Small wind power generation tower convenient for fire emergency
By designing an automatic opening regulating valve mechanism and a fine atomizing spray nozzle on a small wind turbine, the health impacts of smoke and harmful gases and the complex equipment connection problems in fire emergency operations are solved, achieving rapid response and efficient rescue.
Patent Information
- Application Number
- CN202510999961.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Priority Date
- 2024-03-05
- Filing Date
- 2024-12-30
- Publication Date
- 2025-10-17
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
When a fire occurs in a small wind turbine tower, smoke and harmful gases produced during fire emergency operations have an adverse effect on the health of users, and the equipment connection is complicated and time-consuming, affecting rescue efficiency.
A small wind turbine generator tower is designed to facilitate fire emergency response, including a tower tube and a tower emergency box. It is equipped with an automatic opening regulating valve mechanism, a rotary control valve, a fine atomizing spray nozzle and an anti-winding mechanism to realize automatic water filling and fine atomizing spraying of the water gun, simplifying the equipment connection process.
In the event of a fire emergency, the automatic opening of the regulating valve mechanism and the fine atomizing spray nozzle greatly reduces the impact on the health of users, simplifies equipment connection, improves rescue efficiency and reduces losses.
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Figure CN120798677A_ABST
Abstract
Description
[0001] The present patent application is a divisional application, the original application number is 202411966880.8, the application date is December 30, 2024, and the invention name is a wind power generation tower convenient for fire fighting emergency. TECHNICAL FIELD
[0002] The present application relates to the field of wind power generation, in particular to a small wind power generation tower convenient for fire fighting emergency.
[0003] TECHNICAL PROBLEM
[0004] The small wind power generation tower is a power generation facility with small-scale wind energy utilization as the core, usually with a single machine rated power below 10 kilowatts. Compared with large wind power towers, it has lower tower height and smaller blade size, which can better adapt to low wind speed or limited space scenarios. The wind power tower is a device used to collect energy from wind and convert it into electrical energy, usually composed of a wind wheel, a generator, a tower, and a control system. Among them, the wind wheel and the generator are the core components of the wind power tower, responsible for converting wind energy into electrical energy. Although the operation of the wind power tower itself does not cause fire, in extreme cases (such as lightning strikes), equipment or electrical lines may malfunction, leading to a fire. During the fire fighting emergency operation of the wind power tower, a large amount of smoke and harmful gases are often produced in the environment, which adversely affects the health of the user. Therefore, the device can be further improved. SUMMARY
[0005] The technical solution of the present application to solve the above technical problems is as follows: a small wind power generation tower convenient for fire fighting emergency, comprising: a tower cylinder and an electric tower emergency box installed on the tower cylinder, a first regulating valve is arranged in the electric tower emergency box, a coupling element is sleeved on the first regulating valve, an emergency conduit bag is inserted in the coupling element, and a water gun is connected to the emergency conduit bag.
[0006] A rotating fixing ring is rotatably connected in the water gun, a fine atomizing spray head is fixedly arranged in the rotating fixing ring, a rotating blade is fixedly connected to the rotating fixing ring, and a rotating connecting rod is rotatably connected in the rotating blade. An expanded water outlet plate is rotatably connected to the rotating connecting rod, two adjacent expanded water outlet plates are slidably connected, the expanded water outlet plate is fixedly arranged in the water gun, a rotating sleeve is fixedly arranged on the expanded water outlet plate, and the rotating sleeve is rotatably connected to the outer wall of the water gun.
