Oil depot fire emergency water supply and fire accident water disposal device
By designing an emergency fire water supply and fire accident water treatment device for large oil depots under fire emergency conditions, oil-water separation is achieved through gravity separation and pipeline connection. This solves the problems of high demand for fire water and difficulty in treating accident water, improves fire extinguishing effect and sprinkler cooling capacity, and reduces the treatment and storage of accident water.
Patent Information
- Application Number
- CN202520095670.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-15
- Publication Date
- 2026-01-20
- Estimated Expiration
- 2035-01-15
AI Technical Summary
In the event of a fire emergency at a large oil depot, the demand for fire-fighting water is high and the workload for fire accident water treatment is also large. Existing technologies are insufficient to achieve the recycling and efficient separation of fire-fighting water, resulting in difficulties and high costs in accident water treatment.
Design an emergency fire water supply and fire accident water treatment device for oil depots, including a tank, multiple baffles and a material recovery device. Oil and water are separated by gravity separation, with light materials accumulating at the top and water at the bottom. A centrifugal pump and fire-fighting equipment are connected by pipelines to achieve the recycling of fire-fighting water.
It improved the fire extinguishing effect, reduced the treatment and storage of accident water, reduced accident losses and treatment costs, enhanced the spray cooling capacity, and realized the efficient recycling of fire water.
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Figure CN223813387U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to oil depot oil water separation device technical field especially, relates to a kind of oil depot fire emergency water supply and fire accident water disposal device. BACKGROUND
[0002] Large oil depot fire emergency state, rely on own fire water supply system to realize fire extinguishing and spray system for surrounding storage tank cooling, short time is large to fire water demand, fire cooling water and leaked liquid are mixed in fire dike, with time elapses, liquid level in fire dike is constantly rising, water in tank area fire dike must be introduced into accident pool, later accident water disposal workload is large. CONTENT OF UTILITY MODEL
[0003] The utility model solves the technical problem that the prior art is short of, and provides a kind of oil depot fire emergency water supply and fire accident water disposal device.
[0004] The utility model solves the technical problem of the above-mentioned technical scheme as follows: a kind of oil depot fire emergency water supply and fire accident water disposal device, comprising: tank body, multiple partitions, material recycler, multiple The partition is installed in the tank body, and the multiple partitions are sequentially annularly arranged, and the multiple partitions are all provided with partition channels, the top of the tank body is provided with material recovery port and oil outlet, the material recycler is connected with the material recovery port by pipeline, and the bottom of the tank body is provided with fire water outlet and bottom inlet.
[0005] The beneficial effects of the technical scheme of the utility model are as follows: the accident water in the fire dike is separated from the fire dike by the oil-water separation device, the material is treated in the waste oil tank or the recovery tank, and the water can be supplied to the temporary fire fighting device to supply water to the temporary fire fighting device and the auxiliary spray cooling device. The spray cooling and fire extinguishing intensity are enhanced, and the fire fighting effect is improved. In the large oil depot fire site, the fire water recycling can be realized based on the existing fire water supply capacity, the fire water supply capacity under emergency state is improved, the fire fighting effect is improved, the fire accident water discharge is reduced, the accident water treatment and accommodation are reduced, the material is efficiently recycled, the fire accident loss and accident treatment cost are reduced. The material recycler is used for recycling the material floating on the surface. The bottom inlet is used for collecting the accident water in the fire pool at the bottom. The fire water outlet supplies water to the fire fighting device through the pipeline. The multiple partitions are arranged, the lightweight material is gathered on the upper part by gravity, and the water is gathered on the lower part, so that oil-water separation is realized.
[0006] Further, the tank body is cylindrical, and the top of the tank body is spherical.
[0007] The beneficial effects of the above-mentioned further technical scheme are that the lightweight material is easily gathered, and the purity of the recycled material is improved.
