Energy-saving heat pump room temperature regulating device
By installing diversion pipes and pumps in the boiler room to recover heat and using preheated air for boiler combustion, the problems of poor cooling effect of fans and high cost of air conditioning are solved, achieving the dual effects of energy-saving cooling and preheating air.
Patent Information
- Application Number
- CN202310432653.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-04-21
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2043-04-21
AI Technical Summary
Among the existing boiler room cooling measures, fan cooling is ineffective, air conditioning is costly and consumes a lot of electricity, and the air preheating requirement during boiler combustion has not been effectively addressed.
An energy-saving heating pump room room temperature control device is adopted. Heat is recovered from the room through diversion pipes and diversion pumps, and the preheated air is used for boiler combustion. Combined with temperature regulation and preheating structures, heat recovery and reuse are achieved.
It effectively reduced the operating costs of the boiler room, improved cooling efficiency, and met the preheating requirements of the boiler combustion air, thus achieving energy-saving and cooling effects.
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Figure CN116498992B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of boiler, in particular to an energy-saving heat supply pump room room temperature regulation device. BACKGROUND
[0002] It is known that the boiler room is a room for boiling water, and the temperature in the boiler room is relatively high because boiling water generates heat, so cooling measures are often needed in the boiler room, and cooling is generally achieved by fans or air conditioners. However, the cooling effect of the fan is poor, and the circulating hot air is difficult to achieve the cooling effect. The air conditioner has high cost and consumes a large amount of electric energy, thereby increasing the use cost of the boiler room. In addition, the air used in the combustion of the boiler needs to be preheated. In view of the above problems, the present application is developed. SUMMARY
[0003] The technical scheme of the present application for achieving the above-mentioned purpose is as follows: an energy-saving heat supply pump room room temperature regulation device, comprising: a heat supply pump room, a boiler, a plurality of drainage pipes and a plurality of drainage pumps, the plurality of drainage pipes are respectively installed on the plurality of drainage pumps, and the plurality of drainage pipes are uniformly installed on the heat supply pump room, the boiler is connected to the plurality of drainage pipes, a preheating structure is installed on the inner side of the heat supply pump room, and a temperature regulation structure is installed on the plurality of drainage pipes.
[0004] The temperature regulation structure comprises: a plurality of sleeved ring blocks, a plurality of inclined electromagnets, a plurality of inclined magnets, a plurality of current flow direction regulators, a plurality of resistance regulators, a plurality of drainage shaft pipes, a plurality of concave ring blocks, a plurality of ring inner blocks, a plurality of drainage bearing blocks, a plurality of drainage blades and a plurality of horn type gathering blocks.
[0005] The plurality of sleeved ring blocks are respectively installed on the upper and lower ends of the heat supply pump room, and the plurality of sleeved ring blocks are respectively sleeved on the plurality of drainage pipes. The plurality of concave ring blocks are respectively installed on the upper and lower ends of the inner side of the plurality of sleeved ring blocks. The plurality of ring inner blocks are respectively movably inserted into the inner side of the plurality of concave ring blocks. The plurality of drainage bearing blocks are respectively sleeved on the plurality of drainage pipes, and the plurality of drainage bearing blocks are respectively connected to the plurality of ring inner blocks. The plurality of drainage blades are respectively installed on the plurality of ring inner blocks. The plurality of horn type gathering blocks are respectively and uniformly installed on the inner side of the plurality of sleeved ring blocks. The plurality of inclined electromagnets are respectively installed on the plurality of concave ring blocks. The plurality of inclined magnets are respectively installed on the plurality of ring inner blocks. The plurality of current flow direction regulators and the plurality of resistance regulators are respectively installed on the plurality of inclined electromagnets. The plurality of drainage shaft pipes are respectively and uniformly inserted into the upper and lower ends of the plurality of sleeved ring blocks.
[0006] Preferably, the preheating structure comprises a pair of toothed air charging pipes, a T-shaped drainage pipe, a plurality of temperature sensors, a U-shaped filter box, a T-shaped feeding pipe, a pair of feeding transfer boxes, a pair of telescopic shaft pipes, a pair of telescopic push-pull rods, a pair of telescopic push-pull plates, a pair of concave bearing blocks, a pair of T-shaped push-pull rods, a pair of L-shaped push-pull rods, a concave bearing support block, a support rotating shaft, a pair of rotating support discs, a support rotating drive machine, a support rotating gear box, a filter assembly, and a circulating drainage assembly.
