oil and gas pipeline equipment room from rising during the daytime in summer and affecting the operation of the main equipment, it is necessary to control the cooling adjustment of the temperature regulator and set the temperature to the third preset temperature.
[0141] In some embodiments, the third preset temperature can be 20°C.
[0142] It should be noted that the third preset temperature is set to 20℃, which is beneficial for the temperature regulating component to cool down, and also takes into account the insufficient power supply, so that the energy consumption of the temperature regulating component is small.
[0143] Step 20524: In response to the power supply status being an external power outage and the current time being within the second time period of the day, if the temperature inside the oil and gas pipeline equipment room is greater than the tenth start-up temperature but less than the eighth start-up temperature, the temperature regulating component is not activated.
[0144] When the power is insufficient and the current time is within the second time period of the day, if the temperature in the oil and gas pipeline equipment room is greater than the tenth start-up temperature but less than the eighth start-up temperature, it indicates that the temperature in the oil and gas pipeline equipment room is within a suitable temperature range. Within this suitable temperature range, the normal operation of the main equipment can be guaranteed, and there is no need to use temperature regulating components to adjust the temperature. Therefore, there is no need to start the temperature regulating components, thereby reducing the energy consumption of the temperature regulating components.
[0145] In some embodiments, the tenth start-up temperature can be 20°C.
[0146] In one possible example, when the power supply is interrupted and the current time is between 8:00 AM and 6:00 PM on a certain day in August, if the temperature in the oil and gas pipeline equipment room is greater than 25°C and less than 30°C, the air conditioner is controlled not to start; when the power supply is interrupted and the current time is between 8:00 AM and 6:00 PM on a certain day in August, if the temperature in the oil and gas pipeline equipment room is greater than or equal to 30°C, the air conditioner is controlled to start in cooling mode and set the temperature to 25°C, thereby lowering the temperature in the oil and gas pipeline equipment room; when the power supply is interrupted and the current time is between 6:00 PM on a certain day in August and 8:00 AM the following morning, if the temperature in the oil and gas pipeline equipment room is greater than or equal to 25°C, the air conditioner is controlled to start in cooling mode and set the temperature to 20°C, thereby lowering the temperature in the oil and gas pipeline equipment room; when the power supply is interrupted and the current time is between 6:00 PM on a certain day in August and 8:00 AM the following morning, if the temperature in the oil and gas pipeline equipment room is less than 20°C, the air conditioner is controlled not to start.
[0147] Step 2053: In response to the power supply status being an external power interruption and the current time representing a month that is not in winter or summer, the temperature regulator is controlled not to start.
[0148] When the power supply status is an external power outage and the current time represents a month that is not in winter or summer, that is, when the current time represents spring or autumn, the temperature in the oil and gas pipeline equipment room is within a suitable temperature range. Within this suitable temperature range, the normal operation of the main equipment can be guaranteed, and there is no need to use temperature regulating components to adjust the temperature. Therefore, there is no need to start the temperature regulating components.
[0149] Step 206: Send a control command containing the operating mode to the temperature regulator.
[0150] Since the programmable logic device is connected to the temperature regulator, the temperature regulator can be controlled to perform actions containing the control commands to regulate the temperature between oil and gas pipeline equipment by sending control commands containing the operating mode to the temperature regulator.
[0151] In some embodiments, before sending a control command including an operating mode to the temperature regulator, the temperature control method for oil and gas pipeline equipment provided in this application further includes: obtaining the equipment status of the temperature regulator; and determining, based on the equipment status of the temperature regulator, that a signal connection has been established with the temperature regulator.
[0152] By acquiring the device status of the temperature regulator, it is determined whether a signal connection has been established with the temperature regulator, so as to ensure that the programmable controller can send control commands to the temperature regulator.