[0008] Further, the plurality of said partitions are a first partition, a second partition, a third partition, a fourth partition and a fifth partition, the fifth partition is located in the middle of the tank body, the fourth partition is sleeved outside the fifth partition, the third partition is sleeved outside the fourth partition, the second partition is sleeved outside the third partition, and the first partition is sleeved outside the second partition.
[0009] The beneficial effect of the above further technical scheme is that the installation and maintenance of the plurality of partitions are facilitated, and the separation efficiency and separation effect are improved.
[0010] Further, the top of the first partition is provided with a first partition passage, the bottom of the second partition is provided with a second partition passage, the top of the third partition is provided with a third partition passage, the bottom of the fourth partition is provided with a fourth partition passage, and the top of the fifth partition is provided with a fifth partition passage.
[0011] The beneficial effect of the above further technical scheme is that in order to ensure the separation effect, the first partition is through at the upper end, and water flows downward by gravity. The second partition passage is arranged near the lower end, so that the sediment is settled at the bottom, and the purity of the separated water is ensured. The third partition material passes through the upper end of the partition, the fourth partition passes through the lower section, and they are arranged in sequence to realize effective separation of oil, water and sediment.
[0012] Further, a conical top is arranged above the second partition, and a conical top passage is arranged on the conical top.
[0013] The beneficial effect of the above further technical scheme is that the conical top is arranged above the second partition, and the top end extends upward through the conduit. The light oil material is collected in the upper layer.
[0014] Further, the first partition, the second partition, the third partition, the fourth partition and the fifth partition are all annular structures.
[0015] The beneficial effect of the above further technical scheme is that the installation and maintenance of the plurality of partitions are facilitated, and the separation efficiency and separation effect are improved.
[0016] Further, the oil outlet is connected with a centrifugal pump through a pipeline, the centrifugal pump is connected with a waste oil tank or an accident tank through a pipeline, and the fire-fighting water outlet is connected with a fire-fighting device through a pipeline.
[0017] The beneficial effect of the above further technical scheme is that the oil outlet delivers the recovered material to the waste oil tank or the accident tank through the pipeline and the centrifugal pump, which is used for collecting the oil in the fire-fighting pool. The fire-fighting water outlet outputs water as fire-fighting water supply. The fire-fighting water outlet supplies water to the fire-fighting device through the pipeline.
[0018] Further, the density of the material recovery device is less than the density of the fire water, and the density of the material recovery device is greater than the density of the material, and the density of the pipeline between the material recovery device and the material recovery port is equal to the density of the fire water.
[0019] The beneficial effects of the above further technical solutions are: the pipeline connected with the material recovery port is set to have a density consistent with or close to the density of the fire water, so as to ensure that the material recovery device at the upper end can stably float and does not affect the material recovery. The density of the material recovery device is slightly less than that of water and greater than that of the material, so as to ensure that the material recovery device can float on the water surface and be immersed in the oil layer of the fire water.
[0020] Further, the material recovery device is in a horn-shaped structure, a plurality of guide grooves are arranged on the inner wall of the material recovery device, a material passing port is arranged at the middle part of the material recovery device, a filter isolation net is arranged at the material passing port, and the material passing port is connected with the material recovery port through a pipeline.
[0021] The beneficial effects of the above further technical solutions are: the material recovery device is in a horn-shaped structure, the bottom part is relatively heavy, the upper end is in a disc-shaped structure and is relatively light, so as to ensure that the material recovery device can stably float in the liquid. The upper surface of the material recovery device is provided with a certain depth of evenly distributed radial guide grooves, so as to facilitate the flow of light liquid into the material recovery device. The material passing port is provided with a filter isolation net, so as to avoid the flow of sundries into the device and affect use.
[0022] Further, a rubber sealing gasket is arranged at the bottom end feeding port, a lever is connected with the rubber sealing gasket, the bottom part of the lever is hingedly connected with the tank body, and a float is arranged at the top part of the lever.
