Air conditioning water supply methods, devices, computer equipment and storage media
By configuring a water flow detector in the air conditioning water supply system, the problem of blockage in the air conditioning water supply pipe is solved, ensuring the stability and reliability of the air conditioning water supply.
Patent Information
- Application Number
- CN202310311062.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-03-27
- Publication Date
- 2025-10-31
- Estimated Expiration
- 2043-03-27
AI Technical Summary
The existing indirect evaporative cooling air conditioning water supply method causes dust to be brought in when fresh air from outside is constantly entering the air conditioner, forming sludge that blocks the water supply pipes and affects the stability of the air conditioner's operation.
By installing water flow detectors on the water supply pipelines, water flow data can be monitored in real time, identifying pipelines where water supply demand is not met, and switching to backup water supply pipelines to ensure the stability of air conditioning water supply.
It enables timely detection and switching to backup water supply pipes, avoiding blockages in the water supply pipes and ensuring the stability and reliability of the air conditioning water supply.
Smart Images

Figure CN116367502B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of artificial intelligence technology, and in particular to an air conditioning water supply method, apparatus, computer equipment, and storage medium. Background Technology
[0002] To ensure a suitable environment for computer operation in computer rooms, indirect evaporative cooling air conditioners have been developed for temperature control. Current indirect evaporative cooling air conditioners require a large amount of water to operate. To conserve water, a water tank is typically installed below the nozzles of the spray system. The spray system draws water from the tank to supply the nozzles, and the water sprayed from the nozzles falls back into the tank, creating a water circulation system. Therefore, current indirect evaporative cooling air conditioners use an internal water tank to supply water to the spray system, thereby cooling the air inside the air conditioner.
[0003] However, because fresh air from outside is constantly entering the air conditioner, the current water supply method, in practical applications, will bring dust from the air into the air conditioner, forming sludge and causing problems such as blockage of the water supply pipes leading to air conditioner shutdown, which urgently needs to be improved. Summary of the Invention
[0004] Therefore, it is necessary to provide an air conditioning water supply method, device, computer equipment, and storage medium that can improve the stability of air conditioning operation, in response to the above-mentioned technical problems.
[0005] Firstly, this application provides a method for supplying water to an air conditioner. The method includes:
[0006] Obtain the current water flow data detected by the water flow detector configured on the current water supply pipeline;
[0007] If, based on the current water flow data, it is identified that the current water supply pipeline does not meet the water supply requirements for the air conditioning sprinkler system, then the target water supply pipeline is selected from the backup water supply pipeline that can supply water to the sprinkler system.
[0008] Shut down the current water supply pipe and open the target water supply pipe to supply water to the sprinkler system through the target water supply pipe.
[0009] In one embodiment, based on current water flow data, it is identified that the current water supply pipeline does not meet the water supply requirements for the air conditioning sprinkler system, including:
[0010] The current water flow rate is compared with the water flow rate threshold, which is determined based on historical water flow rate data under normal water supply conditions to the sprinkler system. If the comparison result shows that the current water flow rate is less than the water flow rate threshold, it is determined that the current water supply pipeline does not meet the water supply requirements of the air conditioning sprinkler system.
[0011] In one embodiment, selecting a target water supply pipe from a backup water supply pipe capable of supplying water to the sprinkler system includes:
[0012] Determine if there is a usable water supply pipe among the internal backup water supply pipes that can supply water to the sprinkler system; if so, select the target water supply pipe from the usable water supply pipes.
[0013] In one embodiment, selecting a target water supply pipe from available water supply pipes includes:
[0014] Based on at least one of the following: pipe length, pipe tortuosity, and pipe inner diameter, select at least one standby water supply pipe from the available water supply pipes; based on the historical number of failures of each standby water supply pipe, select a target water supply pipe from the standby water supply pipes.
[0015] In one embodiment, the method further includes:
[0016] If none of the internal backup water supply pipes that can supply water to the sprinkler system are available, then the external backup water supply pipe will be used as the target water supply pipe.
[0017] In one embodiment, the method further includes:
[0018] Determine the warning level based on the source of the target water supply pipeline; based on the warning level, output the warning information to the terminal held by the operation and maintenance party.
[0019] Secondly, this application also provides an air conditioning water supply device. The device includes:
[0020] The data acquisition module is used to acquire the current water flow data detected by the water flow detector configured on the current water supply pipeline;
[0021] The pipeline selection module is used to select a target water supply pipeline from the backup water supply pipelines that can supply water to the spray system if it is identified based on the current water flow data that the current water supply pipeline does not meet the water supply requirements of the air conditioning spray system.
[0022] The water supply module is used to shut down the current water supply pipe and open the target water supply pipe to supply water to the sprinkler system through the target water supply pipe.
[0023] Thirdly, this application also provides a computer device. The computer device includes a memory and a processor, the memory storing a computer program, and the processor executing the computer program to perform the following steps:
[0024] Obtain the current water flow data detected by the water flow detector configured on the current water supply pipeline;
[0025] If, based on the current water flow data, it is identified that the current water supply pipeline does not meet the water supply requirements for the air conditioning sprinkler system, then the target water supply pipeline is selected from the backup water supply pipeline that can supply water to the sprinkler system.
[0026] Shut down the current water supply pipe and open the target water supply pipe to supply water to the sprinkler system through the target water supply pipe.
[0027] Fourthly, this application also provides a computer-readable storage medium. The computer-readable storage medium stores a computer program thereon, which, when executed by a processor, performs the following steps:
[0028] Obtain the current water flow data detected by the water flow detector configured on the current water supply pipeline;
[0029] If, based on the current water flow data, it is identified that the current water supply pipeline does not meet the water supply requirements for the air conditioning sprinkler system, then the target water supply pipeline is selected from the backup water supply pipeline that can supply water to the sprinkler system.
