CN210320719U - Simple light air conditioner - Google Patents

Simple light air conditioner Download PDF

Info

Publication number
CN210320719U
CN210320719U CN201921167428.XU CN201921167428U CN210320719U CN 210320719 U CN210320719 U CN 210320719U CN 201921167428 U CN201921167428 U CN 201921167428U CN 210320719 U CN210320719 U CN 210320719U
Authority
CN
China
Prior art keywords
compressor
evaporator
condenser
pipeline
outlet
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN201921167428.XU
Other languages
Chinese (zh)
Inventor
朱磊
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Tellhow Sci Tech Co Ltd
Original Assignee
Tellhow Sci Tech Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Tellhow Sci Tech Co Ltd filed Critical Tellhow Sci Tech Co Ltd
Priority to CN201921167428.XU priority Critical patent/CN210320719U/en
Application granted granted Critical
Publication of CN210320719U publication Critical patent/CN210320719U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Air-Conditioning For Vehicles (AREA)

Abstract

A simple light air conditioner comprises a compressor, an evaporator, a condenser, a drying filter, a throttle pipe, a cold air blower and a heat exhaust blower, wherein an inlet of the compressor is connected with an outlet of the evaporator through a pipeline; the outlet of the compressor is connected with the inlet of the condenser through a pipeline; the outlet of the condenser is connected with the inlet of the drying filter through a pipeline; the outlet of the drying filter is connected with the inlet of the throttling pipe through a pipeline; the outlet of the throttle pipe is connected with the inlet of the evaporator through a pipeline; the pipelines among the compressor, the evaporator, the condenser, the drying filter and the throttle pipe are all communicated; condensing agents are arranged in pipelines among the compressor, the evaporator, the condenser, the drying filter and the throttle pipe; the condensing agent will volatilize at room temperature. The utility model discloses simple structure, the equipment is convenient, and the air conditioning unit quality is light, is applicable to boats and ships, car etc. and has higher place to unit quality requirement.