[0007] Preferably, the outer wall of the emergency conduit bag is sleeved with a matched shell cover, the matched shell cover is slidably connected with a symmetrical clamping plate, the symmetrical clamping plate is inserted with a clamping adjusting rod, the clamping adjusting rod is slidably connected in the matched shell cover, one end of the clamping adjusting rod is fixedly connected with a first spring, the first spring is fixedly connected in the matched shell cover, a movable pressing rod is inserted in the matched shell cover, the movable pressing rod is arranged at the end of the clamping adjusting rod away from the first spring, a second spring is fixedly connected in the matched shell cover, and the second spring is fixedly connected to the outer wall of the symmetrical clamping plate. BRIEF DESCRIPTION OF DRAWINGS
[0008] In order to more clearly illustrate the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or prior art description. Obviously, the drawings described below are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor under the premise of the drawings.
[0009] Figure 1 It is a schematic diagram of the overall structure of the present application.
[0010] Figure 2 It is a sectional view of the air-tight barrier door structure of the present application.
[0011] Figure 3 It is an enlarged view of the A part structure of the present application. Figure 2
[0012] Figure 4 It is an enlarged view of the B part structure of the present application. Figure 2
[0013] Figure 5 It is a sectional view of the emergency box structure of the electric tower of the present application.
[0014] Figure 6 It is an enlarged view of the C part structure of the present application. Figure 5
[0015] Figure 7 It is an enlarged view of the D part structure of the present application. Figure 5
[0016] In the figure: 1, emergency box of electric tower; 2, air-tight barrier door; 3, tower cylinder; 4, first regulating valve; 5, one-way transmission gear; 6, coupling; 7, emergency conduit bag; 8, mutually matched housing cover; 9, symmetrical clamping plate; 10, clamping adjusting rod; 11, first spring; 12, movable pressing rod; 13, second spring; 14, water gun; 15, rotary control valve; 16, fixed mounting rod; 17, vertical toothed strip rod; 18, sliding adjusting rod; 19, third spring; 20, direction guiding rod; 21, position limiting block; 22, inclined guiding groove; 23, fourth spring; 24, opening and closing trigger rod; 25, rotary fixing ring; 26, fine atomizing spray nozzle; 27, rotary vane; 28, rotary connecting rod; 29, unfolding water outlet plate; 30, rotary sleeve; 31, transverse toothed strip rod; 32, gear transmission assembly; 33, reciprocating linear motion screw; 34, lifting collar; 35, support mounting rack; 36, fire extinguisher. DETAILED DESCRIPTION
[0017] The principles and features of the present application are described below in conjunction with the accompanying drawings, and the examples are only used to explain the present application and not to limit the scope of the present application.
[0018] Please refer to Figures 1-7 As shown in the figure, the small wind power generation tower convenient for fire fighting emergency provided by the embodiment comprises:
[0019] The tower cylinder 3 and the emergency box of electric tower 1 installed on the tower cylinder 3, one side of the tower cylinder 3 in the emergency box of electric tower 1 is provided with a first regulating valve 4, the first regulating valve 4 is connected with an emergency conduit bag 7 through a coupling 6, one side of the first regulating valve 4 is also provided with a one-way transmission gear 5 for controlling the opening and closing of the first regulating valve 4, the other end of the emergency conduit bag 7 is provided with a water gun 14, and the emergency box of electric tower 1 is also provided with an automatic opening regulating valve mechanism;
[0020] Preferably, when the water gun 14 is taken out, the automatic opening regulating valve mechanism can automatically rotate the one-way transmission gear 5, thereby opening the first regulating valve 4, and making the emergency conduit bag 7 filled with water.
[0021] Specifically, the inside of the tower cylinder 3 is provided with a water outlet pipeline, when the first regulating valve 4 is opened, the water outlet pipeline can discharge water into the emergency conduit bag 7, and when the first regulating valve 4 is closed, the water outlet pipeline stops discharging water.
[0022] More specifically, the outer wall of the water outlet pipeline is fixedly installed with the first regulating valve 4, the outer wall of the first regulating valve 4 is fixedly installed with the one-way transmission gear 5, the outer wall of the first regulating valve 4 is sleeved with the coupling joint 6, through the setting of the coupling joint 6, the first regulating valve 4 and the emergency conduit bag 7 are connected, and the user does not need to reconnect and install every time, the inside of the coupling joint 6 is inserted with the emergency conduit bag 7, and the outer wall of the emergency conduit bag 7 is rotationally connected with the water gun 14.