[0030] Shut down the current water supply pipe and open the target water supply pipe to supply water to the sprinkler system through the target water supply pipe.
[0031] Fifthly, this application also provides a computer program product. The computer program product includes a computer program that, when executed by a processor, performs the following steps:
[0032] Obtain the current water flow data detected by the water flow detector configured on the current water supply pipeline;
[0033] If, based on the current water flow data, it is identified that the current water supply pipeline does not meet the water supply requirements for the air conditioning sprinkler system, then the target water supply pipeline is selected from the backup water supply pipeline that can supply water to the sprinkler system.
[0034] Shut down the current water supply pipe and open the target water supply pipe to supply water to the sprinkler system through the target water supply pipe.
[0035] The aforementioned air conditioning water supply method, apparatus, computer equipment, and storage medium, by introducing a backup water supply pipeline, identifies, based on the current water flow data detected by a water flow detector configured on the current water supply pipeline, that the current water supply pipeline does not meet the water supply requirements for the air conditioning spray system. Then, a target water supply pipeline is selected from the backup water supply pipeline capable of supplying water to the spray system, and the current water supply pipeline is closed while the target water supply pipeline is opened to supply water to the spray system. Compared to existing air conditioning water supply methods that rely solely on a single water supply pipeline within the internal water supply system, this solution can detect blockages in the current water supply pipeline by monitoring the water flow data, and then immediately switch to the target water supply pipeline, ensuring the stability of the air conditioning water supply. Attached Figure Description
[0036] Figure 1A This is a diagram illustrating the application environment of an air conditioning water supply method in one embodiment.
[0037] Figure 1B A schematic diagram of the internal structure of an indirect evaporative cooling air conditioner;
[0038] Figure 1C This is a schematic diagram of the operation of an indirect evaporative cooling air conditioning water supply system in the prior art;
[0039] Figure 2A This is a flowchart illustrating an air conditioning water supply method in one embodiment;
[0040] Figure 2B This is a schematic diagram of the operation of an air conditioning water supply system in one embodiment;
[0041] Figure 3 This is a schematic diagram of the process for selecting a target water supply pipeline in one embodiment;
[0042] Figure 4 This is a schematic diagram illustrating water supply using an external backup water supply pipeline in one embodiment;
[0043] Figure 5 This is a flowchart illustrating the process of outputting early warning information in one embodiment;
[0044] Figure 6 This is a flowchart illustrating the air conditioning water supply method in another embodiment;
[0045] Figure 7 This is a structural block diagram of an air conditioning water supply device in one embodiment;
[0046] Figure 8 This is a structural block diagram of an air conditioning water supply device in one embodiment;
[0047] Figure 9 This is an internal structural diagram of a computer device in one embodiment. Detailed Implementation
[0048] To make the objectives, technical solutions, and advantages of this application clearer, the following detailed description is provided in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the scope of this application.
[0049] The air conditioning water supply method provided in this application embodiment can be applied to, for example... Figure 1A In the application environment shown, terminal 102 communicates with server 104 via a network. A data storage system can store data that server 104 needs to process, such as water flow data. The data storage system can be integrated onto server 104 or located in the cloud or on other network servers. For example, server 104 obtains the current water flow data detected by a water flow detector configured on the current water supply pipe. If, based on the current water flow data, it identifies that the current water supply pipe does not meet the water supply requirements for the air conditioning sprinkler system, it selects a target water supply pipe from the backup water supply pipes that can supply water to the sprinkler system, closes the current water supply pipe, and opens the target water supply pipe to supply water to the sprinkler system. Simultaneously, server 104 can send relevant information about the air conditioning water supply (e.g., warning information) to terminal 102, which displays the received information. Terminal 102 can be, but is not limited to, various personal computers, laptops, smartphones, and tablets. Server 104 can be implemented using a standalone server or a server cluster consisting of multiple servers.
[0050] The air conditioner mentioned in this application is an indirect evaporative cooling air conditioner, and its internal structure is as follows: Figure 1B As shown in the diagram. 1 is the hot air inlet for the computer room; 2 is the external fresh air inlet; 3 is the water tank for the indirect evaporative cooling air conditioner, which supplies water to the spray system and also recycles the water sprayed from the system, achieving water circulation and saving resources; 4 is the nozzle in the spray system, which sprays water mist to cool the fresh air entering from the external fresh air inlet 2; 5 is the water tank drain valve; 6 is the water pump inlet filter; 7 is the spray pump in the spray system, providing water pressure for the spray system; 8 is the compressor for the indirect evaporative cooling air conditioner; 9 is the cold air inlet for the computer room; 10 is the hot air outlet after heat exchange; 11 is the exhaust fan; and 12 is the heat exchanger for the indirect evaporative cooling air conditioner.
[0051] The operation mode of the indirect evaporative cooling air conditioner is as follows: the water tank 3 of the indirect evaporative cooling air conditioner supplies water to the spray system. The water mist sprayed by the nozzles 4 in the spray system can cool the external fresh air. Then, it exchanges heat with the hot air in the computer room through the heat exchanger 12 and becomes hot air that is discharged outdoors, thereby achieving the cooling of the computer room.
