Improved high-pressure ammonium carbamate pump mechanical seal flushing water system
By designing an improved high-pressure copper pump machine sealing and flushing system, the water storage mechanism, water control mechanism and liquid level gauge are used to ensure the stable pressure of the flushing water, which solves the problem of unstable operation of high-pressure copper pumps in the production of urea in ammonia gas extraction and extends the service life of the equipment.
Patent Information
- Application Number
- CN202510173161.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-17
- Publication Date
- 2025-05-06
AI Technical Summary
In the production of ammonia gas extraction urea, the operation of the high-pressure copper argon pump is unstable, resulting in a shortening of the equipment's normal operation time, mainly due to the instability of the flushing water pressure.
An improved high-pressure copper pump machine sealing and flushing system is designed, including a water storage mechanism, a water control mechanism and a liquid level gauge. The pressurized flushing water is sent to the machine-sealed flushing point of the high-pressure copper pump through two flushing water pumps to ensure the stable pressure of the flushing water.
It effectively prevents the high-pressure copper pump from jumping off the vehicle due to unstable injection pressure, and extends the safe and stable operation cycle of the high-pressure copper pump.
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Figure CN119934069A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of urea production equipment, in particular to an improved high-pressure methylammonium pump seal flushing water system. Background Art
[0002] In the production of urea by ammonia stripping method, a high-pressure methylammonium pump is required. The high-pressure methylammonium pump is a multi-stage centrifugal pump, and the sealing form adopts low-temperature water seal, so the stability of low-temperature water pressure is required to be high.
[0003] In the ammonia stripping urea production process, the outlet of the medium-pressure flushing water pump passes through a circulating water heat exchanger and is supplied to various users after heat exchange. Due to the large number of users and poor coordination between personnel at each post, the stability of the water pressure will deteriorate, resulting in unstable operation of the high-pressure methylammonium pump, which will ultimately affect the normal operation of the equipment and shorten the service life of the equipment. Summary of the invention
[0004] The object of the present invention is to provide an improved high-pressure methylammonium pump seal flushing water system to solve the problems raised in the above-mentioned background technology.
[0005] To achieve the above object, the present invention provides the following technical solution: an improved high-pressure methylammonium pump seal flushing water system, comprising:
[0006] A water storage mechanism, the water storage mechanism comprising an inlet pipe, a water storage assembly and a three-way water outlet pipe, the inlet pipe and the three-way water outlet pipe are respectively arranged at the water inlet end and the water outlet end of the water storage assembly;
[0007] A water control mechanism, which is arranged at one end of the three-way water outlet pipe and includes a flushing water pump, a flushing main line and a flushing side line;
[0008] A heating component, the heating component is arranged inside the water storage component, and the heating component is used to heat the water storage component;
[0009] A liquid level meter, which is arranged at the top of the water storage component and is used to monitor the water level of the water storage component;
[0010] A control box is arranged outside the water storage assembly.
[0011] Preferably, the outer sleeve of the inflow pipe is provided with a water inlet control valve, the other end of the three-way water outlet pipe is through-connected with the water inlet end of the flushing water pump, the water outlet end of the flushing water pump is through-connected with one end of the flushing main line, the outer wall of the flushing main line is provided with a main line control valve, the outer wall of the flushing main line is through-connected with one end of the flushing bypass line, the other end of the flushing bypass line is through-connected with the water storage component, and the outer wall of the flushing bypass line is provided with a bypass control valve.
[0012] Preferably, the water storage component comprises:
[0013] A flushing water tank, the two sides of which are respectively connected to the inflow pipe and one end of the three-way water outlet pipe, the top of which is provided with a disturbance component for water disturbance, and the top of which is fixedly connected with a lifting lug for lifting the flushing water tank;
[0014] The tank cover is arranged on the top of the flushing water tank, the outer wall of the tank cover is provided with a connecting component for connecting with the flushing water tank, and the top of the tank cover is provided with a power generation component for generating electricity.