[0023] Further, the front of the electric tower emergency box 1 is provided with an airtight grille door 2.
[0024] Specifically, the front of the electric tower emergency box 1 is slidingly connected with the airtight grille door 2, and through the setting of the airtight grille door 2, the airtight grille door 2 can seal the electric tower emergency box 1, so that insects cannot enter the inside of the electric tower emergency box 1 to damage the emergency conduit bag 7.
[0025] Further, the bottom of the water gun 14 is provided with a rotary control valve 15, and the side surface of the water gun 14 communicates with the emergency conduit bag 7.
[0026] Specifically, the bottom of the water gun 14 is provided with the rotary control valve 15, and through the setting of the rotary control valve 15, the user can rotate the rotary control valve 15 at the bottom of the water gun 14 to control the water amount entering the water gun 14 from the emergency conduit bag 7, and then adjust the water spraying size of the water gun 14.
[0027] It should be noted that the automatic opening regulating valve mechanism is not limited in the embodiment, as long as the automatic opening regulating valve mechanism can automatically rotate the one-way transmission gear 5 to open the first regulating valve 4 to fill the emergency conduit bag 7 when the water gun 14 is taken out, no matter what structure and connection mode is adopted. It should be within the protection scope of the application. Of course, an automatic opening regulating valve mechanism can be specifically designed, which will be described in detail as follows:
[0028] Please further refer to Figure 2 、 5 , 6, the automatic opening regulating valve mechanism comprises a fixed mounting rod 16 and an opening and closing trigger rod 24, and the fixed mounting rod 16 is arranged on the inner wall of the electric tower emergency box 1.
[0029] The side of the fixed mounting rod 16 is located in the groove of the inner wall of the emergency box 1 of the tower, and an opening and closing trigger rod 24 is arranged in the groove. The upper end of the opening and closing trigger rod 24 abuts against the rotary control valve 15 of the water gun 14. The lower end of the opening and closing trigger rod 24 is slidingly connected to a position limiting block 21. The side of the position limiting block 21 away from the tower 3 is provided with a fourth spring 23. In the initial state, the fourth spring 23 is in the stretched state. The side of the position limiting block 21 close to the tower 3 abuts against a sliding adjustment rod 18. The lower side of the position limiting block 21 is slidingly connected to an inclined guide groove 22. When the fourth spring 23 is contracted, the position limiting block 21 can move in the inclined guide groove 22, and the position limiting block 21 and the sliding adjustment rod 18 are separated from each other.
[0030] One end of the sliding adjustment rod 18 is provided with a direction guide rod 20. The third spring 19 is arranged on the upper end surface of the sliding adjustment rod 18. In the initial state, the third spring 19 is in the contracted state. The other end of the sliding adjustment rod 18 is provided with a vertical toothed bar 17. The vertical toothed bar 17 is arranged vertically, and the vertical toothed bar 17 is matched with the one-way transmission gear 5. When the vertical toothed bar 17 moves upward with the sliding adjustment rod 18, the vertical toothed bar 17 can be engaged with the one-way transmission gear 5, and the one-way transmission gear 5 is driven to rotate.
[0031] Specifically, the number of the fixed mounting rod 16 is four, and the fixed mounting rod 16 is distributed in a square shape. The outer wall of the fixed mounting rod 16 is wrapped with the emergency conduit bag 7. The inner wall of the fixed mounting rod 16 is inserted with the water gun 14. The fixed mounting rod 16 is matched with the sliding adjustment rod 18. In the initial state, the thickness of the emergency conduit bag 7 wrapped outside the fixed mounting rod 16 can limit the sliding adjustment rod 18. When the emergency conduit bag 7 is completely separated from the fixed mounting rod 16, the sliding adjustment rod 18 can pass through the position of the fixed mounting rod 16 upward. When the emergency conduit bag 7 is not completely separated from the fixed mounting rod 16, the sliding adjustment rod 18 is blocked by the emergency conduit bag 7 and cannot continue to move upward.
