Movable pump station
By integrating a water level detection mechanism, an electrical control system, and a remote communication module into a mobile pumping station, real-time monitoring and remote control of water levels in low-lying and low-ceilinged environments are achieved, solving the problem of water accumulation that cannot be dealt with in a timely manner in existing technologies and ensuring normal passage in low-lying and low-ceilinged environments.
Patent Information
- Application Number
- CN202520119629.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-19
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2035-01-19
AI Technical Summary
Existing mobile pumping stations cannot monitor water levels in real time and remotely control them in low-lying or low-ceilinged environments, resulting in water accumulation that cannot be dealt with in a timely manner and affecting normal traffic.
A mobile pumping station was designed, equipped with a water level detection mechanism, an electrical control system, a remote communication module, a power source, and a drainage mechanism. Through the water level detection mechanism, electrical control system, remote communication module, power source, and drainage mechanism, real-time water level detection and remote control are achieved, and the power source drives the drainage mechanism to drain water in a timely manner.
It enables timely and rapid drainage in low-lying and low-ceilinged environments, preventing prolonged water accumulation and ensuring normal passage.
Smart Images

Figure CN223753453U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to emergency rescue equipment technical field, concretely relates to a mobile pump station. BACKGROUND
[0002] At present, drainage equipment undertakes agricultural and urban irrigation drainage, flood control and drainage tasks. However, in the case of a major flood or drought, the water level may be too high or too low, so that the large drainage vehicle cannot work normally. With the development of urban construction, the urban environment is becoming more and more complex, and some low, short, narrow environments (such as narrow streets, underground passages, underground garages, subway stations) or complex road conditions, the existing drainage equipment cannot enter normally for operation, so the small mobile pump station is born.
[0003] The existing mobile pump station does not have the functions of receiving positioning information and water level monitoring, cannot realize remote control of the opening and closing of the drainage mechanism, and cannot enter the urban lifeline monitoring system. In the case of flood, low and short environments (such as underground passages, underground garages, subway stations) are prone to water accumulation. At present, in such cases, water cannot be treated immediately, rescue cannot be carried out immediately, and water cannot be drained after a period of water accumulation, which cannot effectively treat the water and affect normal traffic. UTILITY MODEL CONTENT
[0004] Therefore, it is necessary to provide a mobile pump station to solve the technical problem that in the case of flood, low and short environments (such as underground passages, underground garages, subway stations) are prone to water accumulation, at present, in such cases, water cannot be treated immediately, rescue cannot be carried out immediately, water cannot be drained after a period of water accumulation, which cannot effectively treat the water and affect normal traffic.
[0005] To achieve the above purpose, the inventor provides a mobile pump station, comprising:
[0006] A mobile chassis for driving the mobile pump station to walk;
[0007] A bearing platform provided on the mobile chassis, the bearing platform being connected with the mobile chassis;
[0008] An electric control system provided on the bearing platform, the electric control system being used for controlling the operation of the mobile pump station;
[0009] A water level detection mechanism fixedly provided, the water level detection mechanism being used for detecting the water level height around in real time;
[0010] A drainage mechanism provided on the bearing platform, the drainage mechanism being used for performing drainage or water supply work;
[0011] a power source arranged on the bearing platform, the power source being electrically connected with the electric control system, and the power source being used for providing power for the moving chassis and the drainage mechanism;
[0012] and a remote communication module, the electric control system and a terminal platform outside being communicatively connected through the remote communication module, so as to control the electric control system to control the moving chassis and the drainage mechanism to start and stop; and the water level detection mechanism and the terminal platform outside being communicatively connected through the remote communication module, so as to transmit water level height information detected by the water level detection mechanism in real time to the terminal platform outside.
[0013] As a preferred structure of the utility model, the water level detection mechanism is fixedly arranged on a wall body, or the water level detection mechanism is fixedly arranged on the mobile pump station, and the position of the water level detection mechanism has a height difference with the ground.
[0014] As a preferred structure of the utility model, the electric control system comprises a PLC controller, a display screen, a plurality of control keys and a remote controller, the display screen, the plurality of control keys and the remote controller are electrically connected with the PLC controller respectively, and the PLC controller is communicatively connected with a terminal platform outside through the remote communication module.
[0015] As a preferred structure of the utility model, the remote communication module is arranged on the electric control system.