[0007] The T-shaped drainage pipe is inserted into the heat supply pump room, a pair of toothed air charging pipes are respectively inserted into the heat supply pump room, and the toothed air charging pipes are connected to the T-shaped drainage pipe. The U-shaped filter box is installed on the heat supply pump room, and the U-shaped filter box is connected to the T-shaped drainage pipe. A pair of feeding transfer boxes are installed on the heat supply pump room, the T-shaped feeding pipe is inserted into the pair of feeding transfer boxes, and the T-shaped feeding pipe is inserted into the U-shaped filter box. A pair of telescopic shaft pipes are movably inserted into the pair of feeding transfer boxes, a pair of telescopic push-pull rods are movably inserted into the pair of telescopic shaft pipes, a pair of telescopic push-pull plates are installed on the pair of telescopic push-pull rods, a pair of concave bearing blocks are installed on the pair of telescopic push-pull rods, the concave bearing support block is installed on the pair of feeding transfer boxes, the support rotating shaft is installed on the concave bearing support block, a pair of rotating support discs are installed on the support rotating shaft, a pair of L-shaped push-pull rods are inserted into the pair of rotating support discs through bearings, a pair of T-shaped push-pull rods are installed on the pair of L-shaped push-pull rods, and the pair of T-shaped push-pull rods are inserted into the pair of concave bearing blocks. The support rotating gear box is installed on the concave bearing support block and is sleeved on the support rotating shaft. The support rotating drive machine is connected to the support rotating gear box. A plurality of temperature sensors are installed on a plurality of drainage pipes and a plurality of sleeved ring blocks. The filter assembly is installed on a pair of toothed air charging pipes. The circulating drainage assembly is installed on the heat supply pump room.
[0008] Preferably, the filter assembly comprises a plurality of L-shaped air charging pipes, a plurality of L-shaped slides, a plurality of concave filter inner boxes, a plurality of filter screens, a plurality of filter carbons, a plurality of filter cots, a plurality of side wall shafts, a plurality of side wall wheels, a plurality of support shielding slides, a plurality of support shielding slide blocks, and a plurality of support shielding plates.
[0009] A plurality of L-shaped air charging pipes are respectively installed on a pair of tooth-mounted air exhaust pipes, a plurality of L-shaped slides are respectively and oppositely installed on a pair of tooth-mounted air charging pipes and a plurality of L-shaped air charging pipes, a plurality of filter screens are respectively installed on inner sides of a plurality of concave filter inner boxes, a plurality of filter carbons and a plurality of filter cots are respectively installed on the plurality of filter screens, a plurality of side wall shafts are respectively inserted into the plurality of concave filter inner boxes, a plurality of side wall wheels are respectively installed on the plurality of side wall shafts, and the plurality of side wall wheels are respectively and movably inserted into inner sides of the plurality of L-shaped slides, a plurality of support shielding slides are respectively and oppositely installed on a pair of tooth-mounted air charging pipes, a plurality of support shielding slide blocks are respectively installed on a plurality of support shielding plates, and the plurality of support shielding slide blocks are respectively and movably inserted into inner sides of the plurality of support shielding slides.
[0010] Preferably, the circulating drainage assembly comprises a mesh drainage pipe, an air exhaust pump, a drainage feeding pipe and a Tesla pipe.
[0011] The mesh drainage pipe is installed on the heat supply pump room, the air exhaust pump is installed on the mesh drainage pipe, the drainage feeding pipe is installed on the air exhaust pump, the drainage feeding pipe is connected to the boiler, and the Tesla pipe is installed on an inner side of the drainage feeding pipe.
[0012] Preferably, the U-shaped filter box is provided with an L-shaped liquid feeding pipe.
[0013] Preferably, an inner side of the U-shaped filter box is provided with a PH sensor.
[0014] Preferably, a plurality of concave filter inner boxes and a plurality of support shielding plates are respectively provided with drainage holes.
[0015] Preferably, the T-shaped liquid feeding pipe is provided with an L-shaped air exhaust pipe.
[0016] Preferably, inner sides of the mesh drainage pipe are respectively provided with anti-reverse horn type pieces.
[0017] Preferably, a plurality of support shielding slide blocks are respectively provided with a plurality of ball grooves, and inner sides of the plurality of ball grooves are respectively provided with moving balls.