[0153] In some embodiments, after sending a control command including the operating mode to the temperature regulator, the temperature control method for oil and gas pipeline equipment provided in this application further includes: acquiring the energy consumption of the temperature regulator; and obtaining energy consumption reduction data of the temperature regulator based on the energy consumption of the temperature regulator.
[0154] Based on the energy consumption of the temperature regulator, data on the reduction in energy consumption of the temperature regulator is obtained. Based on this data, it is possible to evaluate whether the temperature control method for oil and gas pipeline equipment provided in this application embodiment can effectively reduce the energy consumption of oil and gas pipeline equipment.
[0155] In some embodiments, the energy consumption of the temperature regulator includes operating time, number of switching operations, and energy consumption data.
[0156] The temperature control method for oil and gas pipeline equipment rooms provided in this application uses a programmable controller installed in the oil and gas pipeline equipment room to acquire the temperature, power status, and current time within the equipment room. Based on the power status and current time, the operating mode of the temperature regulator is determined, and a control command containing the selected operating mode is sent to the temperature regulator. This causes the temperature regulator to determine the start-up temperature, set temperature, and operating mode within a preset time period according to the control command. This method replaces the existing method of manually adjusting the temperature in the oil and gas pipeline equipment room, enabling timely temperature regulation and ensuring the normal operation of the main equipment. Furthermore, this method allows for remote control by maintenance personnel via a remote control console, achieving remote management and reducing the number of inspections required by maintenance personnel.
[0157] Figure 6 This is a schematic diagram of a temperature control device for an oil and gas pipeline equipment room, provided as an embodiment of this application. See also... Figure 6 The device includes:
[0158] The first acquisition module 601 is used to acquire the temperature, power status and current time in the oil and gas pipeline equipment room;
[0159] The first determining module 602 is used to determine the operating mode of the temperature regulator as the first operating mode in response to the power supply status being external power connected and the current time representing a winter month, based on the temperature inside the oil and gas pipeline equipment room. The operating mode includes the start-up temperature and set temperature within a preset time period each day, as well as the working mode, which includes a cooling mode and a heating mode.
[0160] The second determining module 603 is used to determine the operating mode of the temperature regulating component as the second operating mode in response to the power supply status being external power on and the current time representing a summer month, based on the temperature in the oil and gas pipeline equipment room.
[0161] Control module 604 is used to control the temperature regulator not to start in response to the power supply status being external power on and the current time being a month that is not in winter or summer.
[0162] The third determination module 605 is used to determine the operating mode of the temperature regulator as the third operating mode in response to the power supply status being an external power interruption, based on the temperature in the oil and gas pipeline equipment room and the current time.
[0163] The sending module 606 is used to send control commands containing the operating mode to the temperature regulator.
[0164] In some embodiments, winter months include December, January, and February, and the first determining module 602 includes:
[0165] The first winter control unit is used to respond to the power status being external power connected and the current time being within the first time period of the day, when the temperature in the oil and gas pipeline equipment room is lower than the first start temperature, to control the temperature regulator to start, set the set temperature to the first preset temperature, and set the working mode to heating mode.
[0166] The second winter control unit is used to control the temperature regulator not to start when the power supply status is external power on and the current time is within the first time period of the day, and the temperature in the oil and gas pipeline equipment room is greater than or equal to the first start temperature.
[0167] The third winter control unit is used to control the temperature regulator not to start when the power supply status is external power on and the current time is within the second time period of the day, and the temperature in the oil and gas pipeline equipment room is greater than or equal to the second start temperature.
[0168] The fourth winter control unit is used to respond to the power supply status being externally powered on and the current time being within the second time period of the day. When the temperature in the oil and gas pipeline equipment room is lower than the second start temperature, the temperature regulator is activated, the set temperature is set to the second preset temperature, and the working mode is set to heating mode. The sum of the duration of the first time period and the duration of the second time period is 24 hours.