[0023] The beneficial effects of the above further technical solutions are: the rubber sealing gasket is arranged below the bottom end feeding port, cooperates with the lever, a float is arranged at one end of the lever, when the liquid level reaches a certain height, the bottom end feeding port is opened to allow the material to enter, at this time, the lower end fire water outlet is allowed to work to supply the fire water. When the liquid level is below a certain degree, the bottom end feeding port is closed, at this time, the fire water outlet does not work, only the material recovery port and the oil outlet are allowed to work, and the main working condition is to recover the material.
[0024] The advantages of the additional aspects of the utility model will be partially given in the following description, some will become apparent from the following description, or will be understood through the practice of the utility model. BRIEF DESCRIPTION OF DRAWINGS
[0025] Figure 1 The structure schematic view of the oil depot fire emergency water supply and fire accident water disposal device provided by the utility model embodiment.
[0026] Figure 2 The structure schematic view of the material recovery device provided by the utility model embodiment.
[0027] Figure 3 The structure schematic diagram of the buoy, the lever, the rubber sealing gasket, the bottom end feed port and the tank body is provided for the embodiment of the utility model.
[0028] The number of the drawing is explained: 1, tank body; 2, material recycling device; 3, material recycling port; 4, oil outlet; 5, fire water outlet; 6, bottom end feed port; 7, first baffle; 8, second baffle; 9, third baffle; 10, fourth baffle; 11, fifth baffle; 12, first baffle channel; 13, second baffle channel; 14, third baffle channel; 15, fourth baffle channel; 16, fifth baffle channel; 17, conical top channel; 18, guide groove; 19, material passing port; 20, rubber sealing gasket; 21, lever; 22, buoy. DETAILED DESCRIPTION
[0029] The principles and characteristics of the utility model are described below in combination with the drawings, and the examples are only used to explain the utility model and not used to limit the scope of the utility model.
[0030] As Figures 1 to 3 Indicated, a kind of oil depot fire emergency water supply and fire accident water disposal device, comprising: tank body 1, multiple baffle, material recycling device 2, multiple the baffle are all installed in the tank body 1, multiple the baffle are sequentially annularly arranged, multiple the baffle are all equipped with baffle channel, the top of the tank body 1 is equipped with material recycling port 3 and oil outlet 4, the material recycling device 2 is connected with the material recycling port 3 by pipeline, the bottom of the tank body 1 is equipped with fire water outlet 5 and bottom end feed port 6.
[0031] The beneficial effects of the technical scheme of the utility model are: the accident water in the fire dam is separated from the fire accident water in the fire dam by oil-water separation device, the material is entered into the waste oil tank or recycling tank for processing, and the water can be supplied to the temporary fire fighting device to supply water to the temporary fire fighting device and auxiliary spray cooling device. The spray cooling and fire extinguishing intensity are enhanced, and the fire fighting effect is improved. In the large oil depot fire scene, on the basis of existing fire water supply capacity, fire water recycling is realized, fire water supply capacity in emergency state is improved, fire fighting effect is improved, fire accident water is reduced, and the processing and accommodation of accident water are reduced. Material recycling device is used for recycling material floating on the surface. Bottom end feed port is used for collecting accident water in the fire pool at the bottom. Fire water outlet supplies water to fire fighting device through pipeline. Multiple baffle is arranged, and the oil-water separation is realized by using gravity effect, and light material is gathered in upper part, and water is gathered in lower part.
[0032] Among them, multiple baffle channels are all equipped with filter screen.
[0033] The oil depot fire emergency water supply and fire accident water disposal device provided by the embodiment of the utility model can be placed in the liquid of the fire dike, fire pool or fire pool dike.
[0034] The oil depot fire emergency water supply and fire accident water disposal device provided by the embodiment of the utility model can be an oil-water separation device and an oil depot fire emergency water supply device, belongs to the oil depot fire accident water treatment technology, and can be specifically applied to fire accident water treatment and fire emergency water source supplement, and is mainly applied to oil depot fire emergency water supplement and temporary fire device emergency water supply device.