[0016] As a preferred structure of the utility model, the mobile pump station further comprises a positioning mechanism, the positioning mechanism is arranged on the bearing platform, the positioning mechanism is communicatively connected with a terminal platform outside through the remote communication module, and the positioning mechanism is used for detecting the position of the mobile pump station in real time.
[0017] As a preferred structure of the utility model, the mobile pump station further comprises a box cover, the box cover is arranged on the bearing platform, one side of the box cover is hinged to one side of the bearing platform, the box cover can be turned up and down around the hinge between the box cover and the bearing platform, so as to open or close the box cover.
[0018] As a preferred structure of the utility model, the mobile pump station further comprises a turning mechanism, one end of the turning mechanism is connected with the bearing platform, and the other end of the turning mechanism is connected with the inner wall of the box cover, the turning mechanism is used for driving the box cover to turn up and down, so as to open or close the box cover.
[0019] As a preferred structure of the utility model, the rear end of the bottom of the box cover is hinged to the rear end of the bearing platform through a hinge;
[0020] The turnover mechanism is a turnover oil cylinder, one end of the turnover oil cylinder is arranged on the rear end close to the bearing platform, and the other end of the turnover oil cylinder is arranged on the inner wall of the rear end of the box cover.
[0021] As a preferred structure of the utility model, the mobile pump station further comprises a plurality of damping components, the plurality of damping components are respectively arranged at intervals on the bottom of the box cover, and the damping components are connected with the box cover.
[0022] As a preferred structure of the utility model, the drainage mechanism comprises a water pump and a vacuum pump, the water pump and the vacuum pump are respectively arranged on the bearing platform, the vacuum pump is connected with the water inlet of the water pump through an air pipe, the vacuum pump is used for generating negative pressure in the water pump and pumping water into the water pump, and the water pump is used for performing drainage work or water supply work.
[0023] As a preferred structure of the utility model, the drainage mechanism further comprises a vacuum box and a liquid level sensor, the vacuum box is arranged on the air pipe between the vacuum pump and the water pump, the liquid level sensor is arranged on the vacuum box, and the liquid level sensor is used for detecting the water level in the vacuum box.
[0024] The liquid level sensor and the electric control system are electrically connected, the vacuum pump and the electric control system are electrically connected, the electric control system is further used for receiving the detection signal of the liquid level sensor and controlling the start and stop of the vacuum pump.
[0025] As a preferred structure of the utility model, the drainage mechanism further comprises a water flow sensor, the water flow sensor is arranged on the water inlet of the water pump, the water flow sensor and the electric control system are electrically connected, and the water flow sensor is used for detecting the flow and flow rate of water flow.
[0026] As a preferred structure of the utility model, the power source comprises an engine, a clutch and a hydraulic system, the engine is in transmission connection with the clutch, the clutch is in transmission connection with the water pump through a transmission shaft, and the clutch is separated and engaged through the extension and retraction control of an electric push rod; and the hydraulic system is used for providing hydraulic power to the mobile chassis.
[0027] Distinguish from prior art, the beneficial effects of the above technical scheme are: the mobile pump station of the utility model is placed in low and short environment such as underground passage, underground garage, subway station, the water level height of surrounding is detected in real time through water level detection mechanism, and the water level height information of real-time detection is transmitted to the terminal platform of outside, when the water level detection mechanism detects that there is a certain height of accumulated water in surrounding, the terminal platform of outside controls the electric control system to control the drainage mechanism and the mobile chassis to start, the mobile chassis drives the mobile pump station to walk, the drainage mechanism is used to drain accumulated water in surrounding in time and fast, long-time accumulated water is avoided, and normal travel is ensured.
[0028] The above utility model content related record is only the summary of the technical scheme of the application, in order to let the ordinary skilled person in the art can more clearly understand the technical scheme of the application, then can be implemented according to the content of the description and the drawing record, and in order to let the above purpose and other purposes, characteristics and advantages of the application can be more easily understood, the following combining the specific embodiment of the application and the drawing are explained. BRIEF DESCRIPTION OF DRAWINGS
[0029] The drawings are only used to show the principle, implementation mode, application, characteristics and effect of the specific embodiment and other related contents of the application, and cannot be considered as the limitation of the application.