[0015] Preferably, the connection assembly comprises:
[0016] A plug-in box, one side of which is fixedly connected to the outer wall of the flushing water tank, a slot is provided at the top of the plug-in box, and a locking hole is provided on the inner wall of the slot;
[0017] A fixing block, one end of which is fixedly connected to the outer wall of the tank cover;
[0018] An insert block, the top of which is fixedly connected to the bottom of the fixed block, the insert block is inserted and connected to the slot, a cavity is provided inside the insert block, and an insertion hole is provided on the inner wall of the cavity;
[0019] Preferably, the connection assembly further comprises:
[0020] A card block, the card block is inserted into the inside of the jack;
[0021] A baffle, one side of which is fixedly connected to one end of the clamping block;
[0022] The elastic block is arranged on a side of the baffle away from the clamping block.
[0023] Preferably, the heating component comprises:
[0024] A heating pipe, wherein the heating pipe is arranged inside the flushing water tank;
[0025] A heating controller is arranged on the outer wall of the flushing water tank, the input end of the heating tube is electrically connected to the output end of the heating controller, and the input end of the heating controller is electrically connected to the output end of the control box.
[0026] Preferably, the disturbance component comprises:
[0027] A hydraulic press, wherein the input end of the hydraulic press is electrically connected to the output end of the control box, a first circular hole is provided at the top of the tank cover, and the output end of the hydraulic press is interlaced and connected with the first circular hole;
[0028] A disturbance plate, the top end of which is fixedly connected to the output end of the hydraulic press;
[0029] Preferably, the disturbance component further comprises:
[0030] A first mounting frame, wherein a second circular hole is formed at the top of the first mounting frame, the output end of the hydraulic press is interlaced and connected with the second circular hole, and the bottom end of the first mounting frame is fixedly connected with the top end of the tank cover;
[0031] A sealing gasket is sleeved on the outer wall of the output end of the hydraulic press and is arranged between the tank cover and the first mounting frame.
[0032] Preferably, the power generation component comprises:
[0033] A power generation device, wherein the output end of the power generation device is electrically connected to the input end of the control box, an insertion hole is provided on the outer wall of the flushing water tank, and the power end of the power generation device is inserted and connected to the insertion hole;
[0034] Preferably, the power generation component further comprises:
[0035] A second mounting frame, wherein the top end of the second mounting frame is fixedly connected to the bottom end of the power generation equipment, and one end of the second mounting frame is fixedly connected to the outer wall of the flushing water tank;
[0036] A sealing ring is sleeved on the outer wall of the power end of the power generating equipment, and the outer wall of the sealing ring is fixedly connected to the inner wall of the insertion hole.
[0037] Technical effects and advantages of the present invention:
[0038] The present invention utilizes the design of a water storage mechanism, a water control mechanism and a liquid level meter, and adopts two flushing water pumps to pressurize the water in the flushing water tank through the flushing main line and send it to various mechanical seal flushing points of the high-pressure ammonium methylammonium pump, so as to provide separate water for flushing the mechanical seal of the high-pressure ammonium methylammonium pump, thereby preventing the high-pressure ammonium methylammonium pump from jumping due to unstable flushing water pressure, thereby extending the safe and stable operation period of the high-pressure ammonium methylammonium pump. BRIEF DESCRIPTION OF THE DRAWINGS
[0039] Figure 1 It is a schematic diagram of the connection principle of the present invention.
[0040] Figure 2 It is a schematic diagram of the three-dimensional structure of the water storage component of the present invention.
[0041] Figure 3 For the present invention Figure 2 A is a schematic diagram of the enlarged structure.
[0042] Figure 4 It is a schematic diagram of the cross-sectional structure of the connection component of the present invention.
[0043] Figure 5 It is a schematic diagram of the cross-sectional structure of the water storage component of the present invention.
[0044] Figure 6 It is a schematic diagram of the three-dimensional structure of the flushing water tank of the present invention.
[0045] Figure 7 It is a schematic diagram of the three-dimensional structure of the power generation component of the present invention.
[0046] Figure 8 It is a schematic diagram of the three-dimensional structure of the can cover of the present invention.