[0052] However, in practical applications, such as Figure 1C As shown, when the air conditioner is working, the water in the water tank supplies water to the spray system through the internal water supply pipe. There is a filter device 13 on the internal water supply pipe to filter the water in the internal water supply pipe. Since fresh air from the outside is constantly entering the air conditioner, when the internal water supply system circulates water, it will bring dust and other impurities from the air into the water tank. When the water tank supplies water to the internal water supply pipe, it will transfer the impurities into the internal water supply pipe to form sludge, which will block the filter device 13, resulting in blockage of the internal water supply pipe and causing malfunctions such as the air conditioner shutting down.
[0053] Based on this, in one embodiment, an air conditioning water supply method is provided, which can be provided by... Figure 1A The execution can be performed by the server within the system, or further, by the controller on the server. For example... Figure 2A As shown, the specific steps include:
[0054] S201, Obtain the current water flow data detected by the water flow detector configured on the current water supply pipeline.
[0055] The so-called current water supply pipeline refers to the pipeline that currently supplies water to the air conditioning spray system; the current water flow data refers to the water flow rate supplied by the current water supply pipeline to the air conditioning spray system at the current moment.
[0056] Optionally, to monitor the water flow rate in the current water supply pipeline, a water flow detector can be configured on the pipeline to detect the water flow rate; subsequently, the water flow rate data detected by the water flow detector is acquired in real time. For example, see... Figure 2B A water flow detector can be configured on valve 14 of the current water supply pipeline to detect water flow.
[0057] In one possible implementation, a detection mechanism can be configured, for example, to detect every 10 minutes. Then, if the current time meets the pre-configured detection mechanism, the current water flow data of the current water supply pipeline can be obtained from the water flow detector configured on the current water supply pipeline.
[0058] S202, if based on the current water flow data, it is identified that the current water supply pipeline does not meet the water supply requirements of the air conditioning sprinkler system, then select the target water supply pipeline from the backup water supply pipeline that can supply water to the sprinkler system.
[0059] Among them, the backup water supply pipeline refers to at least one set of water supply pipelines that can supply water to the sprinkler system; the target water supply pipeline refers to the water supply pipeline that is identified as the one that will supply water to the sprinkler system.
[0060] Optionally, after obtaining the current water flow data, the water flow trend of the current water supply pipeline can be determined based on the current water flow data and the water flow data of the current water supply pipeline at other times before the current time. Then, based on the water flow trend, it can be determined whether the current water supply pipeline meets the water supply needs of the air conditioning sprinkler system.
[0061] For example, if the current water flow rate in the water supply pipe shows a significant downward trend compared to the previous time, it indicates that the water supply pipe may be blocked, meaning that the current water supply pipe does not meet the water supply requirements for the air conditioning sprinkler system. Alternatively, based on the current water flow rate in the water supply pipe and the water flow rate data from other times before the current time, a water flow distribution curve of the current water supply pipe over a period of time can be plotted. If the fluctuation of the water flow distribution curve is large, it indicates that the stability of the current water supply pipe is poor, meaning that the current water supply pipe does not meet the water supply requirements for the air conditioning sprinkler system.
[0062] Alternatively, it can be determined whether the current water supply pipeline meets the water supply requirements of the air conditioning sprinkler system. For example, the current water flow rate is compared with a water flow rate threshold; if the comparison result shows that the current water flow rate is less than the water flow rate threshold, it is determined that the current water supply pipeline does not meet the water supply requirements of the air conditioning sprinkler system. The water flow rate threshold is determined based on historical water flow rate data under normal water supply conditions to the sprinkler system, such as using the average of historical water flow rate data under normal water supply conditions as the water flow rate threshold.
[0063] Specifically, the real-time water flow data can be compared with the water flow threshold. If the comparison result is that the current water flow data is less than the water flow threshold, it means that the water flow in the current water supply pipe is less than the water flow under normal water supply conditions, that is, the current water supply pipe does not meet the water supply needs of the air conditioning spray system.
[0064] Furthermore, after determining that the current water supply pipeline does not meet the water supply requirements of the air conditioning sprinkler system, a backup water supply pipeline that can supply water to the sprinkler system can be randomly selected as the target water supply pipeline; or, the backup water supply pipeline that is most convenient to supply water and has the highest reliability can be selected as the target water supply pipeline based on the physical characteristics (e.g., pipeline length) and reliability of each backup water supply pipeline.
[0065] S203, shut down the current water supply pipe and open the target water supply pipe to supply water to the sprinkler system through the target water supply pipe.
[0066] Optionally, after determining the target water supply pipeline, a closing signal can be sent to the controller of the valve on the current water supply pipeline. Upon receiving the closing signal, the controller on the valve immediately closes the current water supply pipeline. At the same time, an opening signal can be sent to the controller of the valve on the target water supply pipeline. Upon receiving the opening signal, the controller on the valve immediately opens the current water supply pipeline, that is, the water supply to the sprinkler system is switched from the current water supply pipeline to the target water supply pipeline.
[0067] For example, see continue. Figure 2B After the target water supply pipeline 15 is determined, the valve 14 on the current water supply pipeline can be closed, and then the valve 16 on the target water supply pipeline can be opened to supply water to the sprinkler system 17 through the target water supply pipeline.
[0068] Understandably, when a water tank supplies water to a sprinkler system, to conserve water, the sprinkler system is typically installed above the tank. Water from the tank is sprayed through nozzles in the sprinkler system, creating a water mist that falls back into the tank, thus forming a water cycle. However, during this cycle, water loss is inevitable, causing the water level in the tank to gradually decrease. Therefore, to solve this problem, an external water supply pipe can be used to supply water to the tank to maintain a balance in the water level.