[0018] The energy-saving heat supply pump room temperature regulation and control device is manufactured by using the technical scheme, heat on an inner side of the heat supply pump room is recycled by the temperature regulation structure, heat emitted by a plurality of drainage pipes and a plurality of drainage pumps is recycled, the temperature on the inner side of the heat supply pump room can be ensured, and preheated air is used in gas combustion of the boiler, so that excess heat in the heating water is recycled and reused. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 It is a front view structural schematic diagram of the energy-saving heat pump room temperature regulation device.
[0020] Figure 2 It is a right view sectional view structural schematic diagram of the energy-saving heat pump room temperature regulation device.
[0021] Figure 3 It is a front view sectional view schematic diagram of the energy-saving heat pump room temperature regulation device.
[0022] Figure 4 It is a top view structural schematic diagram of the energy-saving heat pump room temperature regulation device.
[0023] Figure 5 It is Figure 1 The partial enlarged view of "A" in the figure.
[0024] Figure 6 It is Figure 2 The partial enlarged view of "B" in the figure.
[0025] Figure 7 It is Figure 3 The partial enlarged view of "C" in the figure.
[0026] In the figure: 1, heat pump room; 2, boiler; 3, drainage pipeline; 4, drainage pump; 5, sleeved circular ring block; 6, inclined electromagnet; 7, inclined magnet; 8, current flow direction regulator; 9, resistance regulator; 10, drainage shaft pipe; 11, concave circular ring block; 12, circular ring inner block; 13, drainage bearing block; 14, drainage blade; 15, horn type gathering block; 16, toothed inflation pipe; 17, T-shaped drainage pipe; 18, U-shaped filter box; 19, T-shaped feeding pipe; 20, feeding transfer box; 21, telescopic shaft pipe; 22, telescopic push-pull rod; 23, telescopic push-pull plate; 24, concave bearing block; 25, T-shaped push-pull rod; 26, L-shaped push-pull rod; 27, concave bearing support block; 28, support rotating shaft; 29, rotating support disc; 30, support rotating drive machine; 31, support rotating gear box; 32, L-shaped inflation pipe; 33, L-shaped slide; 34, concave filter inner box; 35, side wall shaft; 36, side wall wheel; 37, support shielding slide; 38, support shielding slide block; 39, support shielding plate; 40, meshed drainage pipe; 41, air suction pump; 42, drainage feeding pipe; 43, Tesla tube. DETAILED DESCRIPTION
[0027] Those skilled in the art should connect all electrical components in this case to their compatible power supplies via wires. Appropriate controllers should be selected based on the actual situation to meet control requirements. The specific connections and control sequence should refer to the working principle described below, which outlines the sequential operation of each electrical component. The detailed connection methods are well-known in the art. The following primarily describes the working principle and process, without further explanation of electrical control. (Those skilled in the art should connect the components in this case sequentially. The specific connections and operating sequence should refer to the working principle described below. The detailed connection methods are well-known in the art. The following primarily describes the working principle and process.)
[0028] Example:
[0029] like Figures 1-7 As shown, several diversion pipes 3 are respectively installed on several diversion pumps 4, and several diversion pipes 3 are evenly installed on the heating pump room 1. The boiler 2 is connected to several diversion pipes 3. A preheating structure is installed on the inner side of the heating pump room 1, and a temperature regulating structure is installed on several diversion pipes 3.
[0030] Specifically, the temperature regulation structure includes: several set ring blocks 5, several inclined electromagnets 6, several inclined magnets 7, several current flow regulators 8, several resistance regulators 9, several drainage shaft tubes 10, several concave ring blocks 11, several inner ring blocks 12, several drainage bearing blocks 13, several drainage blades 14, and several horn-shaped gathering blocks 15;
[0031] Specifically, several sets of circular ring blocks 5 are respectively installed on the upper and lower ends of the heating pump room 1, and several sets of circular ring blocks 5 are respectively fitted onto several drainage pipes 3. Several concave circular ring blocks 11 are respectively installed on the upper and lower ends of the inner side of several sets of circular ring blocks 5. Several inner ring blocks 12 are respectively movably inserted into the inner side of several concave circular ring blocks 11. Several drainage bearing blocks 13 are respectively fitted onto several drainage pipes 3, and several drainage bearing blocks 13 are respectively connected to several inner ring blocks 12. The drainage blades 14 are respectively installed on several inner ring blocks 12, several horn-shaped gathering blocks 15 are respectively evenly installed on the inner side of several set ring blocks 5, several inclined electromagnets 6 are respectively installed on several concave ring blocks 11, several inclined magnets 7 are respectively installed on several inner ring blocks 12, several current flow regulators 8 and several resistance regulators 9 are respectively installed on several inclined electromagnets 6, and several drainage shaft tubes 10 are respectively evenly inserted into the upper and lower ends of several set ring blocks 5.
