A fire protection room for a substation
By designing seal structures, temperature and humidity sensors, fans and dehumidifiers in the fire fighting interior of the substation, the problem of fire fighting equipment is easily rusted, and the long life and convenient use of the equipment is achieved.
Patent Information
- Application Number
- CN202010788072.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2020-08-07
- Publication Date
- 2025-09-02
- Estimated Expiration
- 2040-08-07
AI Technical Summary
The fire room of the substation has poor sealing properties, which leads to the fire-fighting equipment being easily stained with water and rusted, reducing its service life.
A sealed fire fighting room is designed with a temperature sensor and a humidity sensor, equipped with a fan and a dehumidifier. The fan and dehumidifier work are controlled by the controller to keep the indoor dry. The partition divides the room into the left and right sides, and stores fire fighting equipment that is easy to get wet and fire fighting equipment that is not easy to get wet. The left room is equipped with a first dehumidifier, the right room is equipped with a second dehumidifier, and a universal wheel is provided at the bottom of the fire sandbox.
It improves the service life of fire-fighting equipment, prevents rust from equipment, optimizes space utilization, and facilitates equipment transportation and use.
Smart Images

Figure CN112012526B_ABST
Abstract
Description
Technical field
[0001] The invention relates to a fire fighting room for a transformer substation, belonging to the field of fire fighting facilities of transformer substations. [Background Technology]
[0002] At present, in order to extinguish fire in time when it occurs in the substation, a fire room is usually set up in the substation, and various fire-fighting equipment are installed in the fire room. When the fire breaks out, the staff can extinguish the fire by taking out the fire-fighting equipment in the fire room, so that the fire can be extinguished in time.
[0003] However, the fire fighting room is usually poorly sealed, and the fire fighting equipment is easily stained with water during fire fighting, which causes the fire fighting room and the fire fighting equipment inside the fire fighting room to rust easily, causing the fire fighting equipment to be damaged and fail to function, thereby reducing the service life of the fire fighting equipment. [Summary of the invention]
[0004] The technical problem to be solved by the present invention is to provide a fire fighting room for a transformer substation, so as to increase the service life of fire fighting equipment.
[0005] To solve the above technical problems, the present invention is a fire fighting room for a substation, which is equipped with a portable fire extinguisher, a cart-type fire extinguisher, a fire bucket, a fire shovel, a hydraulic cart, a stainless steel bracket for placing the portable fire extinguisher, and a fire sand box and a fire sand bucket for placing dry fine sand. The fire fighting room is provided with a partition, which divides the fire fighting room into a left chamber and a right chamber. The portable fire extinguisher, the cart-type fire extinguisher, the fire bucket and the stainless steel bracket are located in the left chamber, and the fire sand box, the fire sand bucket and the fire shovel are located in the right chamber. The fire sand box is placed on the hydraulic cart. The fire fighting room is a sealed structure. The fire fighting room is also equipped with a temperature sensor and a humidity sensor, a fan for ventilation and cooling, a dehumidifier for dehumidification and rust prevention, and a controller for receiving signals from the temperature sensor and the humidity sensor and controlling the operation of the fan and / or the dehumidifier. The bottom of the fire sand box is provided with universal wheels.
[0006] After adopting the above structure, first, the fire fighting room is equipped with a portable fire extinguisher, a cart-type fire extinguisher, a fire bucket, a fire shovel, a hydraulic truck, a stainless steel bracket for placing the portable fire extinguisher, and a fire sand box and a fire sand bucket for placing dry fine sand. The fire bucket is a tool for shoveling water from the ground of the fire scene to extinguish the fire. The above fire fighting equipment can enable users to put out the fire in time. A partition is provided in the fire fighting room, which divides the fire fighting room into a left room and a right room. The structure of the fire fighting room is optimized, allowing users to place fire fighting equipment on the partition. The portable fire extinguisher, cart-type fire extinguisher, fire bucket The stainless steel bracket is located in the left room, the fire sand box, fire sand bucket and fire shovel are located in the right room, the fire shovel can be used to shovel dry fine sand in the fire sand box for fire fighting, the fire sand box is placed on a hydraulic vehicle, the fire room is a sealed structure, the fire room is also provided with a temperature sensor and a humidity sensor, a fan for ventilation and cooling, a dehumidifier for dehumidification and rust prevention, a controller for receiving signals from the temperature sensor and the humidity sensor and controlling the operation of the fan and / or dehumidifier, so that cooling and dehumidification can be achieved, and a universal wheel is provided at the bottom of the fire sand box so that the fire sand box can be moved.