[0069] For example, see continue. Figure 2B A water level detector 18 can be installed in the water tank to detect the water level in real time. The water level data detected by the water level detector 18 is then compared with a preset minimum water level value. When the water level data is less than the minimum water level value, the water tank cannot continue to supply water to the sprinkler system. At this time, the valve 20 on the external water supply pipe 19 can be opened to supply water to the water tank from the outside. Furthermore, when the water level data detected by the water level detector 18 is greater than the maximum water level value, the valve 20 on the external water supply pipe 19 is closed to stop the water supply to the water tank, so that the water level in the water tank can be maintained within the normal range.
[0070] The minimum water volume refers to the minimum water volume in the tank that can supply water to the sprinkler system; the maximum water volume refers to the maximum water volume that the tank can hold that can be used to recover water mist sprayed from the nozzles during water circulation.
[0071] To prevent air conditioning malfunctions caused by clogged spray pumps in the sprinkler system, this embodiment employs a redundant configuration for the spray pumps, meaning multiple pumps can be configured simultaneously in the sprinkler system. For example, see [link to previous section]. Figure 2BThe sprinkler system 17 is redundantly configured with two sprinkler water pumps. When the air conditioner is running, either sprinkler water pump can be used as the main water pump. When the sprinkler system is running normally, the main water pump is selected to pressurize the water in the target water supply pipeline. If the main water pump is blocked, another standby water pump is selected to pressurize the water in the target water supply pipeline to maintain the normal operation of the air conditioner.
[0072] In the aforementioned air conditioning water supply method, a backup water supply pipe is introduced. Based on the current water flow data detected by a water flow detector on the current water supply pipe, if it is determined that the current water supply pipe does not meet the water supply requirements for the air conditioning spray system, a target water supply pipe is selected from the backup water supply pipes capable of supplying water to the spray system. The current water supply pipe is then closed, and the target water supply pipe is opened to supply water to the spray system. Compared to existing air conditioning water supply methods that rely solely on a single water supply pipe within the internal water supply system, this solution can detect blockages in the current water supply pipe by monitoring the water flow, promptly identifying any blockages and then switching to the target water supply pipe, thus ensuring the stability of the air conditioning water supply.
[0073] To ensure that the identified target water supply pipeline is suitable for water supply, based on the above embodiments, this embodiment provides an optional embodiment for determining the target water supply pipeline, such as... Figure 3 As shown, the specific steps include:
[0074] S301, determine whether there is a usable water supply pipe among the internal backup water supply pipes that can supply water to the sprinkler system.
[0075] Among them, the internal backup water supply pipeline refers to the water supply pipeline that supplies water to the sprinkler system through the water tank; the available water supply pipeline refers to the water supply pipeline that can meet the water supply needs of the air conditioning sprinkler system.
[0076] Optionally, during air conditioning operation, unusable water supply pipes in the internal backup water supply system can be marked as faults based on historical switching data between internal backup water supply pipes.
[0077] For example, an air conditioner includes internal backup water supply pipes A, B, and C, where the current water supply pipe is A. If the historical switching between the internal backup water supply pipes shows a switch from internal backup water supply pipe B to the current water supply pipe A, it indicates that internal backup water supply pipe B has previously malfunctioned, and therefore needs to be marked as faulty. Furthermore, if based on the current water flow data, it is identified that the current water supply pipe A does not meet the water supply requirements for the air conditioner's spray system, then the current water supply pipe A also needs to be marked as faulty.
[0078] Therefore, when determining whether there is a usable water supply pipe among the internal backup water supply pipes, the fault mark on each internal backup water supply pipe can be read. If there is an internal backup water supply pipe that does not have a fault mark, it means that the internal backup water supply pipe can be used as a water supply pipe; if all internal backup water supply pipes have fault marks, it means that there is no usable water supply pipe among the internal backup water supply pipes.
[0079] For example, if the fault indicators on internal backup water supply pipes A, B, and C are read, and it is found that internal backup water supply pipes A and B both have fault indicators, while internal backup water supply pipe C does not have a fault indicator, then internal backup water supply pipe C is considered a usable water supply pipe.
[0080] S302, if so, select the target water supply pipe from the available water supply pipes.
[0081] Optionally, if there is a usable water supply pipe among the internal backup water supply pipes, and the number of usable water supply pipes is one, then the usable water supply pipe can be directly used as the target water supply pipe.
[0082] If there are at least two available water supply pipes, the simplest available water supply pipe can be selected as the target water supply pipe by comparing the complexity of each available water supply pipe.
[0083] Alternatively, you can use the following steps to select a target water supply line from the available water supply lines:
[0084] The first step is to select at least one available water supply pipe from the available water supply pipes based on at least one of the following: pipe length, pipe tortuosity, and pipe inner diameter. The tortuosity can be characterized by the number of bends in the pipe.
[0085] Optionally, at least one standby water supply pipe can be selected from the available water supply pipes based on one or more of the following indicators: pipe length, pipe tortuosity, and pipe inner diameter. For example, based on the pipe length and tortuosity of the available water supply pipes, several available water supply pipes with shorter lengths and lower tortuosity can be selected as candidate standby water supply pipes; subsequently, a water supply pipe with a larger inner diameter can be selected from the candidate standby water supply pipes as the standby water supply pipe.
[0086] The second step involves selecting a target water supply pipeline from among the available pipelines based on the historical number of failures of each pipeline. The historical number of failures refers to the number of times a pipeline has failed within a historical period, which can be used to assess the reliability of the available water supply pipeline.
[0087] Optionally, if only one standby water supply pipeline is identified, then that standby water supply pipeline will be directly used as the target water supply pipeline; if multiple standby water supply pipelines are identified, then the standby water supply pipeline with the fewest historical failures can be selected as the target water supply pipeline based on the number of historical failures of each standby water supply pipeline.