[0030] In the drawings of the specification:
[0031] Figure 1 It is the structure schematic view of the mobile pump station described in the specific embodiment;
[0032] Figure 2 It is the structure schematic view of the box cover opening of the mobile pump station described in the specific embodiment;
[0033] Figure 3 It is the front view of the mobile pump station of the box cover of the specific embodiment;
[0034] Figure 4 It is the top view of the mobile pump station of the box cover of the specific embodiment;
[0035] Figure 5 It is the schematic diagram of the electric control system of the specific embodiment;
[0036] Figure 6 It is the circuit connection relation diagram of the mobile pump station of the specific embodiment.The reference signs involved in the above each drawing are explained as follows:
[0037] 100, terminal platform
[0038] 1, mobile chassis,
[0039] 2, bearing platform,
[0040] 3. box cover,
[0041] 31. turnover mechanism,
[0042] 32. shock-absorbing part,
[0043] 4. electric control system,
[0044] 41. PLC controller,
[0045] 42. display screen,
[0046] 43. control key,
[0047] 44. remote controller,
[0048] 5. water level detection mechanism,
[0049] 6. drainage mechanism,
[0050] 61. water pump,
[0051] 62. vacuum pump,
[0052] 63. vacuum box,
[0053] 64. liquid level sensor,
[0054] 65. water flow sensor,
[0055] 7. power source,
[0056] 71. engine,
[0057] 72. clutch,
[0058] 73. electric push rod,
[0059] 74. hydraulic oil tank,
[0060] 75. hydraulic pump,
[0061] 76. hydraulic valve group,
[0062] 8. remote communication module,
[0063] 9. positioning mechanism. DETAILED DESCRIPTION
[0064] In order to describe the possible application scenarios of the present application in detail, the technical principles, the specific schemes that can be implemented, the purposes and effects that can be achieved, etc., the specific embodiments listed below are described in detail in conjunction with the accompanying drawings. The embodiments described in this paper are only used to more clearly illustrate the technical solutions of the present application, and therefore only serve as examples, and cannot limit the protection scope of the present application.
[0065] The term "embodiment" is mentioned in this document means that the specific features, structures or characteristics described in connection with the embodiment can be included in at least one embodiment of the present application. The term "embodiment" appearing in various places in the specification does not necessarily refer to the same embodiment, nor does it particularly limit its independence or association with other embodiments. In principle, in this application, as long as there is no technical contradiction or conflict, the technical features mentioned in each embodiment can be combined in any way to form a corresponding implementable technical solution.
[0066] Unless otherwise defined, the meaning of technical terms used in this document is the same as that generally understood by those skilled in the art to which the present application belongs; the use of related terms in this document is only for the purpose of describing specific embodiments, and is not intended to limit the present application.
[0067] In the description of the present application, the phrase "and / or" is a description of the logical relationship between the objects, which means that there can be three relationships, for example, A and / or B, which means that there are three cases: A exists, B exists, and A and B exist at the same time. In addition, the character " / " in this document generally represents that the associated objects before and after are a "or" logical relationship.
[0068] In this application, such as "first" and "second" are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual quantity, primary and secondary or order relationship between them.
[0069] In this application, without more limitation, the "includes", "contains", "has" or other similar expressions used in the sentence are intended to cover non-exclusive inclusion, and these expressions do not exclude the presence of other elements in the process, method or product including the described elements, so that the process, method or product including a series of elements can not only include those limited elements, but also include other elements not explicitly listed, or also include the elements inherent in such process, method or product.
[0070] As the same as the understanding in the "Guidelines for Examination", in this application, "greater than", "less than", "exceed" and other expressions are understood as not including the number; "above", "below", "within" and other expressions are understood as including the number. In addition, the meaning of "multiple" in the description of the embodiments of the present application is more than two (including two), and similar expressions related to "multiple" are also understood in this way, for example, "multiple groups", "multiple times" and the like, unless otherwise explicitly limited.
[0071] In the description of the embodiments of the present application, the spatial relative expressions such as "central", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "vertical", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", and the like, indicate the orientation or positional relationship shown in the specific embodiments or the drawings, and are only used to facilitate the description of the specific embodiments of the present application or to facilitate the understanding of the reader, and do not indicate or imply that the indicated device or component must have a particular position, a particular orientation, or be constructed or operated in a particular orientation, and therefore cannot be understood as a limitation on the embodiments of the present application. In addition, it is also understood in the context that when referring to an element connected "on" or "under" another element, it can be directly connected "on" or "under" another element, or indirectly connected "on" or "under" another element through an intermediate element.