Description

Simple light air conditioner
Technical Field
The utility model relates to an air conditioning technology field specifically is a simple and easy light-duty air conditioner.
Background
At present, the air conditioning units in the market are heavy in weight due to the fact that energy efficiency and stable operation are considered, and the air conditioning units comprise more parts such as a gas-liquid separator and the like, and are not suitable for places such as ships or automobiles and the like which have requirements on the weight of the air conditioning units. If the accessories are omitted, the unit is unstable in operation and easy to break down.
SUMMERY OF THE UTILITY MODEL
The utility model aims at overcoming the not enough of existence among the prior art, providing a simple and easy light air conditioner, it is more to have solved the accessories that the air conditioning unit on the existing market contains, leads to unit weight heavier, is not suitable for boats and ships or car etc. to the higher problem of air conditioning unit weight requirement.
In order to realize the purpose, the utility model discloses a technical scheme be:
a simple light air conditioner comprises a compressor, an evaporator, a condenser, a drying filter, a throttle pipe, a cold air blower and a heat exhaust blower, wherein an inlet of the compressor is connected with an outlet of the evaporator through a pipeline; the outlet of the compressor is connected with the inlet of the condenser through a pipeline; the outlet of the condenser is connected with the inlet of the drying filter through a pipeline; the outlet of the drying filter is connected with the inlet of the throttling pipe through a pipeline; the outlet of the throttle pipe is connected with the inlet of the evaporator through a pipeline; the pipelines among the compressor, the evaporator, the condenser, the drying filter and the throttle pipe are all communicated; condensing agents are arranged in pipelines among the compressor, the evaporator, the condenser, the drying filter and the throttle pipe; the condensing agent can volatilize at normal temperature; the cold air blower is arranged on one side of the evaporator; the hot air exhaust machine is arranged on one side of the condenser.
Further, the evaporator is a finned evaporator; the condenser is a finned condenser.
Furthermore, the cold air blower, the compressor and the air exhaust blower are all connected with an external power supply through circuits; the external power supply provides working power for the cold air blower, the compressor and the air exhaust blower.
Further, the throttle pipe is a wavy capillary pipe.
When the simple light air conditioner works, an external power supply connected with a compressor, a cold air blower and a heat exhaust blower is connected, the compressor, the cold air blower and the heat exhaust blower all start to work, an inlet of the compressor sucks gaseous condensing agent under normal temperature and normal pressure in a pipeline between an evaporator and the compressor through pipelines, the sucked gaseous condensing agent is heated and pressurized, the gaseous condensing agent heated and pressurized by the compressor is introduced into a fin-type condenser through a pipeline from an outlet of the compressor, the gaseous condensing agent in a high-temperature and high-pressure state is rapidly liquefied into liquid high-temperature and high-pressure condensing agent after being introduced into the fin-type condenser (the temperature is consistent with the external temperature), the heat emitted during liquefaction is exhausted to the outside through the heat exhaust blower, the liquid condensing agent in the high-temperature and high-pressure state enters a drying filter through a pipeline from an outlet of the condenser, and a water absorbent is arranged in the drying filter, the water in the high-temperature high-pressure liquid condensing agent can be fully absorbed, and the absorbed liquid condensing agent enters the throttling pipe from the outlet of the drying filter, and the throttling pipe is of a wavy capillary structure, and the pipeline of the throttling pipe is long and has small flow, so that the high-temperature liquid condensing agent can be radiated in the throttling pipe to become the liquid condensing agent at normal temperature and normal pressure, and then the liquid condensing agent flows into the evaporator from the outlet of the throttling pipe through the pipeline.
The utility model has the advantages of being simple in structure and convenient in installation, the part of adoption is few, except that cold wind forced draught blower, compressor and exhaust fan, other be pipeline class structure, and the overall quality is little, is applicable to the place that air conditioning unit requirements for quality are high such as boats and ships or car.
Drawings
Fig. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic view of the outdoor installation structure of the indoor unit of the present invention;
in the figure: 1. the system comprises a cold air blower, 2, an evaporator, 3, a throttle pipe, 4, a compressor, 5, a drying filter, 6, a heat exhaust blower, 7 and a condenser.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
The simple and light air conditioner as shown in fig. 1 comprises a compressor 4, an evaporator 2, a condenser 7, a drying filter 5, a throttle pipe 3, a cold air blower 1 and a hot air exhaust blower 6, wherein an inlet of the compressor 4 is connected with an outlet of the evaporator 2 through a pipeline; the outlet of the compressor 4 is connected with the inlet of the condenser 7 through a pipeline; the outlet of the condenser 7 is connected with the inlet of the dry filter 5 through a pipeline; the outlet of the dry filter 5 is connected with the inlet of the throttle pipe 3 through a pipeline; the outlet of the throttle pipe 3 is connected with the inlet of the evaporator 2 through a pipeline; the pipelines among the compressor 4, the evaporator 2, the condenser 7, the drying filter 5 and the throttle pipe 3 are all communicated; condensing agents are arranged in pipelines among the compressor 4, the evaporator 2, the condenser 7, the drying filter 5 and the throttle pipe 3; the condensing agent can volatilize at normal temperature; the cold air blower 1 is arranged on one side of the evaporator 2; the heat exhausting fan 6 is arranged on one side of the condenser 7; the evaporator 2 is a finned evaporator; the condenser 7 is a finned condenser; the cold air blower 1, the compressor 4 and the air exhaust blower 6 are all connected with an external power supply through circuits; the external power supply provides working power for the cold air blower 1, the compressor 4 and the hot air exhaust machine 6; the throttle pipe 3 is a wavy capillary pipe.
When the simple light air conditioner is installed, except that the evaporator 2 and the cold air blower 1 are installed indoors, other structures are installed outdoors.
When the simple light air conditioner works, an external power supply connected with a compressor 4, a cold air blower 1 and a hot air exhaust blower 6 is connected, the compressor 4, the cold air blower 1 and the hot air exhaust blower 6 all start to work, an inlet of the compressor 4 sucks in the evaporator 2 and a gaseous condensing agent under normal temperature and normal pressure in a pipeline between the evaporator 2 and the compressor 4 through pipelines, the sucked gaseous condensing agent is heated and pressurized, the gaseous condensing agent heated and pressurized by the compressor 4 is introduced into a finned condenser 7 through a pipeline from an outlet of the compressor 4, the gaseous condensing agent in a high-temperature and high-pressure state is rapidly liquefied into a liquid high-temperature and high-pressure condensing agent after being introduced into the finned condenser 7 (the temperature is consistent with the external temperature), the heat emitted during liquefaction is exhausted to the outdoor through the hot air exhaust blower 6, the liquid condensing agent in the high-temperature and high-pressure state enters a drying filter 5 through the pipeline from an outlet of the condenser, the water absorbent is arranged in the drying filter 5, water in the passing high-temperature and high-pressure liquid condensing agent can be fully absorbed, and then the absorbed water enters the throttle pipe 3 from the outlet of the drying filter 5, because the throttle pipe 3 is of a wavy capillary structure, the pipeline of the throttle pipe 3 is long and has small flow, so that the high-temperature and high-pressure liquid condensing agent can be radiated and depressurized in the throttle pipe 3 to become the liquid condensing agent at normal temperature and normal pressure, and then the liquid condensing agent flows into the evaporator 2 from the outlet of the throttle pipe 3 through the pipeline, and because the liquid condensing agent at normal temperature and normal pressure can volatilize at normal temperature and normal pressure, heat in the surrounding air is taken away during volatilization, so that the surrounding air becomes cold air, and then the cold air is discharged to other indoor corners through the cold air.
The utility model has the advantages of being simple in structure and convenient in installation, the part of adoption is few, except that cold wind forced draught blower 1, compressor 4 and exhaust fan 6, other be pipeline class structure, and the overall quality is little, is applicable to places such as boats and ships or car that the requirement for quality is high to air conditioning unit.
The above-described embodiments are illustrative of the present invention and not restrictive, it being understood that various changes, modifications, substitutions and alterations may be made herein without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims (4)