[0007] Secondly, in the prior art, the sealing of the fire fighting room is poor, and the fire fighting equipment is easily stained with water during fire fighting, which causes the fire fighting room and the fire fighting equipment inside the fire fighting room to rust easily, causing the fire fighting equipment to be damaged and fail to function, thereby reducing the service life of the fire fighting equipment. With the above structure, the fire fighting room is a sealed structure, which allows the fire fighting room to prevent water vapor outside the fire fighting room from entering the fire fighting room, resulting in high humidity in the fire fighting room. The real-time temperature and humidity in the fire fighting room can be detected by the temperature sensor and the humidity sensor. When the temperature in the fire fighting room is high, the controller controls the fan for ventilation and cooling to prevent the high temperature from causing damage to the fire fighting equipment. When the humidity in the fire fighting room is high, the controller controls the dehumidifier for dehumidification to prevent the fire fighting equipment from rusting, thereby improving the service life of the fire fighting equipment.
[0008] Based on the above structure, the fire fighting room is a sealed structure, and a fan and a dehumidifier are installed in the fire fighting room, so that the temperature and humidity in the fire fighting room are less affected by the outdoor temperature and humidity, so that the ventilation and cooling of the fan and the dehumidification of the dehumidifier can have a higher effect.
[0009] Based on the above structure, the portable fire extinguisher, cart-type fire extinguisher, fire bucket and stainless steel bracket are located in the left room, and the fire sand box, fire sand bucket and fire shovel are located in the right room. When extinguishing a fire, the portable fire extinguisher, cart-type fire extinguisher and fire bucket are easily stained with water stains. When placed in the fire room, the humidity of the fire room will increase. The fire sand box, fire sand bucket and fire shovel are not easily stained with water stains when extinguishing a fire. After the dry fine sand in the fire sand box and fire sand bucket becomes wet, the overall weight of the dry fine sand will increase, making it inconvenient to transport and use. At the same time, it will also lead to poor fire extinguishing effect when extinguishing a fire. Separation by partitions can reduce the impact of the humidity in the left room on the right room. Dehumidification by a dehumidifier can fully ensure that the humidity in the right room is low and the left room can be dehumidified quickly.
[0010] Based on the above structure, the fire sand box is placed on a hydraulic cart, and universal wheels are provided at the bottom of the fire sand box, which can not only optimize the space in the fire room so that the hydraulic cart does not occupy space alone, but also enable the hydraulic cart to transport the fire sand box, which is convenient for users to use. At the same time, the fire sand box can be moved through the universal wheels at the bottom, so that the hydraulic cart can transport other fire-fighting equipment, making it more convenient for users to use.
[0011] Preferably, the fan is located in the left chamber, a first dehumidifier for dehumidification and rust prevention is provided in the left chamber, and a second dehumidifier for dehumidification to prevent dry fine sand from becoming wet is provided in the right chamber.
[0012] Preferably, the controller is provided with a memory for storing the designed theoretical humidity and a comparator for comparing the designed theoretical humidity with the real-time humidity detected by the humidity sensor.
[0013] Preferably, the left chamber and the right chamber are both provided with temperature sensors and humidity sensors, and the memory includes a left chamber memory for storing the left chamber design theoretical humidity and a right chamber memory for storing the right chamber design theoretical humidity, and the left chamber design theoretical humidity is greater than the right chamber design theoretical humidity.
[0014] Preferably, the power of the second dehumidifier is greater than the power of the first dehumidifier.
[0015] Preferably, the fire fighting room includes a left side wall, a left side chamber is formed between the left side wall and the partition, the stainless steel bracket is located at the bottom of the left side wall, the partition is provided with a fire hose and a fire hose on the side located in the left side chamber, the trolley-type fire extinguisher is located between the left side wall and the partition, and there is space for staff to walk between its two sides and the stainless steel bracket and the partition.
[0016] Preferably, the left side wall is a visible glass side wall for allowing a user to observe the left side chamber outside the fire room.
[0017] Preferably, the fire fighting room includes a right side wall, and a right room is formed between the right side wall and the partition. The fire fighting shovel is located on the right side wall, the fire fighting sand bucket is located at the bottom of the right side wall, and the fire fighting sand box and the hydraulic truck are located on the side close to the partition, and there is space for staff to walk between them and the fire fighting sand bucket.
[0018] Preferably, the fire fighting room is provided with fire fighting doors for opening and closing the fire fighting room on both sides along the length direction of the partition.
[0019] Preferably, the partition is slidably connected to the fire fighting chamber along its width direction, and a separation plate perpendicular to the partition is further provided in the fire fighting chamber.
[0020] These features and advantages of the present invention will be disclosed in detail in the following specific embodiments and drawings.
Brief Description of the Drawings
[0021] The present invention will be further described in detail below with reference to the accompanying drawings, in which:
[0022] Figure 1 is a schematic diagram of a fire fighting room of the present invention;
[0023] Figure 2 A schematic diagram of the fire fighting chamber of the present invention as viewed from the left side;
[0024] Figure 3 This is a schematic diagram showing the connection between the various parts of the fire protection room of the present invention and the controller. [Specific implementation method]
[0025] The following is an explanation and description of the technical solutions of the embodiments of the present invention in conjunction with the drawings of the embodiments of the present invention. However, the following embodiments are only preferred embodiments of the present invention and are not exhaustive. Based on the embodiments in the implementation manner, other embodiments obtained by those skilled in the art without creative work are all within the scope of protection of the present invention.
[0026] In the following description, terms such as "inside", "outside", "up", "down", "left", "right", etc. that indicate orientations or positional relationships are based on the orientations or positional relationships shown in the accompanying drawings. They are only for the convenience of describing the embodiments and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operate in a specific orientation. Therefore, they should not be understood as limiting the present invention.
[0027] like Figures 1 to 3As shown, the fire fighting room for a substation in this embodiment is provided with a portable fire extinguisher, a cart-type fire extinguisher, a fire bucket, a fire shovel, a hydraulic vehicle, a stainless steel bracket 11 for placing the portable fire extinguisher, and a fire sand box and a fire sand bucket for placing dry fine sand. The fire fighting room is provided with a partition 1, which divides the fire fighting room into a left chamber 2 and a right chamber 3. The portable fire extinguisher, the cart-type fire extinguisher, the fire bucket and the stainless steel bracket 11 are located in the left chamber 2, and the fire sand box, the fire sand bucket and the fire shovel are located in the right chamber 3. The fire sand box is placed on the hydraulic vehicle. The fire fighting room is a sealed structure. The fire fighting room is also provided with a temperature sensor 4 and a humidity sensor 5, a fan 7 for ventilation and cooling, a dehumidifier 8 for dehumidification and rust prevention, and a controller 6 for receiving signals from the temperature sensor 4 and the humidity sensor 5 and controlling the operation of the fan 7 and / or the dehumidifier 8. The bottom of the fire fighting sand box is provided with universal wheels.
[0028] After adopting the above structure, first, the fire fighting room is equipped with a portable fire extinguisher, a cart-type fire extinguisher, a fire bucket, a fire shovel, a hydraulic car, a stainless steel bracket 11 for placing the portable fire extinguisher, and a fire sand box and a fire sand bucket for placing dry fine sand. The fire bucket is a tool for shoveling water from the ground of the fire scene to extinguish the fire. The above fire fighting equipment can enable users to put out the fire in time. A partition 1 is provided in the fire fighting room, and the partition 1 divides the fire fighting room into a left room 2 and a right room 3. The structure of the fire fighting room is optimized, and users can place fire fighting equipment on the partition 1. The portable fire extinguisher, cart-type fire extinguisher, fire bucket and stainless steel bracket 11 are used to place the portable fire extinguisher and a fire sand box and a fire sand bucket are used to place dry fine sand. The fire bucket is a tool for shoveling water from the ground of the fire scene to extinguish the fire. The above fire fighting equipment can enable users to put out the fire in time. The steel bracket 11 is located in the left room 2, and the fire sand box, fire sand bucket and fire shovel are located in the right room 3. The fire shovel can be used to shovel dry fine sand in the fire sand box for fire fighting. The fire sand box is placed on a hydraulic vehicle. The fire room is a sealed structure. The fire room is also equipped with a temperature sensor 4 and a humidity sensor 5, a fan 7 for ventilation and cooling, a dehumidifier 8 for dehumidification and rust prevention, and a controller 6 for receiving signals from the temperature sensor 4 and the humidity sensor 5 and controlling the operation of the fan 7 and / or the dehumidifier 8, so that cooling and dehumidification can be achieved. Universal wheels are provided at the bottom of the fire sand box so that the fire sand box can be moved.