[0072] Unless otherwise explicitly specified or limited, in the description of the embodiments of the present application, the terms "mount", "connect", "connect", "fix", "set", and the like should be understood broadly. For example, the "connection" can be fixed connection, or detachable connection, or integral setting; it can be mechanical connection, or electrical connection, or communication connection; it can be direct connection, or indirect connection through an intermediate medium; it can be the internal communication of two elements or the interaction relationship between two elements. For those skilled in the art to which the present application belongs, the specific meaning of the above terms in the embodiments of the present application can be understood according to the specific circumstances.
[0073] Please refer to Figures 1 to 6 The present embodiment relates to a mobile pump station, wherein the mobile pump station in the present embodiment is mainly placed in low and short environments such as underground passages, underground garages, and subway stations. The mobile pump station comprises:
[0074] A mobile chassis 1 is used to drive the mobile pump station to walk; wherein the mobile chassis 1 is a tracked mobile chassis 1, and in other embodiments, the mobile chassis 1 can also be a wheeled mobile chassis.
[0075] A bearing platform 2 is arranged on the mobile chassis 1, and the bearing platform 2 is fixedly connected with the mobile chassis 1, that is, the bearing platform 2 and the mobile chassis 1 are fixed in a non-detachable manner, which is light in structure and light in weight, effectively utilizes the bearing platform space, and improves the space utilization rate.
[0076] An electric control system 4 is arranged on the bearing platform 2, and is used to control the operation of the mobile pump station. The electric control system 4 comprises a PLC controller, a plurality of control keys and a remote control, which are electrically connected with the PLC controller respectively.
[0077] A water level detection mechanism 5 is fixedly arranged on the wall, and is used to detect the water level in real time, so as to drain the water in the surrounding of the mobile pump station. The water level detection mechanism 5 is a water immersion sensor, or in other embodiments, the water level detection mechanism 5 is a liquid level sensor.
[0078] A drainage mechanism 6 is arranged on the bearing platform 2, and is used to perform the drainage or water supply work.
[0079] A power source 7 is arranged on the bearing platform 2, and is electrically connected with the electric control system 4. The power source 7 is used to provide power for the mobile chassis 1 and the drainage mechanism 6, so as to drive the mobile chassis 1 to walk and drive the drainage mechanism 6 to perform the drainage or water supply work.
[0080] A remote communication module 8 is arranged on the electric control system 4. The electric control system 4 and the terminal platform 100 outside are connected in communication through the remote communication module 8, so as to control the electric control system 4 to control the start and stop of the mobile chassis 1 and the drainage mechanism 6. The water level detection mechanism 5 and the terminal platform 100 outside are connected in communication through the remote communication module 8, so as to transmit the water level information detected by the water level detection mechanism 5 in real time to the terminal platform 100 outside. The remote communication module 8 can establish the communication connection between the PLC controller of the electric control system 4, the water level detection mechanism 5 and the terminal platform 100 outside, so as to realize the real-time transmission of data. The user can view the working state, the running parameter, the input and output signal and other information of the PLC controller of the electric control system 4 and the water level detection mechanism 5 in real time through the remote communication module 8. The user can remotely control and manage the PLC controller of the electric control system 4 through the terminal platform 100, including modifying the parameter setting, starting or stopping the operation of the electric control system 4, executing the specific control logic and the like. The remote communication module 8 can receive the 4G or 5G signal, so as to realize the automatic opening and closing of the drainage mechanism 6 and the mobile chassis 1 of the mobile pump station. The terminal platform 100 outside is a rescue command and control center. Specifically, the remote communication module 8 is arranged on the electric control system 4.
[0081] Specifically, in the mobile pump station in the embodiment, the mobile pump station is placed in a low and short environment such as an underground passage, an underground garage, and a subway station. The water level detection mechanism 5 detects the water level height information of the surrounding area in real time, and transmits the real-time detected water level height information to the terminal platform 100 outside. When the water level detection mechanism 5 detects that there is a certain height of accumulated water in the surrounding area, the terminal platform 100 outside controls the electric control system 4 to control the drainage mechanism 6 and the mobile chassis 1 to start. The mobile chassis 1 drives the mobile pump station to walk through the drainage mechanism 6 to timely and quickly drain the accumulated water in the surrounding area, avoid long-time water accumulation, and ensure normal travel. It should be noted that for a certain height of accumulated water, it can be set according to the actual situation, such as 30 cm or 50 cm from the ground.