[0032] More specifically, one side of the fixed mounting rod 16 is provided with a vertical toothed bar 17, the bottom of the vertical toothed bar 17 is fixedly connected with a sliding adjusting rod 18, the sliding adjusting rod 18 is slidingly connected in the inside of the emergency box 1 of the electric tower, the bottom of the sliding adjusting rod 18 is fixedly installed with a third spring 19, the third spring 19 is fixedly installed in the inside of the emergency box 1 of the electric tower, a direction guide guide rod 20 is inserted in the inside of the third spring 19, the direction guide guide rod 20 is fixedly installed in the inside of the emergency box 1 of the electric tower, the direction guide guide rod 20 is inserted in the inside of the sliding adjusting rod 18, the top of the sliding adjusting rod 18 is provided with a position limiting partition block 21, an inclined groove is slidingly connected below the position limiting partition block 21, the inclined groove is opened in the inside of the emergency box 1 of the electric tower, a fourth spring 23 is fixedly installed on one side of the position limiting partition block 21, an opening and closing trigger rod 24 is slidingly connected in the inside of the position limiting partition block 21, the opening and closing trigger rod 24 is slidingly connected in the inside of the emergency box 1 of the electric tower, the opening and closing trigger rod 24 is arranged on one side of the rotary control valve 15.
[0033] Further preferably, the fourth spring 23 is installed on a sliding block by a spring, and the sliding block is slidingly connected to the inner wall of the emergency box 1 of the electric tower, so that when the position limiting partition block 21 is pulled to slide along the inside of the inclined groove, the fourth spring 23 can slide along the inside of the emergency box 1 of the electric tower through the sliding block, and the fourth spring 23 is slidingly connected in the inside of the emergency box 1 of the electric tower.
[0034] Further preferably, the vertical toothed bar 17 is composed of an outer tooth gear installed on the outer wall of an inner tooth ratchet, so that when the vertical toothed bar 17 rises to drive the one-way transmission gear 5 to rotate, the outer tooth gear drives the inner tooth ratchet to rotate, the inner tooth ratchet drives the first adjusting valve 4 to rotate and open, so that the water in the inside of the tower cylinder 3 can be discharged into the inside of the emergency conduit bag 7, and when the vertical toothed bar 17 descends to drive the one-way transmission gear 5 to reverse, the outer tooth gear idles with the inner tooth ratchet, so that the inner tooth ratchet does not drive the first adjusting valve 4 to open.
[0035] It can be understood that when the wind power tower appears an emergency fire, first hold the handle of the air-tight partition door 2 and pull it to one side, so that the air-tight partition door 2 slides along the inner wall of the emergency box 1 of the tower and stops sealing the emergency box 1 of the tower, so that the user can take out the water gun 14 from the inside of the emergency box 1 of the tower. The water gun 14 taken out will gradually unfold the emergency conduit bag 7 and separate it from the inside of the emergency box 1 of the tower. At the same time, after the water gun 14 is taken out of the inside of the emergency box 1 of the tower, the rotary control valve 15 will stop extruding the opening and closing trigger rod 24, so that the fourth spring 23 can retract the position limiting block 21, and then the position limiting block 21 slides along the inside of the inclined groove and stops limiting the sliding adjusting rod 18. At the same time, the third spring 19 pushes the sliding adjusting rod 18 to rise along the outer wall of the direction guide rod 20 and extrude the emergency conduit bag 7. As the emergency conduit bag 7 gradually unfolds and separates from the inside of the emergency box 1 of the tower, the thickness of the outer wall of the fixed mounting rod 16 gradually decreases. When the emergency conduit bag 7 completely separates from the outer wall of the fixed mounting rod 16, the third spring 19 pushes the sliding adjusting rod 18 to rise along the direction guide rod 20. The rising of the sliding adjusting rod 18 drives the vertical toothed bar 17 to rise, which engages with the one-way transmission gear 5 and rotates the one-way transmission gear 5, so that the one-way transmission gear 5 drives the first adjusting valve 4 to stop sealing the water outlet of the tower cylinder 3. In this way, the tower cylinder 3 can inject water into the inside of the emergency conduit bag 7, so as to achieve the effect that the emergency conduit bag 7 is unfolded and the first adjusting valve 4 is automatically opened. In an emergency, the user does not need to waste time to manually connect the gun and the emergency conduit bag 7. After taking out the water gun 14 and pulling out the emergency conduit bag 7, the first adjusting valve 4 can be automatically opened, so that the user can control the emergency fire in the first time, greatly reducing the loss of fire.
[0036] In addition, the air-tight partition door 2 can block and limit the water gun 14, prevent the third spring 19 from pushing the sliding adjusting rod 18 to extrude the position limiting block 21 and the fourth spring 23 to pull the position limiting block 21, so that the position limiting block 21 slides along the inclined groove due to long-term pushing and pulling, and the position limiting block 21 drives the opening and closing trigger rod 24 to extrude the rotary control valve 15, so that the rotary control valve 15 pushes the water gun 14 to displace, and the sliding adjusting rod 18 extrudes the emergency conduit bag 7 for a long time, causing part of the emergency conduit bag 7 to be damaged due to long-term extrusion.
[0037] It should be noted that during the fire fighting emergency operation, a large amount of smoke and harmful gas is often generated in the environment, which is harmful to the health of the user. Therefore, the water gun 14 can be further designed, as follows:
[0038] Please further refer to Figure 7A rotating connecting rod 28 is provided at the front center of the water gun 14, and a rotating blade 27 is provided at one end of the rotating connecting rod 28 located inside the water gun 14. A rotating fixed ring 25 is provided on the outer wall of the water gun 14, and a fine atomizing spray nozzle 26 is provided on the rotating fixed ring 25. The rotating fixed ring 25 is fixedly connected to the rotating blade 27. When the rotating blade 27 rotates, it can drive the rotating fixed ring 25 to rotate synchronously.
[0039] Specifically, the water gun 14 is internally rotatably connected to a rotating fixed ring 25 , a fine atomizing spray nozzle 26 is fixedly installed inside the rotating fixed ring 25 , a rotating blade 27 is fixedly connected to the outer wall of the rotating fixed ring 25 , and a rotating connecting rod 28 is rotatably connected inside the rotating blade 27 .
[0040] It can be understood that when the water gun 14 is spraying water, the water will drive the rotating blades 27 to rotate, the rotation of the rotating blades 27 will drive the rotating fixed ring 25 to rotate, and the rotation of the rotating fixed ring 25 will drive the fine atomizing spray nozzle 26 to rotate. The rotation of the fine atomizing spray nozzle 26 will spray water mist to the surroundings, eliminating smoke and dust in the surrounding air and reducing adverse effects on the health of the user.
[0041] Furthermore, an expandable water outlet plate 29 is provided on the rotating connecting rod 28, and the expandable water outlet plate 29 is fixedly connected to the rotating sleeve 30 at the water outlet of the water gun 14. When the rotating sleeve 30 rotates, it can drive the expandable water outlet plate 29 to rotate around the rotating connecting rod 28.