[0035] The fixed oil-water separation device (oil depot fire emergency water supply and fire accident water disposal device) is arranged in the fire dike of the oil tank area, the accident water in the fire dike is supplied to the temporary fire facility and the auxiliary spraying cooling device through the oil-water separation device (oil depot fire emergency water supply and fire accident water disposal device), in the large oil depot fire site, the fire water recycling can be realized on the basis of the existing fire water supply capacity, the fire water supply capacity in the emergency state is improved, the fire extinguishing effect is improved, the fire accident water discharge is reduced, and the fire accident loss and the accident treatment cost are minimized.
[0036] The oil depot fire emergency water supply and fire accident water disposal device provided by the embodiment of the utility model is integrally constituted as an annular box body. The whole structure is in a columnar shape, is divided into multiple cavity regions by the height-different partition plates of the filter ports (partition plate channels), and is respectively a feeding area, a separation area and a discharging area. The three areas are annular, are arranged from outside to inside in sequence, and the feeding area is provided with two upper end feeding ports (material recycling ports) and lower end feeding ports (bottom end feeding ports). The upper end feeding port is connected with the feeding port (material recycling port on the material recycling device) capable of floating on the surface through a light flexible pipe, and is mainly used for recycling the material floating on the surface. The lower end feeding port (bottom end feeding port) is provided with a net-shaped bottom annular floor in the feeding area and is arranged along the circumference of the feeding area, and is used for collecting the accident water in the fire pool at the bottom.
[0037] The upper end discharging port (oil outlet) is arranged at the top of the feeding cabin (tank body), the recycled material is conveyed to the waste oil tank through the pipeline and the centrifugal pump, the oil in the fire pool is collected, the lower end discharging port (bottom end feeding port) outputs water, and the water is used as fire water supplement.
[0038] The density of the flexible pipe connected with the upper end feeding port (material recycling port) is consistent with or close to the density of the fire water, so that the upper end material collector (material recycling device) can stably float and the material recycling is not affected.
[0039] The material recycling device is in the shape of a round horn, with a large opening upwardly connected with a light weight hose and a top inlet (material recycling opening).
[0040] The oil depot fire emergency water supply and fire accident water disposal device provided by the embodiment of the utility model can be composed of an oil-water separation tank (tank body), a water storage tank, an oil storage tank and related auxiliary pipes.
[0041] The top of the feeding cabin (the top of the oil-water separation tank) is spherical, facilitating the gathering of light weight flow and improving the purity of recycled materials.
[0042] The material recycling opening is equipped with an inverted conical float (material recycling device), which is combined with the recycling opening into an integral whole, has a density slightly smaller than that of fire water and greater than that of accident recycling materials.
[0043] The device can comprehensively utilize the accident water in the fire dam of the oil tank area, meet the great increase of fire water in a large fire accident site, add temporary emergency fire water supply and auxiliary fire facilities, improve the cooling and fire extinguishing effect of the storage tank, solve the problems of limited fire water supply capacity of a large oil depot, restricted fire disposal effect, a large amount of fire accident water in fire emergency state and increased disposal difficulty, and efficiently recycle materials by using the device to reduce accident loss and post-accident processing cost.
[0044] As shown in Figures 1 to 3 , further, the tank body 1 is cylindrical, and the top of the tank body 1 is spherical.
[0045] The above further technical solution has the beneficial effect of facilitating the gathering of light weight flow and improving the purity of recycled materials.
[0046] As shown in Figures 1 to 3 , further, the multiple baffles are a first baffle 7, a second baffle 8, a third baffle 9, a fourth baffle 10 and a fifth baffle 11, the fifth baffle 11 is located in the middle of the tank body 1, the fourth baffle 10 is sleeved outside the fifth baffle 11, the third baffle 9 is sleeved outside the fourth baffle 10, the second baffle 8 is sleeved outside the third baffle 9, and the first baffle 7 is sleeved outside the second baffle 8.