[0169] In some embodiments, the summer months include June, July, and August, and the second determining module 603 includes:
[0170] The first summer control unit is used to control the temperature regulator to start when the power supply status is external power on and the current time is within the first time period of the day, and the temperature in the oil and gas pipeline equipment room is greater than or equal to the third start temperature, set the set temperature to the first preset temperature, and set the working mode to the cooling mode.
[0171] The second summer control unit is used to control the temperature regulator not to start when the power supply status is external power on and the current time is within the first time period of the day, and the temperature in the oil and gas pipeline equipment room is lower than the third start temperature.
[0172] The third summer control unit is used to control the temperature regulator not to start when the power supply status is external power on and the current time is within the second time period of the day, and the temperature in the oil and gas pipeline equipment room is lower than the fourth start temperature. The sum of the duration of the first time period and the duration of the second time period is 24 hours.
[0173] In some embodiments, the third operating mode includes a first sub-operating mode and a second sub-operating mode, and the third determining module 605 includes:
[0174] The first setting unit is used to determine the operating mode of the temperature regulator as the first sub-operation mode in response to the power supply status being an external power interruption and the current time representing a winter month, based on the temperature inside the oil and gas pipeline equipment room.
[0175] The second setting unit is used to determine the operating mode of the temperature regulator as the second sub-operation mode in response to the power supply status being an external power interruption and the current time representing a summer month, based on the temperature inside the oil and gas pipeline equipment room.
[0176] The third setting unit is used to control the temperature regulator not to start in response to a power outage and a current time indicating a month that is not in winter or summer.
[0177] In some embodiments, the winter months include December, January, and February, and the first setting unit includes:
[0178] The first winter setting subunit is used to respond to the power interruption and the current time being the first time period of the day. When the temperature in the oil and gas pipeline equipment room is lower than the fifth start temperature, the temperature regulator is activated, the set temperature is set to the first preset temperature, and the working mode is set to heating mode.
[0179] The second winter setting subunit is used to control the temperature regulator not to start when the power supply status is an external power interruption and the current time is within the first time period of the day, and the temperature in the oil and gas pipeline equipment room is greater than or equal to the fifth start temperature.
[0180] The third winter setting subunit is used to respond to the power outage and the current time being the second time period of the day. When the temperature in the oil and gas pipeline equipment room is lower than the sixth start temperature, the temperature regulator is activated, the set temperature is set to the second preset temperature, and the working mode is set to heating mode.
[0181] The fourth winter setting subunit is used to control the temperature regulator not to start when the power supply status is an external power interruption and the current time is in the second time period of the day, and the temperature in the oil and gas pipeline equipment room is higher than the seventh start temperature. The sum of the duration of the first time period and the duration of the second time period is 24 hours.
[0182] In some embodiments, the summer months include June, July, and August, and the second setting unit includes:
[0183] The first summer setting subunit is used to control the temperature regulator not to start when the power supply status is an external power interruption and the current time is within the first time period of the day, and the temperature in the oil and gas pipeline equipment room is greater than the eighth start temperature and less than the ninth start temperature.
[0184] The second summer setting subunit is used to respond to the power interruption and the current time being the first time period of the day. When the temperature in the oil and gas pipeline equipment room is greater than or equal to the ninth start temperature, the temperature regulator is activated, the set temperature is set to the second preset temperature, and the working mode is set to the cooling mode.
[0185] The third summer setting subunit is used to respond to the power interruption and the current time being the second time period of the day. When the temperature in the oil and gas pipeline equipment room is greater than or equal to the eighth start temperature, the temperature regulator is activated, the set temperature is set to the third preset temperature, and the working mode is set to the cooling mode.
[0186] The fourth summer setting subunit is used to control the temperature regulator not to start when the power supply status is an external power interruption and the current time is in the second time period of the day, and the temperature in the oil and gas pipeline equipment room is greater than the tenth start temperature and less than the eighth start temperature. The sum of the duration of the first time period and the duration of the second time period is 24 hours.