[0088] In this embodiment, multiple internal backup water supply pipes are introduced. By selecting from the available water supply pipes, the target water supply pipe is determined, ensuring that the determined target water supply pipe is the most suitable among the available water supply pipes for supplying water to the sprinkler system, thereby improving the reliability of the air conditioning water supply.
[0089] Based on the above embodiments, there may be situations where there is no available water supply pipe among the internal backup water supply pipes. Therefore, in this embodiment, another optional embodiment for determining the target water supply pipe is provided. Specifically, if there is no available water supply pipe among the internal backup water supply pipes that can supply water to the sprinkler system, then the external backup water supply pipe is taken as the target water supply pipe.
[0090] Optionally, if there is no available water supply pipe among the internal backup water supply pipes, it means that water cannot be supplied to the sprinkler system from the water tank. In this case, an external backup water supply pipe can be selected as the target water supply pipe, that is, an external water supply can be used to supply water to the sprinkler system.
[0091] For example, see Figure 4 The main valve 21 of each internal backup water supply pipe can be closed, and then the valve 23 on the external backup water supply pipe 22 can be opened to supply water to the sprinkler system. At the same time, the drain valve 24 of the water tank can be opened to drain the water in the water tank, which is convenient for the operation and maintenance party to handle the fault.
[0092] Understandably, when the maintenance team performs maintenance on the water tank, all internal backup water supply pipes need to be shut down. In order to ensure the normal operation of the air conditioner, the external backup water supply pipe can be used as the target water supply pipe, which solves the problem of having to stop the air conditioner during normal maintenance.
[0093] In this embodiment, an external backup water supply pipe is introduced. When the internal backup water supply pipe is unavailable, the external backup water supply pipe can be used to supply water to the sprinkler device, ensuring the stability of the air conditioning water supply.
[0094] To facilitate timely understanding of the water supply pipeline status by the maintenance team, this embodiment provides an optional method for early warning of water supply pipeline faults, based on the above embodiments. Figure 5 As shown, the specific steps include:
[0095] S501, determine the warning level based on the source of the target water supply pipeline.
[0096] Optionally, when the current water supply pipeline does not meet the water supply requirements of the air conditioner's spray system, it is necessary to obtain the source of the target water supply pipeline. If the target water supply pipeline is an internal backup water supply pipeline, it indicates that the faulty water supply pipeline is an internal backup water supply pipeline. However, the internal backup water supply pipeline can still be used to supply water to the spray system, which will not affect the normal operation of the air conditioner. In this case, the warning level of the fault can be set to a minor warning.
[0097] If the target water supply pipe is an external backup water supply pipe, it indicates that the faulty water supply pipe may be an internal backup water supply pipe or an external backup water supply pipe. However, the air conditioner can no longer use the internal backup water supply pipe to supply water to the sprinkler system, that is, the internal water supply system of the air conditioner has been completely shut down, affecting the normal operation of the air conditioner. At this time, the warning level of the fault can be set to severe warning.
[0098] S502 outputs warning information to the terminal held by the operation and maintenance party according to the warning level.
[0099] The warning information may include the air conditioner's identification information, the specific information of the faulty water supply pipe, and the time of the fault.
[0100] Optionally, after determining the warning level of the fault, it is necessary to obtain relevant information about the faulty water supply pipeline and then generate warning information. Subsequently, based on the warning level of the fault, the warning information can be sent to the terminal held by the operation and maintenance party. The terminal held by the operation and maintenance party has embedded tools that can receive warning information, such as an APP or a mini-program.
[0101] At this time, if the warning level of the fault is a minor warning, a warning message and a yellow alarm icon can be sent to the terminal held by the maintenance party based on the obtained fault-related information to prompt the maintenance party to handle the fault; if the warning level of the fault is a serious warning, a warning message and a red alarm icon can be sent to the terminal held by the maintenance party, and the serious warning message can be automatically pinned to the top to prompt the maintenance party to handle the fault.
[0102] Understandably, in order to prioritize handling more serious faults, when the operations and maintenance team receives both minor and serious alerts at the same time, the serious alerts should be handled first, followed by the minor alerts.
[0103] In this embodiment, by introducing early warning levels, different levels of faults can be output to the operation and maintenance party in different ways, which can ensure that the operation and maintenance party prioritizes the handling of air conditioners with serious faults and avoids major accidents.
[0104] Figure 6This is a flowchart illustrating an air conditioning water supply method in another embodiment. Based on the above embodiments, this embodiment provides an optional example of an air conditioning water supply method. (Combined with...) Figure 6 The specific implementation process is as follows:
[0105] S601, Obtain the current water flow data detected by the water flow detector configured on the current water supply pipeline.
[0106] S602, if based on the comparison between the current water flow data and the water flow threshold, it is identified that the current water supply pipe does not meet the water supply requirements of the air conditioning sprinkler system, then determine whether there is a usable water supply pipe among the internal backup water supply pipes that can supply water to the sprinkler system. If there is, then execute S603; if not, then execute S605.
[0107] Specifically, the current water flow data is compared with the water flow threshold; the water flow threshold is determined based on historical water flow data under normal water supply conditions to the sprinkler system; if the comparison result shows that the current water flow data is less than the water flow threshold, it is determined that the current water supply pipeline does not meet the water supply requirements of the air conditioning sprinkler system.
[0108] Furthermore, by obtaining the source of the current water supply pipeline, the warning level of the previous water supply pipeline fault can be determined based on the source of the current water supply pipeline. Subsequently, based on the relevant information of the current water supply pipeline and the warning level, the warning information is output to the terminal held by the operation and maintenance party.