[0047] In the figure: 1, inflow pipe; 2, water storage component; 201, flushing water tank; 202, tank cover; 3, three-way water outlet pipe; 4, flushing water pump; 5, flushing main line; 6, main line control valve; 7, flushing bypass line; 8, bypass control valve; 9, liquid level gauge; 10, disturbance component; 1001, hydraulic press; 1002, disturbance plate; 1003, first mounting frame; 1004, sealing pad; 11, heating component; 1101, heating pipe; 1102, heating controller; 12, power generation assembly; 1201, power generation equipment; 1202, second mounting frame; 1203, sealing ring; 13, water inlet control valve; 14, connecting assembly; 1401, plug-in block; 1402, clamping block; 1403, baffle; 1404, elastic block; 1405, plug-in box; 1406, fixing block; 15, control box; 16, lifting ear. DETAILED DESCRIPTION
[0048] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0049] In the first embodiment, the present invention provides Figure 1-8 An improved high-pressure methylammonium pump seal flushing water system is shown, comprising:
[0050] The water storage mechanism comprises an inflow pipe 1, a water storage component 2 and a three-way water outlet pipe 3, wherein the inflow pipe 1 and the three-way water outlet pipe 3 are respectively arranged at the water inlet end and the water outlet end of the water storage component 2;
[0051] A water control mechanism is arranged at one end of the three-way water outlet pipe 3, and comprises a flushing water pump 4, a flushing main line 5 and a flushing side line 7;
[0052] A heating component 11, which is disposed inside the water storage component 2 and is used to heat the water storage component 2;
[0053] A liquid level meter 9, which is arranged at the top of the water storage component 2 and is used to monitor the water level of the water storage component 2;
[0054] The control box 15 is arranged outside the water storage component 2.
[0055] The outer sleeve of the inflow pipe 1 is provided with an inlet control valve 13, the other end of the three-way outlet pipe 3 is connected with the water inlet end of the flushing water pump 4, the water outlet end of the flushing water pump 4 is connected with one end of the flushing main line 5, the outer wall of the flushing main line 5 is provided with a main line control valve 6, the outer wall of the flushing main line 5 is connected with one end of the flushing bypass line 7, the other end of the flushing bypass line 7 is connected with the water storage component 2, and the outer wall of the flushing bypass line 7 is provided with a bypass control valve 8.
[0056] The water storage component 2 comprises:
[0057] The flushing water tank 201, the two sides of the flushing water tank 201 are respectively connected with the inflow pipe 1 and one end of the three-way water outlet pipe 3, the top of the flushing water tank 201 is provided with a disturbance component 10 for water disturbance, and the top of the flushing water tank 201 is fixedly connected with a lifting lug 16 for lifting the flushing water tank 201;
[0058] The tank cover 202 is arranged on the top of the flushing water tank 201, and the outer wall of the tank cover 202 is provided with a connecting component 14 for connecting with the flushing water tank 201, and the top of the tank cover 202 is provided with a power generation component 12 for generating electricity.
[0059] Furthermore, the liquid level gauge 9 is an existing BPK104 / 105-31 intelligent digital display liquid level controller. The liquid level gauge 9 is installed on the top of the tank cover 202 by bolts. A circular groove is provided on the top of the tank cover 202 for extending the detection end of the liquid level gauge 9 through the circular groove to the inside of the flushing water tank 201. The water inlet control valve 13 is used to control the flow of the inflow pipe 1, the main control valve 6 is used to control the flow of the flushing main line 5, and the bypass control valve 8 is used to control the flow of the flushing bypass line 7. Two flushing water pumps 4 are provided, each of which is connected to a flushing main line 5. The three-way water outlet pipe 3 is used to connect the flushing water tank 201 and the two flushing water pumps 4. The inlet pipe 1 is connected with the flushing water tank 201, so that the flushing liquid flows into the flushing water tank 201 through the inlet pipe 1 to store the flushing liquid, and then flows out through the three-way water outlet pipe 3 to flow to the two flushing water pumps 4 respectively, and is pressurized by the flushing water pump 4, and then transmitted to the high-pressure methylamine pump by the flushing main line 5. The pressure of the flushing water is kept stable to avoid the high-pressure methylammonium pump from jumping, thereby extending the safe and stable operation cycle of the high-pressure methylammonium pump. When the flushing main line 5 is not needed for supply, the main control valve 6 is closed, the bypass control valve 8 is opened, and the flushing bypass line 7 connected to the outer wall of the flushing main line 5 is refluxed to the flushing water tank 201. The bottom end of the lifting ear 16 is welded and fixed to the top of the tank cover 202. When the tank cover 202 is moved, the lifting ear 16 is hooked by the crane hook to pull the tank cover 202 away from the flushing water tank 201 to lift the tank cover 202. A battery pack, a converter, a PLC programming controller and a power switch are arranged inside the control box 15. The PLC programming controller is electrically connected to the power switch. The converter, the battery pack, the PLC programming controller and the power switch are electrically connected in this way. The opening and closing of the power switch is controlled by the PLC programming controller, thereby controlling the output of the power supply of the battery pack.