[0029] Secondly, in the prior art, the sealing of the fire fighting room is poor, and the fire fighting equipment is easily stained with water during fire fighting, which causes the fire fighting room and the fire fighting equipment inside the fire fighting room to rust easily, causing the fire fighting equipment to be damaged and fail to function, thereby reducing the service life of the fire fighting equipment. With the above structure, the fire fighting room is a sealed structure so that the fire fighting room can prevent the water vapor outside the fire fighting room from entering the fire fighting room, resulting in high humidity in the fire fighting room. The real-time temperature and humidity in the fire fighting room can be detected by the temperature sensor 4 and the humidity sensor 5. When the temperature in the fire fighting room is high, the controller 6 controls the fan 7 for ventilation and cooling to prevent the high temperature from causing damage to the fire fighting equipment. When the humidity in the fire fighting room is high, the controller 6 controls the dehumidifier 8 for dehumidification to prevent the fire fighting equipment from rusting, thereby improving the service life of the fire fighting equipment.
[0030] Based on the above structure, the fire fighting room is a sealed structure, and a fan 7 and a dehumidifier 8 are provided in the fire fighting room, so that the temperature and humidity in the fire fighting room are less affected by the outdoor temperature and humidity, thereby enabling the ventilation and cooling of the fan 7 and the dehumidification of the dehumidifier 8 to have a higher effect.
[0031] Based on the above structure, the portable fire extinguisher, cart-type fire extinguisher, fire bucket and stainless steel bracket 11 are located in the left chamber 2, and the fire sand box, fire sand bucket and fire shovel are located in the right chamber 3. When extinguishing a fire, the portable fire extinguisher, cart-type fire extinguisher and fire bucket are easily stained with water stains. When placed in the fire fighting room, the humidity of the fire fighting room will increase. The fire sand box, fire sand bucket and fire shovel are not easily stained with water stains when extinguishing a fire. After the dry fine sand in the fire sand box and fire sand bucket becomes wet, the overall weight of the dry fine sand will increase, making it inconvenient to transport and use. At the same time, it will also lead to poor fire extinguishing effect when extinguishing a fire. Separation by the partition 1 can make the humidity in the left chamber 2 have less impact on the right chamber 3. Dehumidification by the dehumidifier 8 can fully ensure that the humidity in the right chamber 3 is low and the left chamber 2 can be dehumidified quickly.
[0032] Based on the above structure, the fire sand box is placed on a hydraulic cart, and universal wheels are provided at the bottom of the fire sand box, which can not only optimize the space in the fire room so that the hydraulic cart does not occupy space alone, but also enable the hydraulic cart to transport the fire sand box, which is convenient for users to use. At the same time, the fire sand box can be moved through the universal wheels at the bottom, so that the hydraulic cart can transport other fire-fighting equipment, making it more convenient for users to use.
[0033] In order to optimize the fan 7 and the dehumidifier 8, the fan 7 is preferably located in the left chamber 2 in this embodiment. The left chamber 2 is provided with a first dehumidifier 8 for dehumidification and rust prevention, and the right chamber 3 is provided with a second dehumidifier 8 for dehumidification to prevent the dry fine sand from becoming wet. Since the fire extinguisher is easily damaged under high temperature conditions, a fan 7 can be set in the left chamber 2 for cooling, while the fire sand box, fire sand bucket and fire shovel placed in the right chamber 3 are less affected by temperature, so there is no need to set a fan 7, thereby optimizing the structure and making the fire room structure simpler. Secondly, since the left chamber 2 The fire-fighting equipment in the side chamber 2 is easily stained with water during use. After evaporation, water vapor is formed, which increases the humidity of the air. The fan 7 can guide the air so that the water vapor quickly leaves the left chamber 2, which is convenient for further dehumidification. Since the humidity requirements of the left chamber 2 and the right chamber 3 are different, dry fine sand is placed in the right chamber 3, and the humidity requirement is higher, while the left chamber 2 is mainly used for dehumidification and rust prevention. The first dehumidifier 8 and the second dehumidifier 8 can separate the dehumidification of the left chamber 2 and the right chamber 3, so that the left chamber 2 and the right chamber 3 will not affect each other, which is convenient for users to better dehumidify.