[0032] In use, by the cooperation of the several resistance regulators 9 and the several current flow direction regulators 8, the current direction and the current size of the several tilting electromagnets 6 are changed to generate different magnetic properties and magnetic force sizes, the several tilting electromagnets 6 respectively repel the several tilting magnets 7 by magnetic properties, the several tilting magnets 7 respectively drive the several ring inner blocks 12 on them to rotate horizontally along the inner sides of the several concave ring blocks 11 by magnetic properties, so as to drive the ring inner blocks 12 to drive the several flow bearing blocks 13 on them to rotate along the outer sides of the several flow pipes 3, the several flow blades 14 on the pair of ring inner blocks 12 on the inner sides of the sleeving ring blocks 5 rotate, the air on the inner sides of the sleeving ring blocks 5 is moved upward by the several flow blades 14 on the pair of ring inner blocks 12, the air on the outer sides of the sleeving ring blocks 5 is introduced to the inner sides of the sleeving ring blocks 5 by the several flow shaft pipes 10 on the sleeving ring blocks 5, the several flow pipes 3 are cooled by the air, the temperature on the inner sides of the flow pipes 3 is expanded to about 75-80 degrees at the same time, and then the air after absorbing heat is introduced to the circulating flow assembly and the inner sides of the boiler 2.
[0033] As shown in Figures 1-7 The preheating structure comprises a pair of toothed air charging pipes 16, T-shaped flow pipes 17, several temperature sensors, a U-shaped filter box 18, a T-shaped feeding pipe 19, a pair of feeding transfer boxes 20, a pair of telescopic shaft pipes 21, a pair of telescopic push-pull rods 22, a pair of telescopic push-pull plates 23, a pair of concave bearing blocks 24, a pair of T-shaped push-pull rods 25, a pair of L-shaped push-pull rods 26, a concave bearing support block 27, a support rotating shaft 28, a pair of rotating support discs 29, a support rotating drive machine 30, a support rotating gear box 31, a filter assembly, and a circulating flow assembly.
[0034] Specifically, the T-shaped drainage pipe 17 is inserted into the heat supply pump room 1, a pair of toothed air charging pipes 16 are respectively inserted into the heat supply pump room 1, and the toothed air charging pipes 16 are connected to the T-shaped drainage pipe 17, the U-shaped filter box 18 is installed on the heat supply pump room 1, and the U-shaped filter box 18 is connected to the T-shaped drainage pipe 17, a pair of upper material transfer boxes 20 are installed on the heat supply pump room 1, a T-shaped upper material pipe 19 is inserted into the pair of upper material transfer boxes 20, and the T-shaped upper material pipe 19 is inserted into the U-shaped filter box 18, a pair of telescopic shaft pipes 21 are respectively movably inserted into the pair of upper material transfer boxes 20, a pair of telescopic push-pull rods 22 are respectively movably inserted into the pair of telescopic shaft pipes 21, a pair of telescopic push-pull plates 23 are respectively installed on the pair of telescopic push-pull rods 22, a pair of concave bearing blocks 24 are respectively installed on the pair of telescopic push-pull rods 22, a concave bearing support block 27 is installed on the pair of upper material transfer boxes 20, a support rotating shaft 28 is installed on the concave bearing support block 27, a pair of rotating support discs 29 are respectively installed on the support rotating shaft 28, a pair of L-shaped push-pull rods 26 are respectively inserted into the pair of rotating support discs 29 through bearings, a pair of T-shaped push-pull rods 25 are respectively installed on the pair of L-shaped push-pull rods 26, and the T-shaped push-pull rods 25 are respectively inserted into the pair of concave bearing blocks 24, a support rotating gear box 31 is installed on the concave bearing support block 27, and the support rotating gear box 31 is sleeved on the support rotating shaft 28, a support rotating drive machine 30 is connected to the support rotating gear box 31, a plurality of temperature sensors are respectively installed on a plurality of drainage pipes 3 and a plurality of sleeved ring blocks 5, a filter assembly is installed on a pair of toothed air charging pipes 16, and a circulating drainage assembly is installed on the heat supply pump room 1.