[0042] Specifically, the outer wall of the rotating connecting rod 28 is rotatably connected to the expandable water outlet plate 29. By setting the number of expandable water outlet plates 29 to be multiple and the sliding connection between two adjacent expandable water outlet plates 29, when the rotating sleeve 30 drives the expandable water outlet plate 29 to rotate and expand, the expandable water outlet plate 29 can be fully expanded to block the water outlet of the water gun 14, so that water can only be sprayed out of the interior of the water gun 14 after passing through the expanded expandable water outlet plate 29 and being diverted into multiple streams to expand the spraying area. The expandable water outlet plate 29 is fixedly installed inside the water gun 14, and the outer wall of the expandable water outlet plate 29 is fixedly installed with a rotating sleeve 30, which is rotatably connected to the outer wall of the water gun 14.
[0043] It is understandable that the user can rotate the rotating sleeve 30 to cause the rotating sleeve 30 to drive the expandable water outlet plate 29 to expand. The expansion of the expandable water outlet plate 29 will block the water outlet of the water gun 14, so that the water sprayed by the water gun 14 passes through the expanded expandable water outlet plate 29, and the spraying range of the water gun 14 is controlled to adapt to different emergency situations.
[0044] Furthermore, a lifting mechanism can be designed. Please refer toFigure 4 Further comprising a lifting mechanism, the lifting mechanism comprises a transverse toothed bar 31 arranged on the inner side of the airtight grille door 2, the transverse toothed bar 31 is engaged with a gear transmission assembly 32, the gear transmission assembly 32 is provided with a reciprocating linear motion screw rod 33, the reciprocating linear motion screw rod 33 is provided with a lifting collar 34, the lifting collar 34 is provided with a supporting rack 35, and the supporting rack 35 is internally provided with a fire extinguisher 36.
[0045] Specifically, the airtight grille door 2 is fixedly installed with a transverse toothed bar 31 on one side, the transverse toothed bar 31 is engaged with a gear transmission assembly 32 on one side, the gear transmission assembly 32 is rotationally connected in the interior of the electric tower emergency box 1, the gear transmission assembly 32 is fixedly connected with a reciprocating linear motion screw rod 33 at the top, the reciprocating linear motion screw rod 33 is sleeved with a lifting collar 34 on the outer wall, the lifting collar 34 is fixedly connected with a supporting rack 35 on the outer wall, the supporting rack 35 is slidingly connected in the interior of the electric tower emergency box 1, and the supporting rack 35 is inserted with a fire extinguisher 36 in the interior.
[0046] It can be understood that when the airtight grille door 2 is opened, the airtight grille door 2 will move together with the transverse toothed bar 31, the movement of the transverse toothed bar 31 will drive the gear transmission assembly 32 to rotate, the rotation of the gear transmission assembly 32 will drive the reciprocating linear motion screw rod 33 to rotate, the rotation of the reciprocating linear motion screw rod 33 will drive the lifting collar 34 to move upward, the upward movement of the lifting collar 34 will drive the supporting rack 35 to move upward, so that the supporting rack 35 drives the fire extinguisher 36 to move upward, not only achieving slight shaking of the fire extinguisher 36, but also achieving automatic lifting of the fire extinguisher 36, which is convenient for users to use and further improves the efficiency of fire emergency operation.
[0047] It should be noted that during the fire emergency operation, the water gun 14 and the emergency conduit bag 7 in the electric tower emergency box 1 are taken out, and the water pipe bag is often twisted and wound together, so that the user has to arrange the emergency conduit bag 7 first, which wastes a lot of time and energy, affects fire relief, and even causes irreparable huge losses, therefore, a kind of anti-winding mechanism can be specifically designed, which will be described in detail as follows:
[0048] Please see Figure 3Further preferably, the anti-winding mechanism comprises a mutually matched housing cover 8 and symmetrical clamping plates 9, a through slot is left in the middle of the mutually matched housing cover 8, two symmetrical clamping plates 9 are correspondingly arranged in the through slot, the symmetrical clamping plates 9 are elastically connected with the mutually matched housing cover 8 through the second spring 13, and the mutually matched housing cover 8 is clamped on the emergency catheter bag 7 through the symmetrical clamping plates 9, a movable pressing rod 12 is inserted into the bottom end of the mutually matched housing cover 8, a stop rod is arranged above the movable pressing rod 12, the stop rod is elastically connected inside the mutually matched housing cover 8 through the first spring 11, in the initial state, one end of the movable pressing rod 12 is in a state of protruding from the bottom surface of the mutually matched housing cover 8, and the stop rod penetrates through the symmetrical clamping plates 9 to play a limiting role; when the movable pressing rod 12 is pressed, the stop rod is pressed out to cancel the limiting role on the symmetrical clamping plates 9, so that the symmetrical clamping plates 9 can be retracted.