[0109] S603, select at least one standby water supply pipe from the available water supply pipes based on at least one of the following: pipe length, pipe tortuosity, and pipe inner diameter.
[0110] S604, Select the target water supply pipeline from the standby water supply pipelines based on the number of historical failures of each standby water supply pipeline.
[0111] S605, use the external backup water supply pipeline as the target water supply pipeline.
[0112] S606, Close the current water supply pipe and open the target water supply pipe to supply water to the sprinkler system through the target water supply pipe.
[0113] The specific processes of S601-S606 described above can be found in the description of the above method embodiments. Their implementation principles and technical effects are similar, and will not be repeated here.
[0114] It should be understood that although the steps in the flowcharts of the embodiments described above are shown sequentially according to the arrows, these steps are not necessarily executed in the order indicated by the arrows. Unless explicitly stated herein, there is no strict order restriction on the execution of these steps, and they can be executed in other orders. Moreover, at least some steps in the flowcharts of the embodiments described above may include multiple steps or multiple stages. These steps or stages are not necessarily completed at the same time, but can be executed at different times. The execution order of these steps or stages is not necessarily sequential, but can be performed alternately or in turn with other steps or at least some of the steps or stages of other steps.
[0115] Based on the same inventive concept, this application also provides an air conditioning water supply device for implementing the air conditioning water supply method described above. The solution provided by this device is similar to the solution described in the above method; therefore, the specific limitations of one or more air conditioning water supply device embodiments provided below can be found in the limitations of the air conditioning water supply method described above, and will not be repeated here.
[0116] In one embodiment, such as Figure 7 As shown, an air conditioning water supply device 1 is provided, including: a data acquisition module 10, a pipe selection module 20, and a water supply module 30, wherein:
[0117] Data acquisition module 10 is used to acquire the current water flow data detected by the water flow detector configured on the current water supply pipeline;
[0118] The pipeline selection module 20 is used to select a target water supply pipeline from the backup water supply pipelines that can supply water to the spray system if it is identified based on the current water flow data that the current water supply pipeline does not meet the water supply requirements to the air conditioning spray system.
[0119] Water supply module 30 is used to shut down the current water supply pipe and open the target water supply pipe to supply water to the sprinkler system through the target water supply pipe.
[0120] In one embodiment, when the pipe selection module 20 identifies, based on current water flow data, that the current water supply pipe does not meet the water supply requirements for the air conditioning sprinkler system, it is specifically used for:
[0121] The current water flow rate is compared with the water flow rate threshold, which is determined based on historical water flow rate data under normal water supply conditions to the sprinkler system. If the comparison result shows that the current water flow rate is less than the water flow rate threshold, it is determined that the current water supply pipeline does not meet the water supply requirements of the air conditioning sprinkler system.
[0122] In one embodiment, such as Figure 8 As shown, the pipe selection module 20 includes:
[0123] Pipe identification unit 21 is used to determine whether there is a usable water supply pipe among the internal backup water supply pipes that can supply water to the sprinkler system.
[0124] Pipe selection unit 22 is used to select a target water supply pipe from available water supply pipes if the condition is met.
[0125] In one embodiment, the pipe selection unit 22 is specifically used for:
[0126] Based on at least one of the following: pipe length, pipe tortuosity, and pipe inner diameter, select at least one standby water supply pipe from the available water supply pipes; based on the historical number of failures of each standby water supply pipe, select a target water supply pipe from the standby water supply pipes.
[0127] In one embodiment, the pipe selection unit 22 can also be used for:
[0128] If none of the internal backup water supply pipes that can supply water to the sprinkler system are available, then the external backup water supply pipe will be used as the target water supply pipe.
[0129] In one embodiment, the air conditioning water supply device 1 further includes an early warning module, which is specifically used for:
[0130] Determine the warning level based on the source of the target water supply pipeline; based on the warning level, output the warning information to the terminal held by the operation and maintenance party.
[0131] Each module in the aforementioned air conditioning water supply device can be implemented entirely or partially through software, hardware, or a combination thereof. These modules can be embedded in or independent of the processor in a computer device, or stored in the memory of a computer device as software, so that the processor can call and execute the corresponding operations of each module.
[0132] In one embodiment, a computer device is provided, which may be a server, and its internal structure diagram may be as follows: Figure 9As shown, this computer device includes a processor, memory, input / output (I / O) interfaces, and a communication interface. The processor, memory, and I / O interfaces are connected via a system bus, and the communication interface is also connected to the system bus via the I / O interfaces. The processor provides computational and control capabilities. The memory includes non-volatile storage media and internal memory. The non-volatile storage media stores the operating system, computer programs, and a database. The internal memory provides the environment for the operating system and computer programs stored in the non-volatile storage media. The database stores data such as water flow data. The I / O interfaces are used for exchanging information between the processor and external devices. The communication interface is used for communicating with external terminals via a network. When the computer program is executed by the processor, it implements an air conditioning water supply method.
[0133] Those skilled in the art will understand that Figure 9 The structure shown is merely a block diagram of a portion of the structure related to the present application and does not constitute a limitation on the computer device to which the present application is applied. Specific computer devices may include more or fewer components than those shown in the figure, or combine certain components, or have different component arrangements.
[0134] In one embodiment, a computer device is provided, including a memory and a processor, wherein the memory stores a computer program, and the processor executes the computer program to perform the following steps:
[0135] Obtain the current water flow data detected by the water flow detector configured on the current water supply pipeline;
[0136] If, based on the current water flow data, it is identified that the current water supply pipeline does not meet the water supply requirements for the air conditioning sprinkler system, then the target water supply pipeline is selected from the backup water supply pipeline that can supply water to the sprinkler system.