[0082] Optionally, in some embodiments, as shown in Figures 1 to 6 The water level detection mechanism 5 is fixedly arranged on the wall. The water level detection mechanism 5 can be fixedly arranged on the wall in a low and short environment such as an underground passage, an underground garage, and a subway station. The position of the water level detection mechanism 5 has a height difference from the ground. The position of the water level detection mechanism 5 is 20 cm, 30 cm, or 50 cm from the ground, which can be set according to the actual situation. Alternatively, in other embodiments, the water level detection mechanism 5 is fixedly arranged on the mobile pump station. The water level detection mechanism 5 is fixedly arranged on the mobile chassis or the bearing platform or the drainage mechanism of the mobile pump station, which can be set according to the actual situation.
[0083] Optionally, in some embodiments, as shown in Figures 1 to 6 The electric control system 4 includes a PLC controller 41, a display screen 42, a plurality of control keys 43, and a remote controller 44. The display screen 42, the plurality of control keys 43, and the remote controller 44 are electrically connected with the PLC controller 41. The PLC controller 41 is in communication connection with the terminal platform outside through the remote communication module 8.
[0084] Optionally, in some embodiments, as shown in Figures 1 to 6 The mobile pump station further includes a positioning mechanism 9 arranged on the bearing platform 2. The positioning mechanism 9 is in communication connection with the terminal platform 100 outside through the remote communication module 8. The positioning mechanism 9 is used for detecting the position of the mobile pump station in real time, so as to transmit the real-time position information of the mobile pump station to the terminal platform 100. The specific position of the mobile pump station can be known in real time. The positioning mechanism 9 is a GPS tracker.
[0085] Optionally, in some embodiments, as shown in Figures 1 to 6As shown, the mobile pump station further comprises a box cover 3, which protects the parts on the bearing platform 2. The box cover 3 is arranged on the bearing platform 2, one side of the box cover 3 is hinged to one side of the bearing platform 2, and the box cover 3 can be flipped up and down around the hinge between the box cover 3 and the bearing platform 2 to open or close the box cover 3, thereby facilitating maintenance of the parts on the bearing platform 2.
[0086] Optionally, in some embodiments, as shown in Figures 1 to 6 As shown, the mobile pump station further comprises a flipping mechanism 31, one end of the flipping mechanism 31 is connected to the bearing platform 2, and the other end of the flipping mechanism 31 is connected to the inner wall of the box cover 3. The flipping mechanism 31 is used to drive the box cover 3 to flip up and down to open or close the box cover 3. The box cover 3 is flipped up by the flipping mechanism 31 to open the box cover 3, which is simple to operate and facilitates maintenance of the parts on the bearing platform 2.
[0087] Specifically, in this embodiment, as shown in Figures 1 to 6 As shown, the rear end of the bottom of the box cover 3 is hinged to the rear end of the bearing platform 2; the flipping mechanism 31 is a flipping oil cylinder, one end of the flipping oil cylinder is arranged near the rear end of the bearing platform 2, and the other end of the flipping oil cylinder is arranged on the inner wall of the rear end of the box cover 3. In this way, the box cover 3 can be flipped up and down at a larger angle to achieve a larger maintenance space. There are two flipping oil cylinders, which are arranged on the left and right sides of the rear end of the bearing platform 2 to improve the stability of flipping.
[0088] Optionally, in some embodiments, as shown in Figures 1 to 6 As shown, the mobile pump station further comprises a plurality of shock-absorbing parts 32, which are arranged at intervals on the bottom of the box cover 3. The shock-absorbing parts 32 are connected to the box cover 3, and the plurality of shock-absorbing parts 32 are in contact with the bearing platform 2. The plurality of shock-absorbing parts 32 prevent the box cover 3 from vibrating too much when it is closed, thereby playing a shock-absorbing role. The shock-absorbing parts are shock-absorbing rubber pads. It should be noted that the number of shock-absorbing parts 32 is not limited in this embodiment.