[0034] In order to enable the controller 6 to receive real-time data from the temperature sensor 4 and the humidity sensor 5 and control the operation of the fan 7 and the dehumidifier 8 according to the real-time data, in this embodiment, the controller 6 is preferably provided with a memory for storing the designed theoretical humidity and a comparator for comparing the designed theoretical humidity and the real-time humidity detected by the humidity sensor 5. The designed theoretical humidity refers to the critical humidity value set by the user. When the real-time humidity reaches this critical humidity, the controller 6 controls the dehumidifier 8 to work. The coordinated use of the memory and the comparator makes it more convenient for the user to use. In addition, the designed theoretical temperature can also be stored in the memory, and the comparator can also compare the designed theoretical temperature and the real-time temperature detected by the temperature sensor 4, so that the user can control the operation of the fan 7 according to the real-time temperature.
[0035] In order to make the dehumidification of the fire room more convenient, in this embodiment, the left chamber 2 and the right chamber 3 are preferably provided with a temperature sensor 4 and a humidity sensor 5, and the memory includes a left chamber 2 memory for storing the design theoretical humidity of the left chamber 2 and a right chamber 3 memory for storing the design theoretical humidity of the right chamber 3. The design theoretical humidity of the left chamber 2 is greater than the design theoretical humidity of the right chamber 3. Due to the different humidity requirements in the left chamber 2 and the right chamber 3, the controller 6 turns on the first dehumidifier 8 and the second dehumidifier 8 at different design theoretical humidity values, and usually the humidity requirement in the right chamber 3 is higher, that is, a lower humidity is required. Therefore, the design theoretical humidity of the left chamber 2 is greater than the design theoretical humidity of the right chamber 3, so that the controller 6 can control the opening of the second humidity sensor 5 in the right chamber 3 at a lower humidity than that of the left chamber 2, so that the dry fine sand in the right chamber 3 will not become wet, and the dehumidifier 8 in the left chamber 2 will not be turned on at a lower humidity to waste electricity, and the optimized structure makes dehumidification of the fire room more convenient. In addition, the temperature sensor 4 and the humidity sensor 5 in the right chamber 3 are detected at the same time and compared with the design theoretical humidity at different temperatures, so that the dry fine sand in the right chamber 3 can be maintained in a better humidity state.
[0036] In order to make the dehumidification efficiency of the right side chamber 3 higher, in this embodiment, it is preferred that the power of the second dehumidifier 8 is greater than the power of the first dehumidifier 8. The use of a high-power dehumidifier 8 can make the dehumidification efficiency of the right side chamber 3 higher, thereby ensuring the dryness of the dry fine sand, making it convenient for users to use dry fine sand for fire extinguishing. At the same time, the left side chamber 2 does not need to use a high-power dehumidifier 8. The left side chamber 2 can quickly dehumidify by the simultaneous operation of the fan 7 and the dehumidifier 8.
[0037] In order to optimize the space in the left side chamber 2, in this embodiment, the fire fighting chamber preferably includes a left side wall 9, and the left side chamber 2 is formed between the left side wall 9 and the partition 1. The stainless steel bracket 11 is located at the bottom of the left side wall 9, and the partition 1 is provided with a fire hose and a fire hose on the side located in the left side chamber 2. The trolley-type fire extinguisher is located between the left side wall 9 and the partition 1, and there is space for staff to walk between its two sides and the stainless steel bracket 11 and the partition 1, so that the user can directly push the trolley-type fire extinguisher, or can walk in the space on both sides of the trolley-type fire extinguisher to take the portable fire extinguisher, fire hose and fire hose on the stainless steel bracket 11, which is convenient for the user to use.
[0038] In order to enable the user to observe the interior from outside, in this embodiment, the left side wall 9 is preferably a visual glass side wall for allowing the user to observe the left side chamber 2 from outside the fire room. The visual glass side wall allows the user to observe the interior from outside, so that the user can observe the pointer of the fire extinguisher from outside to determine whether the fire extinguishing material in the fire extinguisher is sufficient, making it more convenient for the user to check. At the same time, the user can observe the interior through the visual glass side wall to prevent the user from being unable to deal with the danger in the room in time.
[0039] In order to optimize the space in the right side chamber 3, this embodiment preferably has the right side wall 10, and the fire sand bucket is located at the bottom of the right side wall 10. The fire sand box and the hydraulic cart are located on the side close to the partition 1, and there is space for staff to walk between the fire sand bucket and the hydraulic cart, so that the user can directly push the hydraulic cart, or walk in the space between the hydraulic cart and the right side wall 10 to take out firefighting equipment such as fire shovels. In addition, the fire sand box is also provided with space for placing fire sand buckets and fire shovels.