[0060] The connection assembly 14 comprises:
[0061] A plug-in box 1405, one side of which is fixedly connected to the outer wall of the flushing water tank 201, a slot is provided at the top of the plug-in box 1405, and a locking hole is provided on the inner wall of the slot;
[0062] A fixing block 1406, one end of which is fixedly connected to the outer wall of the tank cover 202;
[0063] Insert block 1401, the top of the insert block 1401 is fixedly connected to the bottom of the fixed block 1406, the insert block 1401 is inserted and connected with the slot, a cavity is formed inside the insert block 1401, and a plug hole is formed on the inner wall of the cavity;
[0064] A card block 1402, the card block 1402 is inserted into the inside of the jack;
[0065] A baffle 1403, one side of which is fixedly connected to one end of the clamping block 1402;
[0066] The elastic block 1404 is arranged on a side of the baffle 1403 away from the clamping block 1402 .
[0067] Furthermore, at least three groups of connecting components 14 are provided, and the three groups are arranged around with equal intervals. The contact part of the plug-in box 1405 and the flushing water tank 201 is welded and fixed, the contact part of the fixing block 1406 and the tank cover 202 is welded and fixed, the contact part of the fixing block 1406 and the plug-in block 1401 is welded and fixed, the size of the slot is 1.2 times the size of the plug-in block 1401, the locking hole and the plug hole are the same size, both are 1.1 times the size of the card block 1402, the contact part of the card block 1402 and the baffle 1403 is welded and fixed, and the two ends of the elastic block 1404 are fixedly connected to the baffle 1403 and the inner wall of the cavity by gluing, respectively. The baffle 1403 and the elastic block 1404 are both arranged in the cavity, and the elastic block 1404 is always in a compressed state in the cavity. When it is necessary to separate the tank cover 202 from the flushing water tank 201, it is necessary to move closer to the flushing water tank. The card block 1402 is pressed in the direction of the tank 201 to move the card block 1402 into the slot, and then the tank cover 202 is moved away from the flushing water tank 201, so that the tank cover 202 drives the fixed block 1406, the fixed block 1406 drives the plug block 1401, and the plug block 1401 drives the card block 1402 to move out of the slot, completing the separation between the tank cover 202 and the flushing water tank 201. When the tank cover 202 needs to be installed, the plug block 1401 is partially inserted into the slot, and then the card block 1402 is pressed, so that the plug block 1401 can be completely inserted into the slot. When the card block 1402 moves to the locking hole position, under the action of the restoring force of the elastic block 1404, the baffle 1403 is pushed, and the baffle 1403 pushes the card block 1402, so that the card block 1402 is inserted into the locking hole, thereby limiting the movement of the plug block 1401, and completing the installation operation of the tank cover 202 and the flushing water tank 201.
[0068] In a second embodiment, the present invention provides Figure 1-8 An improved high-pressure methylammonium pump seal flushing water system is shown, comprising:
[0069] The water storage mechanism comprises an inflow pipe 1, a water storage component 2 and a three-way water outlet pipe 3, wherein the inflow pipe 1 and the three-way water outlet pipe 3 are respectively arranged at the water inlet end and the water outlet end of the water storage component 2;
[0070] A water control mechanism is arranged at one end of the three-way water outlet pipe 3, and comprises a flushing water pump 4, a flushing main line 5 and a flushing side line 7;
[0071] A heating component 11, which is disposed inside the water storage component 2 and is used to heat the water storage component 2;
[0072] A liquid level meter 9, which is arranged at the top of the water storage component 2 and is used to monitor the water level of the water storage component 2;
[0073] The control box 15 is arranged outside the water storage component 2.