[0035] In use, the negative pressure generated inside the heat supply pump room 1 is circulated by the drainage assembly, and the support rotary drive machine 30 is operated to drive the support rotary gear box 31 on the driving end of the support rotary drive machine 30 to rotate, and the support rotary shaft 28 on the support rotary gear box 31 is rotated, and the pair of rotary support discs 29 on the support rotary shaft 28 is rotated, and the L-shaped push-pull rods 26 on the pair of rotary support discs 29 are respectively driven to rotate, and the T-shaped push-pull rods 25 on the pair of L-shaped push-pull rods 26 are respectively driven to rotate, and the concave bearing blocks 24 on the pair of T-shaped push-pull rods 25 are driven to rotate, and the air inside the loading transfer box 20 is squeezed to the inside of the T-shaped loading pipe 19 through the mutual conveying machine of the pair of concave bearing blocks 24, and the air inside the T-shaped loading pipe 19 is squeezed to the inside of the U-shaped filter box 18, and the gas inside the U-shaped filter box 18 is filtered by the filtering liquid, so that the air outside is preliminarily filtered and drained to the inside of the heat supply pump room 1, so that the heat inside the heat supply pump room 1 is recovered, and the air required during the operation of the boiler 2 is preheated, and the heat inside the heat supply pump room 1 is recovered, so that the temperature inside the heat supply pump room 1 can be adjusted, and the air for the boiler 2 is preheated.
[0036] As shown in Figures 1-7 The filter assembly comprises a plurality of L-shaped air charging pipes 32, a plurality of L-shaped slides 33, a plurality of concave filter inner boxes 34, a plurality of filter screens, a plurality of filter carbons, a plurality of filter cots, a plurality of side wall shafts 35, a plurality of side wall wheels 36, a plurality of support shielding slides 37, a plurality of support shielding slides 38, and a plurality of support shielding plates 39.
[0037] Specifically, a plurality of L-shaped air charging pipes 32 are respectively installed on a pair of toothed air charging pipes, a plurality of L-shaped slides 33 are respectively and oppositely installed on a pair of toothed air charging pipes 16 and a plurality of L-shaped air charging pipes 32, a plurality of filter screens are respectively installed on the inner sides of a plurality of concave filter inner boxes 34, a plurality of filter carbons and a plurality of filter cots are respectively installed on the plurality of filter screens, a plurality of side wall shafts 35 are respectively inserted into the plurality of concave filter inner boxes 34, a plurality of side wall wheels 36 are respectively installed on the plurality of side wall shafts 35, and the plurality of side wall wheels 36 are respectively movably inserted into the inner sides of the plurality of L-shaped slides 33, a plurality of support shielding slides 37 are respectively and oppositely installed on a pair of toothed air charging pipes 16, a plurality of support shielding slide blocks 38 are respectively installed on a plurality of support shielding plates 39, and the plurality of support shielding slide blocks 38 are respectively movably inserted into the inner sides of the plurality of support shielding slides 37.
[0038] In use, the T-shaped drainage pipe 17 drains the gas in the U-shaped filter box 18 to the inner sides of a pair of toothed air charging pipes 16, the toothed air charging pipes 16 drain the air to the inner side of the heat pump room 1 through a plurality of L-shaped air charging pipes, the air is filtered by the filter screens, filter carbons and filter cots in the inner sides of a plurality of concave filter inner boxes 34, and the two pairs of side wall shafts 35 and the two pairs of side wall wheels 36 on the concave filter inner boxes 34 are movably inserted into the two pairs of L-shaped slides 33, so as to move along the L-shaped slides 33 to form an L shape, and the support shielding plate 39 is pushed, the support shielding plate 39 drives a pair of support shielding slide blocks 38 thereon, so that the pair of support shielding slide blocks 38 respectively expand and contract along a pair of support shielding slides 37, so as to move the support shielding plate 39 to the bottom end of the concave filter inner box 34.
[0039] As shown in Figures 1-7 the circulating drainage assembly comprises a meshed drainage pipe 40, an air suction pump 41, a drainage feeding pipe 42 and a Tesla pipe 43.