[0137] Shut down the current water supply pipe and open the target water supply pipe to supply water to the sprinkler system through the target water supply pipe.
[0138] In one embodiment, when the processor executes the logic in the computer program that identifies, based on current water flow data, that the current water supply pipe does not meet the water supply requirements for the air conditioning sprinkler system, the following steps are specifically implemented:
[0139] The current water flow rate is compared with the water flow rate threshold, which is determined based on historical water flow rate data under normal water supply conditions to the sprinkler system. If the comparison result shows that the current water flow rate is less than the water flow rate threshold, it is determined that the current water supply pipeline does not meet the water supply requirements of the air conditioning sprinkler system.
[0140] In one embodiment, when the processor executes the logic in the computer program to select a target water supply pipe from the backup water supply pipes capable of supplying water to the sprinkler system, it specifically implements the following steps:
[0141] Determine if there is a usable water supply pipe among the internal backup water supply pipes that can supply water to the sprinkler system; if so, select the target water supply pipe from the usable water supply pipes.
[0142] In one embodiment, when the processor executes the logic in the computer program to select a target water supply pipe from the available water supply pipes, it specifically implements the following steps:
[0143] Based on at least one of the following: pipe length, pipe tortuosity, and pipe inner diameter, select at least one standby water supply pipe from the available water supply pipes; based on the historical number of failures of each standby water supply pipe, select a target water supply pipe from the standby water supply pipes.
[0144] In one embodiment, when a processor executes logic in a computer program, it specifically implements the following steps:
[0145] If none of the internal backup water supply pipes that can supply water to the sprinkler system are available, then the external backup water supply pipe will be used as the target water supply pipe.
[0146] In one embodiment, when a processor executes logic in a computer program, it specifically implements the following steps:
[0147] Determine the warning level based on the source of the target water supply pipeline; based on the warning level, output the warning information to the terminal held by the operation and maintenance party.
[0148] In one embodiment, a computer-readable storage medium is provided having a computer program stored thereon, the computer program performing the following steps when executed by a processor:
[0149] Obtain the current water flow data detected by the water flow detector configured on the current water supply pipeline;
[0150] If, based on the current water flow data, it is identified that the current water supply pipeline does not meet the water supply requirements for the air conditioning sprinkler system, then the target water supply pipeline is selected from the backup water supply pipeline that can supply water to the sprinkler system.
[0151] Shut down the current water supply pipe and open the target water supply pipe to supply water to the sprinkler system through the target water supply pipe.
[0152] In one embodiment, when the code logic in the computer program that identifies, based on current water flow data, that the current water supply pipe does not meet the water supply requirements for the air conditioning sprinkler system is executed by the processor, the following steps are specifically implemented:
[0153] The current water flow rate is compared with the water flow rate threshold, which is determined based on historical water flow rate data under normal water supply conditions to the sprinkler system. If the comparison result shows that the current water flow rate is less than the water flow rate threshold, it is determined that the current water supply pipeline does not meet the water supply requirements of the air conditioning sprinkler system.
[0154] In one embodiment, when the code logic in the computer program that selects a target water supply pipe from backup water supply pipes capable of supplying water to the sprinkler system is executed by the processor, the following steps are specifically implemented:
[0155] Determine if there is a usable water supply pipe among the internal backup water supply pipes that can supply water to the sprinkler system; if so, select the target water supply pipe from the usable water supply pipes.
[0156] In one embodiment, when the code logic in a computer program that selects a target water supply pipe from available water supply pipes is executed by the processor, the following steps are specifically implemented:
[0157] Based on at least one of the following: pipe length, pipe tortuosity, and pipe inner diameter, select at least one standby water supply pipe from the available water supply pipes; based on the historical number of failures of each standby water supply pipe, select a target water supply pipe from the standby water supply pipes.
[0158] In one embodiment, when the code logic in a computer program is executed by a processor, the following steps are specifically implemented:
[0159] If none of the internal backup water supply pipes that can supply water to the sprinkler system are available, then the external backup water supply pipe will be used as the target water supply pipe.
[0160] In one embodiment, when the code logic in a computer program is executed by a processor, the following steps are specifically implemented:
[0161] Determine the warning level based on the source of the target water supply pipeline; based on the warning level, output the warning information to the terminal held by the operation and maintenance party.
[0162] In one embodiment, a computer program product is provided, including a computer program that, when executed by a processor, performs the following steps:
[0163] Obtain the current water flow data detected by the water flow detector configured on the current water supply pipeline;
[0164] If, based on the current water flow data, it is identified that the current water supply pipeline does not meet the water supply requirements for the air conditioning sprinkler system, then the target water supply pipeline is selected from the backup water supply pipeline that can supply water to the sprinkler system.
[0165] Shut down the current water supply pipe and open the target water supply pipe to supply water to the sprinkler system through the target water supply pipe.
[0166] In one embodiment, when a computer program is executed by a processor to identify, based on current water flow data, that the current water supply pipe does not meet the water supply requirements for the air conditioning sprinkler system, the following steps are specifically implemented:
[0167] The current water flow rate is compared with the water flow rate threshold, which is determined based on historical water flow rate data under normal water supply conditions to the sprinkler system. If the comparison result shows that the current water flow rate is less than the water flow rate threshold, it is determined that the current water supply pipeline does not meet the water supply requirements of the air conditioning sprinkler system.