[0074] The water storage component 2 comprises:
[0075] The flushing water tank 201, the two sides of the flushing water tank 201 are respectively connected with the inflow pipe 1 and one end of the three-way water outlet pipe 3, the top of the flushing water tank 201 is provided with a disturbance component 10 for water disturbance, and the top of the flushing water tank 201 is fixedly connected with a lifting lug 16 for lifting the flushing water tank 201;
[0076] The tank cover 202 is arranged on the top of the flushing water tank 201, and the outer wall of the tank cover 202 is provided with a connecting component 14 for connecting with the flushing water tank 201, and the top of the tank cover 202 is provided with a power generation component 12 for generating electricity.
[0077] The heating component 11 includes:
[0078] A heating pipe 1101, the heating pipe 1101 is arranged inside the flushing water tank 201;
[0079] The heating controller 1102 is arranged on the outer wall of the flushing water tank 201 , the input end of the heating tube 1101 is electrically connected to the output end of the heating controller 1102 , and the input end of the heating controller 1102 is electrically connected to the output end of the control box 15 .
[0080] Furthermore, the working principle of the heating component 11 is the same as that of the existing electric heating tube. The heating tube 1101 is in the shape of a spiral coil. The heating tube 1101 is fixedly connected to the inside of the flushing water tank 201 through a mounting buckle. The heating controller 1102 extends out of the outer wall of the flushing water tank 201. The heating controller 1102 and the flushing water tank 201 are sealed with sealant to prevent water leakage. The heating controller 1102 is electrically connected to the power switch output end of the control box 15 through an electric wire, so that the PLC controller of the control box 15 starts and stops the heating controller 1102.
[0081] The disturbance component 10 comprises:
[0082] The hydraulic press 1001, the input end of the hydraulic press 1001 is electrically connected to the output end of the control box 15, the top of the tank cover 202 is provided with a first circular hole, and the output end of the hydraulic press 1001 is interlaced and connected with the first circular hole;
[0083] A disturbance plate 1002, the top of which is fixedly connected to the output end of the hydraulic press 1001;
[0084] A first mounting frame 1003, a second circular hole is formed at the top of the first mounting frame 1003, the output end of the hydraulic press 1001 is interlaced and connected with the second circular hole, and the bottom end of the first mounting frame 1003 is fixedly connected with the top end of the tank cover 202;
[0085] The sealing gasket 1004 is sleeved on the outer wall of the output end of the hydraulic press 1001 , and the sealing gasket 1004 is arranged between the tank cover 202 and the first mounting frame 1003 .
[0086] Furthermore, the hydraulic press 1001 is an existing electrically controlled hydraulic telescopic rod, the input end of the heating tube 1101 is electrically connected to the output end of the PLC controller of the control box 15 through an electric wire, the bottom end of the output end of the hydraulic press 1001 is fixedly connected to the top of the disturbance plate 1002 by bolts, the output end of the hydraulic press 1001 is arranged at the center of the top of the disturbance plate 1002, the bottom end of the hydraulic press 1001 is fixedly connected to the top of the first mounting frame 1003 by bolts, the vertical section of the first mounting frame 1003 is gate-shaped, the bottom end of the first mounting frame 1003 is fixedly connected to the top of the tank cover 202 by bolts, and the sealing gasket 1004 is used to seal the first circular hole to prevent water leakage.
[0087] The power generation assembly 12 includes:
[0088] The power generating device 1201, the output end of the power generating device 1201 is electrically connected to the input end of the control box 15, the outer wall of the water injection tank 201 is provided with an insertion hole, and the power end of the power generating device 1201 is inserted and connected with the insertion hole;
[0089] A second mounting frame 1202, the top of which is fixedly connected to the bottom of the power generation device 1201, and one end of which is fixedly connected to the outer wall of the flushing water tank 201;
[0090] The sealing ring 1203 is sleeved on the outer wall of the power end of the power generating device 1201, and the outer wall of the sealing ring 1203 is fixedly connected to the inner wall of the through hole.
