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Energy-efficient heat-exchange unit

A heat exchange unit, energy-saving technology, applied to indirect heat exchangers, lighting and heating equipment, cleaning methods using tools, etc., can solve the problems of manual cleaning, increased labor intensity of operators, and no chassis, etc., to reduce The effect of labor intensity

Inactive Publication Date: 2018-09-14
重庆科创水处理设备有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] The above scheme achieves the purpose of energy saving and environmental protection by converting solar energy into electric energy, and solves the problems in the prior art, but the above scheme still has the following problems: the entire heat exchange unit is generally placed on the spot in the open air for heat exchange operations. To ensure the cleanliness of the chassis, the operator needs to clean the chassis regularly, but the above scheme does not have any mechanism to clean the chassis, and the operator needs to clean it manually, which causes the problem of increased labor intensity for the operator

Method used

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Embodiment Construction

[0016] The following is further described in detail through specific implementation methods:

[0017] The reference signs in the drawings of the description include: chassis 1, bracket 2, wind wheel 3, first bevel gear 4, second bevel gear 5, rotating shaft 6, turntable 7, crank 8, connecting rod 9, cleaning brush 10, bristles 11. Ring tube 12, air nozzle 13, first cam 14, pump 15, air bag 16, one-way valve 17, program control valve 18, air pipe 19, collection box 20, filter cover 21, negative pressure blade 22, turbine Box 23, negative pressure pipe 24, button 25, sector gear 26, gear 27, disk 28, ratchet 29, ratchet 30, second cam 31.

[0018] The embodiment is basically as attached figure 1 and figure 2 Shown: the energy-saving heat exchange unit, including the chassis 1 and the heat exchange unit body, the heat exchange unit body is installed in the chassis 1, the bracket 2 is welded on the top of the outer wall of the chassis 1, the bracket 2 is rotatably connected wit...

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Abstract

The invention discloses an energy-efficient heat-exchange unit. The energy-efficient heat-exchange unit comprises a case and a heat-exchange unit body. The top of the outer wall of the case is rotatably connected with a main shaft. A wind wheel is connected onto the main shaft through a flat key. The top of the outer wall of the case is also equipped with a cleaning mechanism. A rotary shaft stretches into the case. The rotary shaft is connected with a first cam through a flat key. Two sides inside the case are both fixed with inflators communicating with communicating pipes. The two communicating pipes communicate with air bags. The air bags communicate with gas conveying pipes. A circular ring pipe is fixed on a circumferential direction of the cam. Gas spray holes are distributed uniformly in the bottom of the circular ring pipe. Valves are installed on the two gas conveying pipes. Two collection boxes are fixed in the case. Negative pressure pipes communicate with the collection boxes. Turbine boxes are fixed onto the collection boxes. The inside of the turbine boxes are rotatably connected with turbines. Negative-pressure blades are coaxially connected with the turbines. Compared with the prior art, the scheme converts wind energy into mechanical energy. Therefore, the energy-efficient heat-exchange unit is more eco-friendly and energy-efficient. The overall case is cleaned completely, thereby reducing the labor intensity of operation personnel.

Description

technical field [0001] The invention belongs to the field of heat exchange equipment, in particular to an energy-saving heat exchange exchange group. Background technique [0002] The heat exchange unit is composed of a heat exchanger, a temperature control valve group, a drain valve group (when the heat medium is steam), a circulating pump, an electric control cabinet, a base, pipelines, valves, instruments, etc., and can be equipped with expansion tanks, water Processing equipment, water pump frequency conversion control, temperature control valve, remote communication control, etc., thus forming a complete heat exchange station. The power supply of the heat exchange unit in the prior art uses commercial power as the power supply, which consumes a large amount of raw coal energy and cannot achieve the purpose of energy saving and environmental protection. [0003] In order to solve the above problems, the Chinese patent application number is 201520493711.7, a utility mode...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B08B1/00B08B5/02B08B13/00F28D21/00
CPCF28D21/00B08B5/02B08B13/00B08B1/12
Inventor 曾国辉
Owner 重庆科创水处理设备有限公司