[0187] In some embodiments, prior to the transmitting module 606, the following are included:
[0188] The second acquisition module is used to acquire the equipment status of the temperature regulating component;
[0189] The connection module is used to determine, based on the device status of the temperature regulator, whether a signal connection has been established with the temperature regulator.
[0190] In some embodiments, after the sending module 606, the following are included:
[0191] The third acquisition module is used to acquire the energy consumption of the temperature regulating component;
[0192] The energy consumption module is used to obtain data on the reduction of energy consumption of the temperature regulator based on the energy consumption of the temperature regulator.
[0193] The temperature control device for oil and gas pipeline equipment rooms provided in this application uses a programmable controller installed in the oil and gas pipeline equipment room to acquire the temperature, power status, and current time within the equipment room. Based on the power status and current time, it determines the operating mode of the temperature regulator and sends a control command containing the selected operating mode to the temperature regulator. This allows the temperature regulator to determine the start-up temperature, set temperature, and working mode within a preset time period according to the control command containing the selected operating mode. This can replace the existing method of manually adjusting the temperature in the oil and gas pipeline equipment room, enabling timely temperature adjustment and ensuring the normal operation of the main equipment.
[0194] In an exemplary embodiment, a non-volatile computer-readable storage medium is also provided, such as a memory including program code that can be executed by a processor in an electronic device to perform the temperature control method between oil and gas pipeline equipment in the above embodiments. For example, the non-volatile computer-readable storage medium may be a read-only memory (ROM), a random access memory (RAM), a compact disc read-only memory (CD-ROM), magnetic tape, floppy disk, and optical data storage device, etc.
[0195] Those skilled in the art will understand that all or part of the steps of the above embodiments can be implemented by hardware or by a program instructing related hardware. The program can be stored in a non-volatile computer-readable storage medium, such as a read-only memory, a disk, or an optical disk.
[0196] In this application, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance. The term "multiple" refers to two or more unless otherwise expressly defined.
[0197] Other embodiments of this application will readily occur to those skilled in the art upon consideration of the specification and practice of the application disclosed herein. This application is intended to cover any variations, uses, or adaptations of this application that follow the general principles of this application and include common knowledge or customary techniques in the art not disclosed herein. The specification and examples are to be considered exemplary only.
[0198] It should be understood that this application is not limited to the precise structure described above and shown in the accompanying drawings, and various modifications and changes can be made without departing from its scope. The scope of this application is limited only by the appended claims.
Claims
1. A temperature control method for an oil and gas pipeline equipment room, characterized in that, A programmable controller applied in an oil and gas pipeline equipment room, the method comprising: Obtain the temperature, power status, and current time within the oil and gas pipeline equipment room; In response to the power status being external power connected and the current time representing a winter month, based on the temperature inside the oil and gas pipeline equipment room, the operating mode of the temperature regulator is determined to be the first operating mode, wherein the operating mode includes the start-up temperature and set temperature within a preset time period each day, as well as the working mode, wherein the working mode includes a cooling mode and a heating mode. In response to the power supply status being externally powered on and the current time representing a summer month, the operating mode of the temperature regulating component is determined to be the second operating mode based on the temperature in the oil and gas pipeline equipment room; In response to the power supply status being externally powered and the current time representing a month that is not in winter or summer, the temperature regulator is controlled not to start. In response to the power supply status being an external power outage, based on the temperature inside the oil and gas pipeline equipment room and the current time, the operating mode of the temperature regulator is determined to be a third operating mode. The third operating mode includes a first sub-operating mode and a second sub-operating mode, including: in response to the power supply status being an external power outage and the current time representing a winter month, based on the temperature inside the oil and gas pipeline equipment room, the operating mode of the temperature regulator is determined to be the first sub-operating mode; In response to the power supply status being an external power outage and the current time representing a summer month, the operating mode of the temperature regulator is determined to be the second sub-operating mode based on the temperature inside the oil and gas pipeline equipment room; In response to the power supply status being an external power interruption and the current time representing a month that is not in winter or summer, the temperature regulator is controlled not to start; Send control commands containing the operating mode to the temperature regulator.