1. The simple light air conditioner is characterized by comprising a compressor (4), an evaporator (2), a condenser (7), a drying filter (5), a throttle pipe (3), a cold air blower (1) and a hot air exhaust machine (6), wherein an inlet of the compressor (4) is connected with an outlet of the evaporator (2) through a pipeline; the outlet of the compressor (4) is connected with the inlet of the condenser (7) through a pipeline; the outlet of the condenser (7) is connected with the inlet of the drying filter (5) through a pipeline; the outlet of the drying filter (5) is connected with the inlet of the throttle pipe (3) through a pipeline; the outlet of the throttle pipe (3) is connected with the inlet of the evaporator (2) through a pipeline; the pipelines among the compressor (4), the evaporator (2), the condenser (7), the drying filter (5) and the throttle pipe (3) are communicated; condensing agents are arranged in pipelines among the compressor (4), the evaporator (2), the condenser (7), the drying filter (5) and the throttle pipe (3); the condensing agent can volatilize at normal temperature; the cold air blower (1) is arranged on one side of the evaporator (2); the heat exhausting fan (6) is arranged on one side of the condenser (7).
2. The simple and light air conditioner of claim 1, wherein the evaporator (2) is a finned evaporator; the condenser (7) is a finned condenser.
3. The simple light air conditioner as claimed in claim 1, wherein the cold air blower (1), the compressor (4) and the hot air exhaust machine (6) are all connected with an external power supply through circuits; the external power supply provides working power for the cold air blower (1), the compressor (4) and the hot air exhaust machine (6).
4. The simple and light air conditioner as recited in claim 1, wherein the throttle pipe (3) is a corrugated capillary tube.
CN201921167428.XU 2019-07-24 2019-07-24 Simple light air conditioner Active CN210320719U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921167428.XU CN210320719U (en) 2019-07-24 2019-07-24 Simple light air conditioner

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921167428.XU CN210320719U (en) 2019-07-24 2019-07-24 Simple light air conditioner

Publications (1)

Publication Number Publication Date
CN210320719U true CN210320719U (en) 2020-04-14

Family

ID=70125199

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921167428.XU Active CN210320719U (en) 2019-07-24 2019-07-24 Simple light air conditioner

Country Status (1)

Country Link
CN (1) CN210320719U (en)

Similar Documents

Publication Publication Date Title
CN103162475B (en) Heat dissipation circulating system of air conditioner
CN201285125Y (en) Heat pipe and heat pump combined vaporization cooling air-conditioning unit
CN201811498U (en) Double heat source type multi-compression high temperature heat pump
CN102353106A (en) Filler-tubular recycling compact evaporative cooling air conditioning unit
CN211977524U (en) Drying water source heat pump system based on waste heat recovery
CN210320719U (en) Simple light air conditioner
CN202254036U (en) Recycling compact evaporative cooling air conditioning unit
CN201903127U (en) Separated high-efficiency heat pipe heat exchanger with refrigerating function
CN203116175U (en) Large space air-conditioner device of valve hall of convertor station of transmission project
CN203323229U (en) Air energy water heater with floor heating function
CN202757207U (en) Split type air conditioner
CN203928493U (en) Earth source heat pump
KR20130047567A (en) Heat exchanger unit having waste heat withdrawal apparatus
CN108826952B (en) Integral dryer unit
CN202853106U (en) Air energy water heater
CN201897276U (en) Separating heat pipe exchanger with refrigeration function
CN101576297A (en) Big supercooling degree completely fresh air air processing machine set
CN215765367U (en) Directly-heated heating device
CN211625560U (en) Domestic mobile air conditioner externally connected with cold and heat sources
CN204555761U (en) A kind of heat exchanger for air-conditioning
CN103234263A (en) Energy-saving device for atomization of condensate water
CN210088979U (en) Air conditioner fresh air heat recovery system utilizing air conditioner fresh air heat recovery principle
CN220355614U (en) Solar auxiliary heat exchange unit
CN219698268U (en) Functional air-cooled heat pump air conditioning system with powerful electric box for heat dissipation
CN217329964U (en) Heating system of solar air source heat pump air heater

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant