CN102358138B - On-board air conditioner method of work - Google Patents

On-board air conditioner method of work Download PDF

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Publication number
CN102358138B
CN102358138B CN201110211517.1A CN201110211517A CN102358138B CN 102358138 B CN102358138 B CN 102358138B CN 201110211517 A CN201110211517 A CN 201110211517A CN 102358138 B CN102358138 B CN 102358138B
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air
inhaling
air conditioner
board
car
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CN102358138A (en
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不公告发明人
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YANGZHOU JIEXIN AUTOMOBILE AIR CONDITIONER CO Ltd
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Individual
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Abstract

Invention describes a kind of on-board air conditioner method of work, pass through on-board air conditioner, filter for vehicle waste gas, respirator, electric heater, H Exch, water atomizer(-iser), temperature sensor, humidity sensor be embodied as the inhaling air temperature that passengers inside the car provide, Humidity Detection and adjustment, heat energy and air flow power conversion are carried out to the expiratory air of passengers inside the car, and as inhaling air heat regulator heating source and suck air-flow and to bleed the on-board air conditioner method of work of propulsion source, make on-board air conditioner can carry out automotive exharst gas filtering to the inhaling air of passengers inside the car, also there is the regulatory function of the inhaling air of passengers inside the car being carried out to temperature and humidity, and reduce energy resource consumption as much as possible, for passengers inside the car provide certain a home from home.

Description

On-board air conditioner method of work
Technical field
The present invention is on-board air conditioner method of work, belongs to vehicle air regulation technology field.
Background technology
Current on-board air conditioner is all carry out temperature adjustment to space, whole compartment, and on-board air conditioner only possesses the filtering function to dust usually, and do not possess the function that filtering and the humidity of automotive exharst gas are regulated, therefore, current on-board air conditioner energy consumption is larger, and can not adjust air humidity and filtering fuel automobile discharge waste gas, in actual applications, especially on battery-driven car, in order to provide certain comfort level to passengers inside the car, need to arrange air conditioner facility, and automotive exharst gas filtering is carried out to the inhaling air of human body, the regulatory function of temperature and humidity, and the electric energy storage of battery-driven car is limited, then need to reduce energy resource consumption as much as possible.
Summary of the invention
In view of the foregoing and problem, the object of the present invention is to provide a kind of on-board air conditioner method of work and vehicle-mounted air conditioning respirator, make on-board air conditioner not only can carry out the regulatory function of automotive exharst gas filtering, temperature and humidity to the inhaling air of passengers inside the car, also need to reduce energy resource consumption possibly, for passengers inside the car provide certain a home from home.
For achieving the above object, the present invention introduces a kind of on-board air conditioner method of work, it is characterized in that adopting automotive exharst gas filtering and humidity control processing method to the input air of described air-conditioning, conduit is adopted to import the method for work of respirator as human body inhaling air to the regulation output air of described air-conditioning, respirator is adopted to receive human body expiratory air, and the heat energy of the characteristics of contaminated respiratory droplets gas received by respirator is as the heating source of on-board air conditioner inhaling air, using the bleed propulsion source of the air flow power of the characteristics of contaminated respiratory droplets gas of respirator reception as on-board air conditioner input air.
For realizing method of work of the present invention, the present invention also introduces a kind of vehicle-mounted air conditioning respirator, includes air-conditioning, inhaling air air pump, air-conditioning inner heat exchanger and air-conditioning external heat exchanger, is characterized in that there is an inhaling air insulation can, two electric heaters, a filter for vehicle waste gas, an inhaling air conduit, a respirator, an expiratory air conduit, an inhaling air air pump, a water atomizer(-iser), an expiratory air insulation can, an expiratory air H Exch, four Air blow check valve doors, two air-flow triple valves, a refrigeration heat pipe, a heating heat pipe, a heat-pipe radiator, a heat-pipe radiator ventilating and thermal insulating controlled box, an inhaling air temperature sensor, an inhaling air humidity sensor, a microprocessing systems, the filtered air outlet of filter for vehicle waste gas is connected with the inhaling air entrance of inhaling air insulation can by pipeline, the inhaling air outlet of inhaling air insulation can is connected with respirator by inhaling air conduit, the expiratory air admission port of expiratory air insulation can is connected with respirator by expiratory air conduit, inhaling air air pump is arranged on inhaling air insulation can inhaling air entrance, two electric heaters are separately positioned in filter for vehicle waste gas and inhaling air insulation can, air-conditioning inner heat exchanger, inhaling air temperature sensor, inhaling air humidity sensor is arranged in inhaling air insulation can, the atomized steam outlet of water atomizer(-iser) is connected with inhaling air insulation can by pipeline, inhaling air H Exch is connected with heat-pipe radiator by refrigeration heat pipe, heat-pipe radiator is arranged in heat-pipe radiator ventilating and thermal insulating controlled box, expiratory air H Exch is arranged in expiratory air insulation can, expiratory air H Exch is connected with air-conditioning inner heat exchanger, at filter for vehicle waste gas admission port place by heating heat pipe, the inhaling air exit of inhaling air insulation can, the expiratory air entrance of expiratory air insulation can and air extractor duct place are each respectively arranges an Air blow check valve door, at the air intake of heat-pipe radiator ventilating and thermal insulating controlled box, the expiratory air entrance of expiratory air insulation can is respectively provided with an air-flow triple valve, electric heater, inhaling air air pump, water atomizer(-iser), the working state control end of each air-flow triple valve and each Air blow check valve, the signal output part of each sensor, be connected with the job control input/output terminal of microprocessing systems respectively.
Principle of work of the present invention is: first, comfort due to human body temperature to external world also shows sucking the temperature of air and humidity sensuously, therefore main points of the present invention are by using on-board air conditioner to carry out temperature, humidity control to on-board crew inhaling air, use exhaust gas filter for car filtering automotive exharst gas and reach the perceptual effect regulating human body temperature, humidity and air quality to external world, compared with the temperature adopting such method of work and on-board air conditioner to regulate whole compartment, the energy consumption of conditioning unit can be made significantly to reduce, working process of the present invention is: the inhaling air by exhaust gas filter for car is input to inhaling air insulation can, by being arranged on sensor in the inhaling air insulation can inhaling air temperature to input, humidity is carried out detecting and Detection Information is input to microprocessing systems and compares and determination processing, microprocessing systems is according to the comparison of detected value and setting value and result of determination, result of determination is shown, and control on-board air conditioner, electric heater, water atomizer(-iser) is switched to relevant work state, the temperature of inhaling air and humidity are regulated, when refrigeration work state, the heat energy of air-conditioning inner heat exchanger can also be delivered on heat-pipe radiator by refrigeration heat pipe, dispelled the heat by the air entering into heat pipe heat radiation case, when heating work state, expiratory air enters into expiratory air insulation can, can also by being arranged on inhaling air H Exch that expiratory air heat energy to be delivered to by heat pipe in inhaling air insulation can by expiratory air H Exch in expiratory air insulation can, inhaling air in inhaling air insulation can is heated, the heat energy of passive heat transfer function and characteristics of contaminated respiratory droplets gas that such mode of operation can make full use of heat pipe carries out temperature adjustment to inhaling air, reduce the present invention's consumption of current operationally, reach the object reducing energy resource consumption, in addition, the mode of operation of inhaling air air pump is controlled by microprocessing systems, the resistance of human body when air-breathing can be reduced.
Accompanying drawing explanation
Fig. 1 is the System's composition schematic diagram of one embodiment of the invention;
Wherein, in the accompanying drawings, the parts with same function are adopted to identical numbering to represent in detail in this figure, too much bring confusion to avoid numbering.
Detailed description of the invention
For accompanying drawing, embodiments of the invention are described below.
Fig. 1 is the System's composition schematic diagram of one embodiment of the invention, wherein: 1 is air-flow triple valve, adopt conventional automatically controlled air-flow triple valve, the various flows of air-flow is opened to passage under different mode of operations, 2 is Air blow check valve, adopt the automatically controlled air-flow one-way movement valve of ordinary construction, avoid inhaling air and expiratory air oppositely and mix, 3 is inhaling air air pump, 4 is heat-pipe radiator, employing conventional diffusers, 5 is heat-pipe radiator ventilating and thermal insulating controlled box, this ventilating and thermal insulating controlled box can be in ventilation state or stuffy keeping warm mode under the different conditions of air-flow triple valve, 6 is inhaling air insulation can, 7 is filter for vehicle waste gas, 8 is air-conditioning inner heat exchanger, 9 is respirator, 10 is on-board air conditioner, adopt common on-board air conditioner, 11 is air-conditioning external heat exchanger, 12 is water atomizer(-iser), adopt ultrasonic water atomization type device, 13 is expiratory air H Exch, 14 is expiratory air insulation can, 15 is coolant conduits, 16 is inhaling air conduit, the flexible pipe of good heat insulating is adopted to make, 17 is expiratory air conduit, the flexible pipe of good heat insulating is adopted to make, the air discharge port of filter for vehicle waste gas is connected with the inhaling air entrance of inhaling air insulation can by pipeline, the inhaling air outlet of inhaling air insulation can is connected with respirator by inhaling air conduit, the expiratory air admission port of expiratory air insulation can is connected with respirator by expiratory air conduit, two electric heaters are separately positioned in filter for vehicle waste gas and inhaling air insulation can, air-conditioning inner heat exchanger, inhaling air temperature sensor and inhaling air humidity sensor are arranged in inhaling air insulation can, the atomized steam outlet of water atomizer(-iser) is connected with inhaling air insulation can by pipeline, air-conditioning inner heat exchanger is connected with heat-pipe radiator by refrigeration heat pipe, heat-pipe radiator is arranged in heat-pipe radiator ventilation casing, expiratory air H Exch is arranged in expiratory air insulation can, expiratory air H Exch is connected with inhaling air H Exch by heating heat pipe, the conventional heat pipe of thermal evaporation liquid is filled in above-mentioned heating heat pipe and refrigeration heat pipe all adopt, exhaled air flow power converter is arranged on expiratory air insulation can air flow inlet place, inhaling air air pump is arranged on inhaling air insulation can inhaling air entrance, in inhaling air entrance and the outlet of inhaling air insulation can, the expiratory air air intake of expiratory air insulation can and air extractor duct place are each respectively arranges an Air blow check valve door, like this to ensure the nonreturn flow of inhaling air and expiratory air, making to suck air-flow must not enter in expiratory air passage and exhaled air flow can not enter in inhaling air passage, at the air intake of heat-pipe radiator ventilation casing, the expiratory air entrance of expiratory air insulation can is respectively provided with an air-flow triple valve, like this, when lowering the temperature mode of operation, open the air intake valve of heat-pipe radiator ventilation casing, close the expiratory air inlet valve of expiratory air insulation can, make heat pipe heat radiation function on, heating heat tube function is closed, namely the heat energy of the H Exch in inhaling air insulation can is taken away by refrigeration heat pipe, reduce the inhaling air temperature entered in inhaling air insulation can, when heating work state: the air intake valve of closing heat-pipe radiator ventilation casing, open the expiratory air inlet valve of expiratory air insulation can, make heat pipes heat function on, cooling heat tube function is closed, H Exch in expiratory air insulation can receives the heat energy of expiratory air, and the H Exch by heating heat pipe this heat energy is delivered in inhaling air insulation can, the inhaling air entered in inhaling air insulation can is heated, the working state control signal end of water atomizer(-iser), the signal input output end of each sensor, the working state control end of each air-flow triple valve is connected with the job control input/output terminal of microprocessing systems respectively.
According to shown in accompanying drawing and above-mentioned explanation processing all parts, module, and adopt bolt, screw and welding process to be assembled, can embodiments of the invention be completed.
Invention describes a kind of on-board air conditioner method of work, pass through on-board air conditioner, filter for vehicle waste gas, respirator, electric heater, H Exch, water atomizer(-iser), temperature sensor, humidity sensor be embodied as the inhaling air temperature that passengers inside the car provide, Humidity Detection and adjustment, heat energy and air flow power conversion are carried out to the expiratory air of passengers inside the car, and as inhaling air heat regulator heating source and suck air-flow and to bleed the on-board air conditioner method of work of propulsion source, make on-board air conditioner can carry out automotive exharst gas filtering to the inhaling air of passengers inside the car, also there is the regulatory function of the inhaling air of passengers inside the car being carried out to temperature and humidity, and reduce energy resource consumption as much as possible, for passengers inside the car provide certain a home from home.