[0049] Specifically, the outer wall of the emergency catheter bag 7 is sleeved with the mutually matched housing cover 8, the symmetrical clamping plates 9 are slidably connected inside the mutually matched housing cover 8, the clamping adjusting rod 10 is inserted into the inside of the symmetrical clamping plates 9, and the end of the clamping adjusting rod 10 away from the first spring 11 is arranged in an inclined manner, so that after the clamping adjusting rod 10 is pressed by the movable pressing rod 12, the symmetrical clamping plates 9 can be pressed open by the clamping adjusting rod 10 and stop pressing the emergency catheter bag 7 under the driving of the second spring 13, so that the clamping adjusting rod 10 is separated from the inside of the symmetrical clamping plates 9 and continues to press the first spring 11, the clamping adjusting rod 10 is slidably connected inside the mutually matched housing cover 8, the first spring 11 is fixedly installed on one end of the clamping adjusting rod 10, the first spring 11 is fixedly installed inside the mutually matched housing cover 8, the movable pressing rod 12 is inserted into the inside of the mutually matched housing cover 8, the movable pressing rod 12 is arranged at the end of the clamping adjusting rod 10 away from the first spring 11, the second spring 13 is fixedly installed inside the mutually matched housing cover 8, and the second spring 13 is fixedly installed on the outer wall of the symmetrical clamping plates 9.
[0050] It can be understood that after the water enters the inside of the emergency conduit bag 7, it will be expanded to the position pressed by the symmetrical clamping plate 9, so that the emergency conduit bag 7 continues to expand to push the symmetrical clamping plate 9 to slide along the outer wall of the emergency conduit bag 7, and then the symmetrical clamping plate 9 pushes the knot generated when the emergency conduit bag 7 is unfolded, so that the knot generated when the emergency conduit bag 7 is unfolded is pushed to the connection between the emergency conduit bag 7 and the water gun 14, and then through the setting that the emergency conduit bag 7 is rotatably connected with the water gun 14, the knot generated by the emergency conduit bag 7 can be eliminated without rotating the water gun 14 together. When the symmetrical clamping plate 9 drives the mutually matched shell cover 8 to reach the connection between the emergency conduit bag 7 and the water gun 14, the movable pressing rod 12 will be pressed by the water gun 14, so that the movable pressing rod 12 presses the clamping adjusting rod 10 to slide along the inside of the mutually matched shell cover 8, and then the clamping adjusting rod 10 presses the first spring 11 to shrink and makes the inclined part enter the inside of the symmetrical clamping plate 9, so that the second spring 13 can pull the symmetrical clamping plate 9 to press open the clamping adjusting rod 10 and stop clamping the emergency conduit bag 7, so that the water can be discharged into the inside of the water gun 14.