2. The temperature control method for oil and gas pipeline equipment rooms according to claim 1, characterized in that, The winter months include December, January, and February. In response to the power supply status being externally powered and the current time representing winter, based on the temperature within the oil and gas pipeline equipment room, the operating mode of the temperature regulating component is determined to be a first operating mode, including: In response to the power supply status being externally powered and the current time being within the first time period of the day, when the temperature in the oil and gas pipeline equipment room is lower than the first start-up temperature, the temperature regulator is activated, the set temperature is set to the first preset temperature, and the working mode is set to the heating mode. In response to the power supply status being externally powered on and the current time being within the first time period of the day, if the temperature inside the oil and gas pipeline equipment room is greater than or equal to the first start-up temperature, the temperature regulator is controlled not to start. In response to the power supply status being externally powered on and the current time being within the second time period of the day, if the temperature inside the oil and gas pipeline equipment room is greater than or equal to the second start-up temperature, the temperature regulator is controlled not to start. In response to the power supply status being externally powered and the current time being within the second time period of the day, if the temperature inside the oil and gas pipeline equipment room is lower than the second start-up temperature, the temperature regulator is activated, the set temperature is set to the second preset temperature, and the working mode is set to the heating mode, wherein the sum of the duration of the first time period and the duration of the second time period is 24 hours.
3. The temperature control method for oil and gas pipeline equipment rooms according to claim 1, characterized in that, The summer months include June, July, and August. In response to the power supply status being externally powered and the current time representing summer, based on the temperature in the oil and gas pipeline equipment room, the operating mode of the temperature regulating component is determined to be a second operating mode, including: In response to the power supply status being externally powered and the current time being within the first time period of the day, if the temperature in the oil and gas pipeline equipment room is greater than or equal to the third start-up temperature, the temperature regulator is activated, the set temperature is set to the first preset temperature, and the working mode is set to the cooling mode. In response to the power supply status being externally powered on and the current time being within the first time period of the day, if the temperature inside the oil and gas pipeline equipment room is lower than the third start-up temperature, the temperature regulator is controlled not to start. In response to the power supply status being externally powered on and the current time being within the second time period of the day, if the temperature inside the oil and gas pipeline equipment room is lower than the fourth start-up temperature, the temperature regulator is controlled not to start, wherein the sum of the duration of the first time period and the duration of the second time period is 24 hours.
4. The temperature control method for oil and gas pipeline equipment rooms according to claim 1, characterized in that, The winter months include December, January, and February. In response to the power outage and the current time representing a winter month, based on the temperature within the oil and gas pipeline equipment room, the operating mode of the temperature regulator is determined to be the first sub-operating mode, including: In response to the power supply status being an external power outage and the current time being within the first time period of the day, when the temperature in the oil and gas pipeline equipment room is lower than the fifth start-up temperature, the temperature regulator is activated, the set temperature is set to the first preset temperature, and the working mode is set to the heating mode. In response to the power supply status being an external power outage and the current time being within the first time period of the day, if the temperature inside the oil and gas pipeline equipment room is greater than or equal to the fifth start-up temperature, the temperature regulator is controlled not to start. In response to the power supply status being an external power outage and the current time being within the second time period of the day, if the temperature in the oil and gas pipeline equipment room is lower than the sixth start-up temperature, the temperature regulator is activated, the set temperature is set to the second preset temperature, and the working mode is set to the heating mode. In response to the power supply status being an external power outage and the current time being within the second time period of the day, if the temperature inside the oil and gas pipeline equipment room is greater than the seventh start-up temperature, the temperature regulator is controlled not to start, wherein the sum of the duration of the first time period and the duration of the second time period is 24 hours.