[0089] Optionally, in some embodiments, as shown in Figures 1 to 6As shown, the drainage mechanism 6 comprises a water pump 61 and a vacuum pump 62, the water pump 61 and the vacuum pump 62 are respectively arranged on the bearing platform 2, the vacuum pump 62 is connected with the water inlet of the water pump 61 through an air pipe, the vacuum pump 62 is used to generate negative pressure in the water pump 61 to pump water into the water pump 61, and the water pump 61 is used to perform drainage or water supply work. Wherein, the water inlet of the water pump 61 is sucked by the vacuum pump 62 during work, so that negative pressure is generated in the water pump 61 to pump water into the water pump 61.
[0090] Optionally, in some embodiments, as shown in Figures 1 to 6 As shown, the drainage mechanism 6 further comprises a vacuum tank 63 and a liquid level sensor 64, the vacuum tank 63 is arranged on the air pipe between the vacuum pump 62 and the water pump 61, the liquid level sensor 64 is arranged on the vacuum tank 63, and the liquid level sensor 64 is used to detect the water level in the vacuum tank 63; the liquid level sensor 64 is electrically connected with the electric control system 4, the vacuum pump 62 is electrically connected with the electric control system 4, the electric control system 4 is also used to receive the detection signal of the liquid level sensor 64 and control the start and stop of the vacuum pump 62. Specifically, during work, the water inlet of the water pump 61 is sucked by the vacuum pump 62, so that negative pressure is generated in the water pump 61 to pump water into the water pump 61, when the vacuum pump 62 is not closed in time, at this time the water flows into the vacuum tank 63 through the air pipe, the vacuum tank 63 is provided to prevent the water in the water pump 61 from flowing directly into the vacuum pump 62, which plays a protective role for the vacuum pump 62, and at the same time provides sufficient time for the operator to close the vacuum pump 62, avoiding damage to the vacuum pump 62. Further, when the liquid level sensor 64 detects the preset water level height in the vacuum tank 63 (the specific water level height is adjusted according to the actual situation of the vacuum tank 63), the liquid level sensor 64 sends an electric signal to the electric control system 4, the electric control system 4 identifies and processes the electric signal after receiving it, and then controls the vacuum pump 62 to be closed, so as to automatically close the vacuum pump 62 in time and stop working, preventing water from flowing into the vacuum pump 62 and avoiding damage to the vacuum pump 62, which plays a double protection role for the vacuum pump 62. It should be noted that the structure of the drainage mechanism 6 of the present embodiment is not limited to this, and those skilled in the art can select other suitable drainage mechanisms 6 according to the teachings of the present embodiment.
[0091] Optionally, in some embodiments, as shown in Figures 1 to 6 As shown, the drainage mechanism 6 further comprises a water flow sensor 65, the water flow sensor 65 is arranged on the water inlet of the water pump 61, the water flow sensor 65 is electrically connected with the electric control system 4, and the water flow sensor 65 is used to detect the flow and flow rate of water flow, so as to realize real-time understanding of the flow and flow rate of water flow in the water inlet of the water pump 61.
[0092] Optionally, in some embodiments, such as As shown, the power source 7 includes an engine 71, a clutch 72, and a hydraulic system. The flywheel end of the engine 71 is connected to the clutch 72 via a transmission drive. The clutch 72 is connected to the water pump 61 via a transmission shaft. The clutch 72 is engaged and disengaged by the extension and retraction of an electric push rod 73, ensuring smooth starting of the engine 71 and preventing it from stalling. The hydraulic system provides hydraulic power to the mobile chassis 1 to drive it to move. The hydraulic system includes a hydraulic oil tank 74, a hydraulic pump 75, and a hydraulic valve group 76. The hydraulic oil tank 74, the hydraulic pump 75, and the hydraulic valve group 76 form a hydraulic circuit through an oil passage.
[0093] Finally, it should be noted that although the above embodiments have been described in the text and drawings of this application, this should not limit the scope of patent protection of this application. Any technical solutions that are based on the essential concept of this application and utilize the content described in the text and drawings of this application, resulting in equivalent structural or procedural substitutions or modifications, as well as the direct or indirect application of the technical solutions of the above embodiments to other related technical fields, are all included within the scope of patent protection of this application.