[0091] Furthermore, the working principle of the power generation equipment 1201 is the same as that of the existing disc-type wave power generation device. Through the ups and downs of the water surface, the disc of the power generation equipment 1201 floating on the water surface is hit, and it will swing up and down with the waves, driving the arm of the power generation equipment 1201 to move up and down, and the water pump forms high pressure to provide power to the small turbine. The small turbine rotates and is converted into a continuous supply of electric power resources, which is finally transmitted to the converter of the control box 15. The converter converts the current into current that can be used for battery storage, and then transmits it from the converter to the battery pack for storage. The power generation equipment 1201 is fixedly connected to the second mounting frame 1202 by bolts, and the second mounting frame 1202 is welded and fixed to the outer wall of the flushing water tank 201. The sealing ring 1203 is made of rubber material, and the sealing ring 1203 is bonded and fixed to the inner wall of the through hole. The sealing ring 1203 swings and squeezes when the power end of the power generation equipment 1201 swings. The sealing ring 1203 is used to seal between the power end of the power generation equipment 1201 and the through hole.
[0092] The arrangement of the disturbance component 10, the control box 15, the power generation component 12 and the heating component 11 is designed to prevent the freezing of the liquid inside the flushing water tank 201 under low temperature conditions. When the temperature is close to the freezing temperature of the liquid inside the flushing water tank 201, the staff starts the hydraulic press 1001 and the heating controller 1102 by operating the PLC controller inside the control box 15, so that the output end of the hydraulic press 1001 drives the disturbance plate 1002 to move up and down, disturbing the water surface inside the flushing water tank 201 to produce fluctuations, and the moving liquid will prevent freezing. At the same time, the fluctuation of the liquid surface will cause the power end of the power generation equipment 1201 to swing up and down, thereby generating electricity and transmitting it to the battery pack of the control box 15 for storage. The control box 15 then transmits the power of the battery pack to the heating controller 1102, so that the heating pipe 1101 works and generates heat, further preventing the freezing of the liquid inside the flushing water tank 201, thereby ensuring that the liquid inside the flushing water tank 201 can continue to flow, and ensuring the continuous supply of flushing water to the high-pressure methylammonium pump.
[0093] Finally, it should be noted that the above is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, it is still possible for those skilled in the art to modify the technical solutions described in the aforementioned embodiments or to make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the protection scope of the present invention.
Claims
1. An improved high-pressure methylammonium pump seal flushing water system, characterized in that: include: A water storage mechanism, the water storage mechanism comprising an inlet pipe (1), a water storage component (2) and a three-way water outlet pipe (3), the inlet pipe (1) and the three-way water outlet pipe (3) being respectively arranged at the water inlet end and the water outlet end of the water storage component (2); A water control mechanism, the water control mechanism being arranged at one end of the three-way water outlet pipe (3), the water control mechanism comprising a flushing water pump (4), a flushing main pipeline (5) and a flushing side pipeline (7); A heating component (11), the heating component (11) being arranged inside the water storage component (2), and the heating component (11) being used to heat the water storage component (2); A liquid level meter (9), the liquid level meter (9) being arranged at the top of the water storage component (2), and the liquid level meter (9) being used for monitoring the water level of the water storage component (2); A control box (15), wherein the control box (15) is arranged outside the water storage component (2).
2. The improved high-pressure methylammonium pump seal flushing water system according to claim 1 is characterized in that: The outer sleeve of the inflow pipe (1) is provided with a water inlet control valve (13); the other end of the three-way water outlet pipe (3) is connected to the water inlet end of the flushing water pump (4); the water outlet end of the flushing water pump (4) is connected to one end of the flushing main line (5); the outer wall of the flushing main line (5) is provided with a main line control valve (6); the outer wall of the flushing main line (5) is connected to one end of the flushing bypass line (7); the other end of the flushing bypass line (7) is connected to the water storage component (2); and the outer wall of the flushing bypass line (7) is provided with a bypass control valve (8).