[0040] Specifically, the meshed drainage pipe 40 is installed on the heat pump room 1, the air suction pump 41 is installed on the meshed drainage pipe 40, the drainage feeding pipe 42 is installed on the air suction pump 41, and the drainage feeding pipe 42 is connected to the boiler 2, and the Tesla pipe 43 is installed on the inner side of the drainage feeding pipe 42.
[0041] In use, the air in the heat pump room 1 is drained to the inner sides of the drainage feeding pipe 42 and the Tesla pipe 43 by the cooperation of the air suction pump 41 and the meshed drainage pipe 40, and is drained to the inner side of the boiler 2.
[0042] As a preferred scheme, further, the U-shaped filter box 18 is provided with an L-shaped liquid feeding pipe.
[0043] As a preferred scheme, further, the U-shaped filter box 18 is provided with a PH sensor on the inner side.
[0044] As a preferred scheme, further, the concave filter inner box 34 and the support shielding plate 39 are respectively provided with drainage holes.
[0045] As a preferred scheme, further, the T-shaped liquid feeding pipe 19 is provided with an L-shaped exhaust pipe.
[0046] As a preferred scheme, further, the inner side of the mesh drainage pipe 40 is respectively provided with anti-reverse horn type pieces.
[0047] As a preferred scheme, further, the support shielding sliding block 38 is respectively provided with a plurality of ball grooves, and the inner side of the ball grooves is respectively provided with moving balls.
[0048] The above technical scheme only embodies the preferred technical scheme of the present application, and some changes made by the person skilled in the art to some parts of the present application also embody the principle of the present application and are within the protection scope of the present application.
Claims
1. An energy-saving heat pump room temperature regulating device, comprising: The utility model provides heat pump room, boiler, a plurality of drainage pipeline and a plurality of drainage pump, it is characterized by a plurality of drainage pipeline is installed on a plurality of drainage pump respectively, and a plurality of drainage pipeline is evenly installed on heat pump room, the boiler is connected on a plurality of drainage pipeline, the inside of heat pump room is provided with preheating structure, and a plurality of drainage pipeline is provided with temperature regulation structure, The temperature regulation structure comprises a plurality of sleeved annular blocks, a plurality of inclined electromagnets, a plurality of inclined magnets, a plurality of current flow direction regulators, a plurality of resistance regulators, a plurality of drainage shaft pipes, a plurality of concave annular blocks, a plurality of annular inner blocks, a plurality of drainage bearing blocks, a plurality of drainage blades and a plurality of horn type gathering blocks. A plurality of the sleeved annular blocks are installed on the upper and lower ends of the heat pump room, and a plurality of the sleeved annular blocks are sleeved on a plurality of the drainage pipes, a plurality of the concave annular blocks are installed on the upper and lower ends of the inner side of a plurality of the sleeved annular blocks, a plurality of the annular inner blocks are movably inserted into the inner side of a plurality of the concave annular blocks, a plurality of the drainage bearing blocks are sleeved on a plurality of the drainage pipes, and a plurality of the drainage bearing blocks are connected to a plurality of the annular inner blocks, a plurality of the drainage blades are installed on a plurality of the annular inner blocks, a plurality of the horn type gathering blocks are evenly installed on the inner side of a plurality of the sleeved annular blocks, a plurality of the inclined electromagnets are installed on a plurality of the concave annular blocks, a plurality of the inclined magnets are installed on a plurality of the annular inner blocks, a plurality of the current flow direction regulators and a plurality of the resistance regulators are installed on a plurality of the inclined electromagnets, and a plurality of the drainage shaft pipes are evenly inserted into the upper and lower ends of a plurality of the sleeved annular blocks. The preheating structure comprises a pair of toothed inflation pipes, a T-shaped drainage pipe, a plurality of temperature sensors, a U-shaped filter box, a T-shaped feeding pipe, a pair of feeding transfer boxes, a pair of telescopic shaft pipes, a pair of telescopic push-pull rods, a pair of telescopic push-pull plates, a pair of concave bearing blocks, a pair of T-shaped push-pull rods, a pair of L-shaped push-pull rods, a concave bearing support block, a support rotating shaft, a pair of rotating support discs, a support rotating drive machine, a support rotating gear box, a filter assembly and a circulating drainage assembly. The T-shaped drainage pipe is inserted into the heat supply pump room, a pair of toothed air charging pipes are oppositely