Claims
1. A mobile pump station, characterized by The utility model relates to a mobile pump station, which comprises: a mobile chassis for driving the mobile pump station to walk; a bearing platform arranged on the mobile chassis and connected with the mobile chassis; an electric control system arranged on the bearing platform and used for controlling the operation of the mobile pump station; a water level detection mechanism fixedly arranged and used for detecting the water level of the surrounding area in real time; a drainage mechanism arranged on the bearing platform and used for performing water drainage or supply work; a power source arranged on the bearing platform, electrically connected with the electric control system, and used for providing power to the mobile chassis and the drainage mechanism; and a remote communication module, the electric control system and the terminal platform outside are connected in communication through the remote communication module to control the electric control system to control the start and stop of the mobile chassis and the drainage mechanism, and the water level detection mechanism and the terminal platform outside are connected in communication through the remote communication module to transmit the water level information detected by the water level detection mechanism in real time to the terminal platform outside.
2. The mobile pump station of claim 1, wherein: The water level detection mechanism is fixedly arranged on a wall or the mobile pump station, and the position of the water level detection mechanism is different in height from the ground.
3. The mobile pump station of claim 1, wherein: The electric control system comprises a PLC controller, a display screen, a plurality of control keys, and a remote controller, the display screen, the plurality of control keys, and the remote controller are electrically connected with the PLC controller, and the PLC controller and the terminal platform outside are connected in communication through the remote communication module.
4. The mobile pump station of claim 1, wherein: The remote communication module is arranged on the electric control system.
5. The mobile pump station of claim 1, wherein: The mobile pump station further comprises a positioning mechanism arranged on the bearing platform, connected in communication with the terminal platform outside through the remote communication module, and used for detecting the position of the mobile pump station in real time.
6. The mobile pump skid of claim 1, wherein: The mobile pump station further comprises a box cover arranged on the bearing platform, hinged at one side to one side of the bearing platform, and capable of being flipped up and down around the hinge between the box cover and the bearing platform to open or close the box cover.
7. The mobile pump station of claim 6, wherein: The mobile pump station further comprises a flipping mechanism, one end of which is connected with the bearing platform, and the other end of which is connected with the inner wall of the box cover, and the flipping mechanism is used for driving the box cover to flip up and down to open or close the box cover.
8. The mobile pump station of claim 7, wherein: The rear end of the bottom of the box cover is hingedly connected with the rear end of the bearing platform. The flipping mechanism is a flipping oil cylinder, one end of which is arranged close to the rear end of the bearing platform, and the other end of which is arranged on the inner wall of the rear end of the box cover.
9. Mobile pump station according to any of claims 6 to 8, characterized in that The mobile pump station further comprises a plurality of damping components, which are arranged at intervals on the bottom of the box cover and connected with the box cover.
10. The mobile pump skid of claim 1, wherein: The water drainage mechanism comprises a water pump and a vacuum pump, the water pump and the vacuum pump are arranged on the bearing platform respectively, the vacuum pump is connected with the water inlet of the water pump through an air pipe, the vacuum pump is used to generate negative pressure in the water pump and to draw water into the water pump, and the water pump is used to perform water drainage or water supply.
11. The mobile pump station of claim 10, wherein: The water drainage mechanism further comprises a vacuum tank and a liquid level sensor, the vacuum tank is arranged on the air pipe between the vacuum pump and the water pump, and the liquid level sensor is arranged on the vacuum tank and used to detect the water level in the vacuum tank. The liquid level sensor and the electric control system are electrically connected, the vacuum pump and the electric control system are electrically connected, the electric control system is further used to receive the detection signal of the liquid level sensor and to control the start and stop of the vacuum pump.
12. Mobile pump station according to claim 10 or 11, characterized in that: The water drainage mechanism further comprises a water flow sensor, the water flow sensor is arranged on the water inlet of the water pump, the water flow sensor and the electric control system are electrically connected, and the water flow sensor is used to detect the flow and speed of water flow.
13. The mobile pump station of claim 10, wherein: The power source comprises an engine, a clutch and a hydraulic system, the engine is in driving connection with the clutch, the clutch is in driving connection with the water pump through a transmission shaft, the clutch is separated and engaged through the extension and retraction of an electric push rod, and the hydraulic system is used to provide hydraulic power to the mobile chassis.