[0047] The above further technical solution has the beneficial effect of facilitating the installation and maintenance of multiple baffles and improving separation efficiency and separation effect.
[0048] As shown in Figures 1 to 3As shown, further, the top of the first partition plate 7 is provided with a first partition plate passage 12, the bottom of the second partition plate 8 is provided with a second partition plate passage 13, the top of the third partition plate 9 is provided with a third partition plate passage 14, the bottom of the fourth partition plate 10 is provided with a fourth partition plate passage 15, and the top of the fifth partition plate 11 is provided with a fifth partition plate passage 16.
[0049] The beneficial effect of the further technical scheme is that the first partition plate is through at the upper end, and water flows downward by gravity. The second partition plate passage is arranged near the lower end, so that the sediment is settled at the bottom, and the purity of the separated water is ensured. The material of the third partition plate passes through the upper end of the partition plate, the fourth partition plate passes through the lower section, and they are arranged in sequence to realize effective separation of oil, water and sediment.
[0050] The middle part of the fifth partition plate 11 is provided with a filter screen.
[0051] As shown in the drawings, Figures 1 to 3 Further, the upper part of the second partition plate 8 is provided with a conical top, and the conical top is provided with a conical top passage 17.
[0052] The beneficial effect of the further technical scheme is that the conical top is arranged above the second partition plate, and the top end extends upward through the conduit. The light oil material is collected in the upper layer.
[0053] The conical top passage 17 can be provided with a filter screen.
[0054] As shown in the drawings, Figures 1 to 3 Further, the first partition plate 7, the second partition plate 8, the third partition plate 9, the fourth partition plate 10 and the fifth partition plate 11 are all annular structures.
[0055] The beneficial effect of the further technical scheme is that the installation and maintenance of multiple partition plates are facilitated, and the separation efficiency and effect are improved.
[0056] As shown in the drawings, Figures 1 to 3 Further, the oil outlet 4 is connected with a centrifugal pump through a pipeline, the centrifugal pump is connected with a waste oil tank or an emergency tank through a pipeline, and the fire-fighting water outlet 5 is connected with a fire-fighting device through a pipeline.
[0057] The beneficial effect of the further technical scheme is that the oil outlet delivers the recovered material to the waste oil tank or the emergency tank through the pipeline and the centrifugal pump, which is used to collect the oil in the recovered fire-fighting pool. The fire-fighting water outlet outputs water as fire-fighting water supply. The fire-fighting water outlet supplies water to the fire-fighting device through the pipeline.
[0058] As shown in the drawings, Figures 1 to 3As shown, the density of the material recovery device 2 is less than the density of the fire water, and the density of the material recovery device 2 is greater than the density of the material. The density of the pipeline between the material recovery device 2 and the material recovery port 3 is equal to the density of the fire water.
[0059] The beneficial effects of adopting the above-mentioned further technical solution are: the density of the pipeline connected to the material recovery port is the same as or close to the density of the fire water, ensuring that the material recovery device at the upper end can float stably and not affect the material recovery. The density of the material recovery device is slightly less than that of water but greater than that of the material, ensuring that the material recovery device can float on the water surface and be immersed in the oil layer of the fire water.
[0060] like Figures 1 to 3 As shown, the material recycling device 2 is further characterized by a trumpet-shaped structure. Multiple guide grooves 18 are provided on the inner wall of the material recycling device 2. A material passage 19 is provided in the middle of the material recycling device 2. A filter isolation screen is provided at the material passage 19. The material passage 19 is connected to the material recycling port 3 through a pipeline.