[0051] When the fire emergency ends, the first adjusting valve 4 can be rotated to stop the tower cylinder 3 from draining water into the emergency conduit bag 7, then the mutually matched shell cover 8 is moved to the position where the emergency conduit bag 7 is in contact with the coupling member 6, and the symmetrical clamping plate 9 is pressed to extrude the emergency conduit bag 7 again, then the first spring 11 pushes the clamping adjusting rod 10 to limit and fix the symmetrical clamping plate 9 again, then the mutually matched shell cover 8 is pulled to move towards the water gun 14, so that the mutually matched shell cover 8 drives the symmetrical clamping plate 9 to extrude the remaining water in the emergency conduit bag 7 and scrape off the dust adhered to the outer wall of the emergency conduit bag 7, so as to prevent water from accumulating in the emergency conduit bag 7 and affecting the winding of the emergency conduit bag 7, then the mutually matched shell cover 8 is pulled back to its original position, and the emergency conduit bag 7 is wound, so that the emergency conduit bag 7 is wound around the outer wall of the water gun 14, then the sliding adjusting rod 18 is pulled down, so that the sliding adjusting rod 18 slides down along the direction guide guide rod 20 and extrudes the third spring 19 to contract, then the sliding adjusting rod 18 drives the vertical toothed rod 17 to pass through and drives the one-way transmission gear 5 to idle, and the wound emergency conduit bag 7 and the water gun 14 are hung on the fixed hanging rod 16, so that the water gun 14 extrudes the opening and closing trigger rod 24 into the inner wall of the tower emergency box 1 through the rotary control valve 15, the opening and closing trigger rod 24 is extruded to drive the position limiting block 21 to slide along the inclined groove, so that the position limiting block 21 pulls the fourth spring 23 to elongate and move to the top of the sliding adjusting rod 18, then when the user stops pressing the sliding adjusting rod 18, the third spring 19 elongates to push the sliding adjusting rod 18 to rise along the direction guide guide rod 20, which is blocked by the position limiting block 21, so as to prevent the sliding adjusting rod 18 from being pressed for a long time under the pushing of the third spring 19, which may cause damage to the emergency conduit bag 7, only when the water gun 14 drives the emergency conduit bag 7 to separate from the inner wall of the tower emergency box 1, and the opening and closing trigger rod 24 is no longer extruded, the position limiting block 21 stops limiting the sliding adjusting rod 18.
[0052] The above only describes the preferred embodiments of the present application, and is not intended to limit the present application, any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A small wind power tower for fire emergency response, comprising: A tower tube (3) and an electric tower emergency box (1) mounted on the tower tube (3), characterized in that: A first regulating valve (4) is provided in the power tower emergency box (1), a coupling member (6) is sleeved on the first regulating valve (4), an emergency catheter bag (7) is inserted into the coupling member (6), and a water gun (14) is connected to the emergency catheter bag (7); The water gun (14) is rotatably connected to a rotating fixed ring (25), a fine atomizing spray nozzle (26) is fixedly installed in the rotating fixed ring (25), a rotating blade (27) is fixedly connected to the rotating fixed ring (25), and a rotating connecting rod (28) is rotatably connected to the rotating blade (27); the rotating connecting rod (28) is rotatably connected to an expandable water outlet plate (29), two adjacent expandable water outlet plates (29) are slidably connected, the expandable water outlet plates (29) are fixedly installed in the interior of the water gun (14), a rotating sleeve (30) is fixedly installed on the expandable water outlet plate (29), and the rotating sleeve (30) is rotatably connected to the outer wall of the water gun (14).
2. The wind power generation tower for fire emergency according to claim 1, characterized in that: The outer wall of the emergency catheter bag (7) is sleeved with a matching outer shell cover (8), a symmetrical clamping plate (9) is slidably connected in the matching outer shell cover (8), a clamping adjustment rod (10) is inserted in the symmetrical clamping plate (9), and the clamping adjustment rod (10) is slidably connected in the matching outer shell cover (8), one end of the clamping adjustment rod (10) is fixed with a first spring (11), the first spring (11) is fixed in the matching outer shell cover (8), a movable pressure rod (12) is inserted in the matching outer shell cover (8), and the movable pressure rod (12) is arranged at one end of the clamping adjustment rod (10) away from the first spring (11), a second spring (13) is fixed inside the matching outer shell cover (8), and the second spring (13) is fixed on the outer wall of the symmetrical clamping plate (9).