inserted into the heat supply pump room, and the toothed air charging pipes are connected to the T-shaped drainage pipe, the U-shaped filter box is installed on the heat supply pump room and connected to the T-shaped drainage pipe, a pair of upper material transfer boxes are installed on the heat supply pump room, the T-shaped upper material pipe is inserted into the upper material transfer boxes, and the T-shaped upper material pipe is inserted into the U-shaped filter box, a pair of telescopic shaft pipes are movably inserted into the upper material transfer boxes, a pair of telescopic push-pull rods are movably inserted into the telescopic shaft pipes, a pair of telescopic push-pull plates are installed on the telescopic push-pull rods, a pair of concave bearing blocks are installed on the telescopic push-pull rods, the concave bearing support block is installed on the upper material transfer boxes, the support rotating shaft is installed on the concave bearing support block, a pair of rotating support discs are installed on the support rotating shaft, a pair of L-shaped push-pull rods are inserted into the rotating support discs through bearings, a pair of T-shaped push-pull rods are installed on the L-shaped push-pull rods, and the T-shaped push-pull rods are inserted into the concave bearing blocks, the support rotating gear box is installed on the concave bearing support block and sleeved on the support rotating shaft, the support rotating drive machine driving end is connected to the support rotating gear box, a plurality of temperature sensors are installed on the drainage pipes and the sleeved ring blocks, the filter assembly is installed on the toothed air charging pipes, and the circulating drainage assembly is installed on the heat supply pump room. The filter assembly comprises a plurality of L-shaped air charging pipes, a plurality of L-shaped slides, a plurality of concave filter inner boxes, a plurality of filter screens, a plurality of filter carbons, a plurality of filter cots, a plurality of side wall shafts, a plurality of side wall wheels, a plurality of support shielding slides, a plurality of support shielding sliding blocks, and a plurality of support shielding plates. A plurality of L-shaped air charging pipes are installed on a pair of toothed air charging pipes, a plurality of L-shaped slides are oppositely and parallelly installed on a pair of toothed air charging pipes and a plurality of L-shaped air charging pipes, a plurality of filter screens are installed on the inner sides of a plurality of concave filter inner boxes, a plurality of filter carbons and a plurality of filter cots are installed on the filter screens, a plurality of side wall shafts are inserted into the concave filter inner boxes, a plurality of side wall wheels are installed on the side wall shafts, and the side wall wheels are movably inserted into the inner sides of a plurality of L-shaped slides, a plurality of support shielding slides are oppositely and parallelly installed on a pair of toothed air charging pipes, a plurality of support shielding sliding blocks are installed on a plurality of support shielding plates, and the support shielding sliding blocks are movably inserted into the inner sides of a plurality of support shielding slides. The circulating drainage assembly comprises a mesh-shaped drainage pipe, an air pump, a drainage material feeding pipe, and a Tesla pipe. The netted drainage pipe is installed on the heat supply pump room, the air suction pump is installed on the netted drainage pipe, the drainage feeding pipe is installed on the air suction pump, the drainage feeding pipe is connected to the boiler, and the Tesla pipe is installed on the inner side of the drainage feeding pipe.
2. The energy-saving heat pump room temperature regulating device according to claim 1, characterized in that, An L-shaped feeding liquid pipe is arranged on the U-shaped filter box.
3. The energy-saving heat pump room temperature regulating device according to claim 2, characterized in that, A PH sensor is arranged on the inner side of the U-shaped filter box.
4. The energy-saving heat pump room temperature regulating device according to claim 3, characterized in that, Drainage holes are arranged on the concave filter inner box and the support shielding plate.
5. The energy-saving heat pump room temperature regulating device according to claim 4, characterized in that, An L-shaped exhaust pipe is arranged on the T-shaped feeding pipe.
6. The energy-saving heat pump room temperature regulating device according to claim 5, characterized in that, Anti-reverse horn type pieces are arranged on the inner side of the netted drainage pipe.
7. The energy-saving heat pump room temperature regulating device according to claim 6, characterized in that, Ball grooves are arranged on the support shielding sliding blocks, and moving balls are arranged on the inner side of the ball grooves.
Citation Information
Patent Citations
Waste heat circulating device of power plant
CN217604146U