[0061] The beneficial effects of adopting the above-mentioned further technical solution are as follows: the material recoverer has a funnel-shaped structure, with a heavier bottom and a lighter top disc-shaped structure, ensuring stable floating in the liquid. The upper surface of the material recoverer is provided with evenly distributed radial guide grooves of a certain depth to facilitate the flow of light liquids into the recoverer. A filter screen is installed at the material inlet to prevent impurities from entering the device and affecting its use.
[0062] like Figures 1 to 3 Figures 1 to 3 As shown, a rubber sealing gasket 20 is further provided at the bottom feed inlet 6, and a lever 21 is connected to the rubber sealing gasket 20. The bottom of the lever 21 is hinged to the tank body 1, and a float 22 is provided at the top of the lever 21.
[0063] The beneficial effects of adopting the above-mentioned further technical solution are as follows: A rubber sealing gasket is installed below the bottom feed inlet, in conjunction with a lever, and a float is installed at one end of the lever. When the liquid level reaches a certain height, the bottom feed inlet opens, allowing material to enter. At this time, the lower fire water outlet is allowed to operate, supplying fire water. When the liquid level is lower than a certain level, the bottom feed inlet closes, and the fire water outlet does not operate. Only the material recovery port and oil outlet are allowed to operate, with the main operating condition being material recovery.
[0064] This device (oil depot fire emergency water supply and fire accident water treatment device) is installed inside the fire dike to separate fire accident water.
[0065] The device is cylindrical in shape with a spherical top.
[0066] The device is internally provided with multiple partitions, and the light material is gathered at the upper part and the water is gathered at the lower part by the action of gravity, so that the oil and water are separated. In order to ensure the separation effect, the first partition (the first partition) is provided with a through hole at the upper end, and the water flows downward by the action of gravity.
[0067] The second partition channel (the second partition channel) is arranged at a position close to the lower end, so that the sediment is settled at the bottom and the purity of the separated water is ensured.
[0068] A conical top is arranged above the second partition (the second partition), and the top end extends upward through a conduit. The light oil material is collected in the upper layer.
[0069] The third partition (the third partition) allows the material to pass through the upper end of the partition (the third partition), and the fourth partition (the fourth partition) allows the material to pass through the lower section. The oil material, water and sediment are effectively separated by arranging the partitions in sequence.
[0070] The spherical top is provided with an oil material outlet, and the material is recycled to a waste oil tank or an emergency tank through an external centrifugal pump.
[0071] The bottom is provided with a fire-fighting water outlet, and the fire-fighting device is supplied with water through a pipeline.
[0072] The top is provided with a material recycling port, and the material recycling port is connected with a hose having the same density as the fire-fighting water and is connected with a material recycling device.
[0073] The density of the material recycling device is slightly smaller than that of water and larger than that of the material, so that the material recycling device can float on the water surface and be immersed in the oil layer of the fire-fighting water.
[0074] The material recycling device has a horn-shaped structure, the bottom is relatively heavy, and the upper end is a disc-shaped structure with relatively light weight, so that the material recycling device can stably float in the liquid.
[0075] A rubber sealing gasket is arranged below the bottom inlet, and a lever structure is arranged at one end of the lever. When the liquid level reaches a certain height, the bottom inlet is opened to allow the material to enter. At this time, the lower end outlet (the fire-fighting water outlet) is allowed to work to supply fire-fighting water.
[0076] When the liquid level is below a certain level, the inlet is closed, and at this time, the lower end outlet (the fire-fighting water outlet) does not work, and only the upper end inlet (the material recycling port) and the outlet (the oil material outlet) are allowed to work, and the main working condition is to recycle the material.
[0077] A certain depth of uniformly distributed radial guide grooves is arranged on the upper surface of the material recycling device, so that the light liquid can flow into the material recycling device.
[0078] The material passing port is provided with a filter isolation net to avoid the inflow of sundries into the device and affect the use.