5. The temperature control method for oil and gas pipeline equipment rooms according to claim 1, characterized in that, The summer months include June, July, and August. In response to an external power outage and the current time representing a summer month, based on the temperature within the oil and gas pipeline equipment room, the operating mode of the temperature regulator is determined to be the second sub-operating mode, including: In response to the power supply status being an external power outage and the current time being within the first time period of the day, if the temperature inside the oil and gas pipeline equipment room is greater than the eighth start-up temperature and less than the ninth start-up temperature, the temperature regulator is controlled not to start. In response to the power supply status being an external power outage and the current time being within the first time period of the day, if the temperature in the oil and gas pipeline equipment room is greater than or equal to the ninth start-up temperature, the temperature regulator is activated, the set temperature is set to the second preset temperature, and the working mode is set to the cooling mode. In response to the power supply status being an external power outage and the current time being within the second time period of the day, if the temperature in the oil and gas pipeline equipment room is greater than or equal to the eighth start-up temperature, the temperature regulator is activated, the set temperature is set to the third preset temperature, and the working mode is set to the cooling mode. In response to the power supply status being an external power outage and the current time being within the second time period of the day, if the temperature inside the oil and gas pipeline equipment room is greater than the tenth start-up temperature but less than the eighth start-up temperature, the temperature regulator is controlled not to start, wherein the sum of the duration of the first time period and the duration of the second time period is 24 hours.
6. The temperature control method for oil and gas pipeline equipment rooms according to claim 1, characterized in that, Before sending the control command containing the operating mode to the temperature regulator, the method further includes: Obtain the device status of the temperature regulating component; Based on the device status of the temperature regulator, it is determined that a signal connection has been established with the temperature regulator.
7. The temperature control method for oil and gas pipeline equipment rooms according to claim 1, characterized in that, After sending a control command containing the operating mode to the temperature regulator, the method further includes: Obtain the energy consumption of the temperature regulating component; Based on the energy consumption of the temperature regulator, data on the reduction in energy consumption of the temperature regulator are obtained.
8. A temperature control device for an oil and gas pipeline equipment room, characterized in that, The device includes: The first acquisition module is used to acquire the temperature, power status and current time inside the oil and gas pipeline equipment room; The first determining module is used to determine the operating mode of the temperature regulator as a first operating mode in response to the power state being external power connected and the current time representing a winter month, based on the temperature inside the oil and gas pipeline equipment room. The operating mode includes the start-up temperature and set temperature within a preset time period each day, as well as the working mode, which includes a cooling mode and a heating mode. The second determining module is used to determine the operating mode of the temperature regulating component as the second operating mode in response to the power supply status being external power on and the current time representing a summer month, based on the temperature in the oil and gas pipeline equipment room. The control module is configured to control the temperature regulator not to start in response to the power state being external power on and the current time representing a month that is not in winter or summer. The third determining module is used to determine the operating mode of the temperature regulating component as a third operating mode in response to the power supply status being an external power interruption, based on the temperature inside the oil and gas pipeline equipment room and the current time. The third operating mode includes a first sub-operating mode and a second sub-operating mode, including: in response to the power supply status being an external power interruption and the current time representing a winter month, determining the operating mode of the temperature regulating component as the first sub-operating mode based on the temperature inside the oil and gas pipeline equipment room; In response to the power supply status being an external power outage and the current time representing a summer month, the operating mode of the temperature regulator is determined to be the second sub-operating mode based on the temperature inside the oil and gas pipeline equipment room; In response to the power supply status being an external power interruption and the current time representing a month that is not in winter or summer, the temperature regulator is controlled not to start; The transmitting module is used to send control commands, including the operating mode, to the temperature regulator.
9. A non-volatile computer-readable storage medium, characterized in that, When the instructions in the storage medium are executed by the processor of the electronic device, the electronic device is able to perform the temperature control method for oil and gas pipeline equipment as described in any one of claims 1 to 7.
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