3. The improved high-pressure methylammonium pump seal flushing water system according to claim 1 is characterized in that: The water storage component (2) comprises: A flushing water tank (201), wherein two sides of the flushing water tank (201) are respectively connected to the inflow pipe (1) and one end of the three-way water outlet pipe (3), a disturbance component (10) for disturbing the water body is provided at the top of the flushing water tank (201), and a lifting lug (16) for lifting the flushing water tank (201) is fixedly connected to the top of the flushing water tank (201); A tank cover (202) is arranged at the top of a flushing water tank (201), an outer wall of the tank cover (202) is provided with a connecting assembly (14) for connecting to the flushing water tank (201), and a top of the tank cover (202) is provided with a power generation assembly (12) for generating electricity.
4. The improved high-pressure methylammonium pump seal flushing water system according to claim 3 is characterized in that: The connection assembly (14) comprises: A plug-in box (1405), one side of which is fixedly connected to the outer wall of the flushing water tank (201), a slot is provided at the top of the plug-in box (1405), and a locking hole is provided on the inner wall of the slot; A fixing block (1406), one end of which is fixedly connected to the outer wall of the tank cover (202); An insert block (1401), the top end of the insert block (1401) is fixedly connected to the bottom end of the fixed block (1406), the insert block (1401) is inserted and connected to the slot, a cavity is provided inside the insert block (1401), and a plug hole is provided on the inner wall of the cavity.
5. The improved high-pressure methylammonium pump seal flushing water system according to claim 4 is characterized in that: The connection assembly (14) further comprises: A card block (1402), the card block (1402) is inserted into the interior of the jack; A baffle (1403), one side of the baffle (1403) being fixedly connected to one end of the clamping block (1402); An elastic block (1404), wherein the elastic block (1404) is arranged on a side of the baffle (1403) away from the clamping block (1402).
6. The improved high-pressure methylammonium pump seal flushing water system according to claim 3 is characterized in that: The heating component (11) comprises: A heating pipe (1101), wherein the heating pipe (1101) is arranged inside the flushing water tank (201); A heating controller (1102), the heating controller (1102) being arranged on the outer wall of the flushing water tank (201), the input end of the heating tube (1101) being electrically connected to the output end of the heating controller (1102), and the input end of the heating controller (1102) being electrically connected to the output end of the control box (15).
7. The improved high-pressure methylammonium pump seal flushing water system according to claim 3 is characterized in that: The disturbance component (10) comprises: A hydraulic press (1001), wherein the input end of the hydraulic press (1001) is electrically connected to the output end of the control box (15), a first circular hole is provided at the top of the tank cover (202), and the output end of the hydraulic press (1001) is interlacedly connected to the first circular hole; A disturbance plate (1002), wherein the top end of the disturbance plate (1002) is fixedly connected to the output end of the hydraulic press (1001).
8. The improved high-pressure methylammonium pump seal flushing water system according to claim 7 is characterized in that: The disturbance component (10) further comprises: A first mounting frame (1003), wherein a second circular hole is formed at the top of the first mounting frame (1003), the output end of the hydraulic press (1001) is interlacedly connected with the second circular hole, and the bottom end of the first mounting frame (1003) is fixedly connected with the top end of the tank cover (202); A sealing gasket (1004) is sleeved on the outer wall of the output end of the hydraulic press (1001), and the sealing gasket (1004) is arranged between the tank cover (202) and the first mounting frame (1003).
9. The improved high-pressure methylammonium pump seal flushing water system according to claim 3 is characterized in that: The power generation component (12) comprises: A power generation device (1201), wherein the output end of the power generation device (1201) is electrically connected to the input end of the control box (15), an insertion hole is provided on the outer wall of the flushing water tank (201), and the power end of the power generation device (1201) is insertedly connected to the insertion hole.
10. The improved high-pressure methylammonium pump seal flushing water system according to claim 3 is characterized in that: The power generation component (12) further comprises: A second mounting frame (1202), wherein the top end of the second mounting frame (1202) is fixedly connected to the bottom end of the power generation equipment (1201), and one end of the second mounting frame (1202) is fixedly connected to the outer wall of the flushing water tank (201); A sealing ring (1203) is sleeved on the outer wall of the power end of the power generating equipment (1201), and the outer wall of the sealing ring (1203) is fixedly connected to the inner wall of the insertion hole.