Claims (1)

1. an on-board air conditioner method of work, it is characterized in that adopting automotive exharst gas filtering and humidity control processing method to the input air of described air-conditioning, conduit is adopted to import the method for work of respirator as human body inhaling air to the regulation output air of described air-conditioning, respirator is adopted to receive human body expiratory air, and the heat energy of the characteristics of contaminated respiratory droplets gas received by respirator is as the heating source of on-board air conditioner inhaling air, using the bleed propulsion source of the air flow power of the characteristics of contaminated respiratory droplets gas of respirator reception as on-board air conditioner input air.
CN201110211517.1A 2011-07-27 2011-07-27 On-board air conditioner method of work Active CN102358138B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201110211517.1A CN102358138B (en) 2011-07-27 2011-07-27 On-board air conditioner method of work

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201110211517.1A CN102358138B (en) 2011-07-27 2011-07-27 On-board air conditioner method of work

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CN102358138A CN102358138A (en) 2012-02-22
CN102358138B true CN102358138B (en) 2016-02-03

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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2088551A (en) * 1980-09-19 1982-06-09 Draegerwerk Ag Ventilating device for personnel-carrying motor vehicles
US5117821A (en) * 1991-10-18 1992-06-02 White George M Hunting mask with breath odor control system
CN1193575A (en) * 1997-03-14 1998-09-23 英国氧气集团有限公司 Air pollution reduction in vehicles
CN2716044Y (en) * 2004-04-20 2005-08-10 杨家林 Fresh air breathing apparatus used in riding a bus
CN101323335A (en) * 2008-07-20 2008-12-17 李朝华 Special air filter for motorcycle and electric vehicle
CN202192962U (en) * 2011-07-27 2012-04-18 耿直 Vehicle-mounted air conditioning respirator

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2088551A (en) * 1980-09-19 1982-06-09 Draegerwerk Ag Ventilating device for personnel-carrying motor vehicles
US5117821A (en) * 1991-10-18 1992-06-02 White George M Hunting mask with breath odor control system
CN1193575A (en) * 1997-03-14 1998-09-23 英国氧气集团有限公司 Air pollution reduction in vehicles
CN2716044Y (en) * 2004-04-20 2005-08-10 杨家林 Fresh air breathing apparatus used in riding a bus
CN101323335A (en) * 2008-07-20 2008-12-17 李朝华 Special air filter for motorcycle and electric vehicle
CN202192962U (en) * 2011-07-27 2012-04-18 耿直 Vehicle-mounted air conditioning respirator

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Inventor after: Chen Zhiqiang

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Effective date of registration: 20160627

Address after: 225200 Jiangsu Province, Yangzhou city Jiangdu District Foreign Trade Industrial Park Shuntian Road No. 99

Patentee after: Yangzhou Jiexin Automobile Air Conditioner Co., Ltd.

Address before: 610031 Chengdu, Jinniu District, North Ring Road, No. 1, No. 95, building 3, unit 27, No., No. 330

Patentee before: Geng Zhi