[0040] In order to make it more convenient for users to take out fire-fighting equipment, in this embodiment, the fire-fighting room is preferably provided with fire doors 12 for opening and closing the fire-fighting room on both sides along the length direction of the partition 1, so that users can enter the fire-fighting room from both sides to take out fire-fighting equipment, making it more convenient for users to take out fire-fighting equipment. At the same time, when multiple users take it, they can enter and exit the fire-fighting room from both sides respectively to prevent mutual interference when entering and exiting from one side, which reduces the efficiency of taking.
[0041] In order to allow the space inside the fire fighting room to be divided and changed by the user, in this embodiment, the partition 1 is preferably slidably connected to the fire fighting room along its width direction, and a separation plate perpendicular to the partition 1 is also provided in the fire fighting room. The space inside the fire fighting room can be divided and changed by the user through the sliding of the partition 1 and the provision of the separation plate, so that the user can change the space according to the size and quantity of the fire fighting equipment, thereby increasing the scope of application of the fire fighting room.
[0042] The above description is merely a specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Those skilled in the art will understand that the present invention includes, but is not limited to, the contents described in the drawings and the above specific embodiments. Any modifications that do not deviate from the functional and structural principles of the present invention are intended to be included within the scope of the claims.
Claims
1. A fire protection room for a substation, characterized by: The fire fighting room is provided with a portable fire extinguisher, a cart-type fire extinguisher, a fire bucket, a fire shovel, a hydraulic vehicle, a stainless steel bracket for placing a portable fire extinguisher, and a fire sand box and a fire sand bucket for placing dry fine sand. The fire fighting room is provided with a partition, which divides the fire fighting room into a left room and a right room to reduce the mutual influence of the humidity of the left room and the right room. The portable fire extinguisher, the cart-type fire extinguisher, the fire bucket and the stainless steel bracket are located in the left room, the fire sand box, the fire sand bucket and the fire shovel are located in the right room, the fire sand box is placed on the hydraulic vehicle, the fire fighting room is a sealed structure, and the fire fighting room is also provided with a temperature sensor and a humidity sensor, a fan for ventilation and cooling, a dehumidifier for dehumidification and rust prevention, a temperature sensor and a The controller receives the signal from the humidity sensor and controls the operation of the fan and / or dehumidifier. The fire sand box is provided with a universal wheel at the bottom. The fan is located in the left chamber. The left chamber is provided with a first dehumidifier for dehumidification and rust prevention. The right chamber is provided with a second dehumidifier for dehumidification to prevent dry fine sand from becoming wet. The controller is provided with a memory for storing the designed theoretical humidity and a comparator for comparing the designed theoretical humidity with the real-time humidity detected by the humidity sensor. Both the left chamber and the right chamber are provided with a temperature sensor and a humidity sensor. The memory includes a left chamber memory for storing the designed theoretical humidity of the left chamber and a right chamber memory for storing the designed theoretical humidity of the right chamber. The designed theoretical humidity of the left chamber is greater than the designed theoretical humidity of the right chamber.
2. A fire protection room for a substation according to claim 1, characterized in that: The power of the second dehumidifier is greater than the power of the first dehumidifier.
3. A fire protection room for a substation according to claim 1, characterized in that: The fire fighting room includes a left side wall, and a left side chamber is formed between the left side wall and the partition. The stainless steel bracket is located at the bottom of the left side wall. The partition is provided with a fire hose and a fire hose gun on the side located in the left side chamber. The cart-type fire extinguisher is located between the left side wall and the partition, and there is space for staff to walk between its two sides and the stainless steel bracket and the partition.
4. A fire protection room for a substation according to claim 3, characterized in that: The left side wall is a visual glass side wall for allowing a user to observe the left side chamber outside the fire room.
5. A fire protection room for a substation according to claim 1, characterized in that: The fire fighting room includes a right side wall, and a right room is formed between the right side wall and the partition. The fire fighting shovel is located on the right side wall, and the fire fighting sand bucket is located at the bottom of the right side wall. The fire fighting sand box and the hydraulic truck are located on the side close to the partition, and there is space for staff to walk between them and the fire fighting sand bucket.
6. A fire protection room for a substation according to claim 1, characterized in that: The fire fighting room is provided with fire fighting doors for opening and closing the fire fighting room on both sides along the length direction of the partition.
7. A fire protection room for a substation according to claim 1, characterized in that: The partition is slidably connected to the fire fighting chamber along its width direction, and a separation plate perpendicular to the partition is further provided in the fire fighting chamber.
Citation Information
Patent Citations
Fire-fighting room for transformer substation
CN212453802U