[0079] In the emergency disposal state of fire accident, the fire accident water in the fire dam is separated, the material enters the sludge tank or the recovery tank to be treated, and the water can be supplied to the temporary fire device to enhance the spraying cooling and fire extinguishing intensity and improve the fire disposal effect. The device has the advantages of simple structure, convenient operation, greatly reduced fire material recovery difficulty, improved fire extinguishing and surrounding tank spraying cooling capacity without increasing the fire water supply capacity, realized fire water recycling, reduced accident water treatment and accommodation, and high practical and economic value.
[0080] Finally, it should be pointed out that: the above embodiments are only used to illustrate the technical solutions of the utility model, and not to limit them; although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that: it can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacement for part or all of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the utility model.
Claims
1. An emergency water supply and fire accident water disposal device for an oil depot fire, characterized by, The utility model relates to a tank body, a plurality of partitions, a material recycling device, a plurality of said partitions are installed in the tank body, a plurality of said partitions are arranged in turn, a plurality of said partitions are equipped with partition channels, the top of the tank body is equipped with a material recycling port and an oil outlet, the material recycling device is connected with the material recycling port through a pipeline, the bottom of the tank body is equipped with a fire water outlet and a bottom inlet. The tank body is cylindrical, and the top of the tank body is spherical.
2. An emergency fire water supply and fire incident water disposal apparatus for an oil terminal as claimed in claim 1, characterized in that, The plurality of said partitions are a first partition, a second partition, a third partition, a fourth partition and a fifth partition, the fifth partition is located in the middle of the tank body, the fourth partition is sleeved outside the fifth partition, the third partition is sleeved outside the fourth partition, the second partition is sleeved outside the third partition, and the first partition is sleeveled outside the second partition.
3. An emergency fire water supply and fire incident water disposal apparatus for an oil terminal as defined in claim 1, characterized in that, The top of the first partition is provided with a first partition channel, the bottom of the second partition is provided with a second partition channel, the top of the third partition is provided with a third partition channel, the bottom of the fourth partition is provided with a fourth partition channel, and the top of the fifth partition is provided with a fifth partition channel.
4. A fire emergency water supply and fire incident water disposal apparatus for an oil terminal according to claim 3, characterized in that, The top of the second partition is provided with a conical top, and the conical top is provided with a conical top channel.
5. A fire emergency water supply and fire incident water disposal apparatus for an oil terminal according to claim 3, characterized in that, The first partition, the second partition, the third partition, the fourth partition and the fifth partition are all annular structures.
6. A fire emergency water supply and fire incident water disposal apparatus for an oil terminal according to claim 3, characterized in that, The oil outlet is connected with a centrifugal pump through a pipeline, the centrifugal pump is connected with a waste oil tank or an emergency tank through a pipeline, and the fire water outlet is connected with a fire fighting device through a pipeline.
7. A fire emergency water supply and fire incident water disposal apparatus for an oil terminal according to claim 1, characterized in that, The density of the material recycling device is less than the density of the fire water, and the density of the material recycling device is greater than the density of the material, the density of the pipeline between the material recycling device and the material recycling port is equal to the density of the fire water.
8. An emergency fire water supply and fire incident water disposal apparatus for an oil terminal as defined in claim 1, characterized in that, The material recycling device is a horn-shaped structure, a plurality of guide grooves are arranged on the inner wall of the material recycling device, a material passing port is arranged in the middle of the material recycling device, a filter isolation net is arranged at the material passing port, and the material passing port is connected with the material recycling port through a pipeline.
9. An emergency fire water supply and fire incident water disposal apparatus for an oil terminal as defined in claim 1, characterized in that, A rubber sealing gasket is arranged at the bottom inlet, a lever is connected with the rubber sealing gasket, the bottom of the lever is hinged to the tank body, and a float is arranged at the top of the lever.
10. A fire emergency water supply and fire incident water disposal apparatus for an oil terminal according to claim 1, characterized in that,