[0168] In one embodiment, when a computer program is executed by a processor to select a target water supply pipe from a backup water supply pipe capable of supplying water to the sprinkler system, the following steps are specifically implemented:
[0169] Determine if there is a usable water supply pipe among the internal backup water supply pipes that can supply water to the sprinkler system; if so, select the target water supply pipe from the usable water supply pipes.
[0170] In one embodiment, when a computer program is executed by a processor to select a target water supply pipe from available water supply pipes, the following steps are specifically implemented:
[0171] Based on at least one of the following: pipe length, pipe tortuosity, and pipe inner diameter, select at least one standby water supply pipe from the available water supply pipes; based on the historical number of failures of each standby water supply pipe, select a target water supply pipe from the standby water supply pipes.
[0172] In one embodiment, when a computer program is executed by a processor, the following steps are specifically implemented:
[0173] If none of the internal backup water supply pipes that can supply water to the sprinkler system are available, then the external backup water supply pipe will be used as the target water supply pipe.
[0174] In one embodiment, when a computer program is executed by a processor, the following steps are specifically implemented:
[0175] Determine the warning level based on the source of the target water supply pipeline; based on the warning level, output the warning information to the terminal held by the operation and maintenance party.
[0176] It should be noted that the data involved in this application (including but not limited to water flow data, etc.) are all information and data that have been fully authorized by all parties, and the collection, use and processing of the relevant data must comply with the relevant laws, regulations and standards of the relevant countries and regions.
[0177] Those skilled in the art will understand that all or part of the processes in the methods of the above embodiments can be implemented by a computer program instructing related hardware. The computer program can be stored in a non-volatile computer-readable storage medium, and when executed, it can include the processes of the embodiments of the above methods. Any references to memory, databases, or other media used in the embodiments provided in this application can include at least one of non-volatile and volatile memory. Non-volatile memory can include read-only memory (ROM), magnetic tape, floppy disk, flash memory, optical memory, high-density embedded non-volatile memory, resistive random access memory (ReRAM), magnetic random access memory (MRAM), ferroelectric random access memory (FRAM), phase change memory (PCM), graphene memory, etc. Volatile memory can include random access memory (RAM) or external cache memory, etc. By way of illustration and not limitation, RAM can take many forms, such as Static Random Access Memory (SRAM) or Dynamic Random Access Memory (DRAM). The databases involved in the embodiments provided in this application may include at least one type of relational database and non-relational database. Non-relational databases may include, but are not limited to, blockchain-based distributed databases. The processors involved in the embodiments provided in this application may be general-purpose processors, central processing units, graphics processing units, digital signal processors, programmable logic devices, quantum computing-based data processing logic devices, etc., and are not limited to these.
[0178] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0179] The embodiments described above are merely illustrative of several implementation methods of this application, and while the descriptions are specific and detailed, they should not be construed as limiting the scope of this patent application. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this application, and these all fall within the protection scope of this application. Therefore, the protection scope of this application should be determined by the appended claims.
Claims
1. A method for supplying water to an air conditioner, characterized in that, The method includes: Obtain the current water flow data detected by the water flow detector configured on the current water supply pipeline; Based on the current water flow data, determine whether the current water supply pipe is blocked; if the current water supply pipe is blocked, determine that the current water supply pipe does not meet the water supply requirements of the air conditioning spray system, and then determine whether there is a usable water supply pipe among the internal backup water supply pipes that can supply water to the spray system based on the fault mark on each internal backup water supply pipe. If so, at least one standby water supply pipe shall be selected from the available water supply pipes based on at least one of the pipe length, pipe tortuosity, and pipe inner diameter. Based on the historical number of failures of each standby water supply pipeline, a target water supply pipeline is selected from the standby water supply pipelines and then from the available water supply pipelines. The current water supply pipe is closed, and the target water supply pipe is opened to supply water to the sprinkler system through the target water supply pipe.
2. The method according to claim 1, characterized in that, The method further includes: If none of the internal backup water supply pipes capable of supplying water to the sprinkler system are available, then the external backup water supply pipe shall be used as the target water supply pipe.
3. The method according to claim 1, characterized in that, The method further includes: The warning level is determined based on the source of the target water supply pipeline; Based on the aforementioned warning level, warning information is output to the terminal held by the operation and maintenance party.
4. An air conditioning water supply device, characterized in that, The device includes: The data acquisition module is used to acquire the current water flow data detected by the water flow detector configured on the current water supply pipeline; The pipeline selection module is used to determine whether the current water supply pipeline is blocked based on the current water flow data; if the current water supply pipeline is blocked, it is determined that the current water supply pipeline does not meet the water supply requirements of the air conditioning sprinkler system, and then, based on the fault mark on each internal backup water supply pipeline, it is determined whether there is a usable water supply pipeline among the internal backup water supply pipelines that can supply water to the sprinkler system; if so, at least one standby water supply pipeline is selected from the usable water supply pipelines based on at least one of the pipeline length, pipeline tortuosity, and pipeline inner diameter; and a target water supply pipeline is selected from the available water supply pipelines based on the historical number of faults of each standby water supply pipeline. A water supply module is used to shut down the current water supply pipe and open the target water supply pipe to supply water to the sprinkler system through the target water supply pipe.
5. A computer device comprising a memory and a processor, wherein the memory stores a computer program, characterized in that, When the processor executes the computer program, it implements the steps of the method according to any one of claims 1 to 3.
6. A computer-readable storage medium having a computer program stored thereon, characterized in that, When the computer program is executed by a processor, it implements the steps of the method according to any one of claims 1 to 3.
7. A computer program product, comprising a computer program, characterized in that, When the computer program is executed by a processor, it implements the steps of the method according to any one of claims 1 to 3.
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