WO2013159563A1 - 一种空调系统送风方式 - Google Patents

一种空调系统送风方式 Download PDF

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Publication number
WO2013159563A1
WO2013159563A1 PCT/CN2013/000411 CN2013000411W WO2013159563A1 WO 2013159563 A1 WO2013159563 A1 WO 2013159563A1 CN 2013000411 W CN2013000411 W CN 2013000411W WO 2013159563 A1 WO2013159563 A1 WO 2013159563A1
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WO
WIPO (PCT)
Prior art keywords
air
conditioning system
pipe
air supply
moving
Prior art date
Application number
PCT/CN2013/000411
Other languages
English (en)
French (fr)
Inventor
李海
Original Assignee
Li Hai
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 Li Hai filed Critical Li Hai
Publication of WO2013159563A1 publication Critical patent/WO2013159563A1/zh

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F7/00Ventilation
    • F24F7/04Ventilation with ducting systems, e.g. by double walls; with natural circulation
    • F24F7/06Ventilation with ducting systems, e.g. by double walls; with natural circulation with forced air circulation, e.g. by fan positioning of a ventilator in or against a conduit
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/70Control systems characterised by their outputs; Constructional details thereof
    • F24F11/80Control systems characterised by their outputs; Constructional details thereof for controlling the temperature of the supplied air
    • F24F11/81Control systems characterised by their outputs; Constructional details thereof for controlling the temperature of the supplied air by controlling the air supply to heat-exchangers or bypass channels

Definitions

  • the utility model relates to an air conditioning system, that is, an air conditioning system air supply mode capable of moving an air outlet to a required area.
  • the air supply system of the air conditioning system is: The wind is blown by the electric fan to blow the air into the air space of the indoor unit of the air conditioning system.
  • This air supply method causes a temperature difference between the area near the air outlet and the area far from the air outlet. Therefore, when people are moving away from the wind outlet, in order to get the desired air temperature, the air conditioning system must generate more energy than the energy required by people in the vicinity of the air outlet to offset the long distance transmission. Energy consumption during the wind. Summary of the invention
  • the utility model provides an air conditioning system air supply mode that can move the air outlet.
  • the technical solution provided by the utility model is as follows: It is an air conditioning system air supply system which is composed of an air compressor, an incubator, an air supply pipe, a moving wind window and the like in an existing air conditioning system.
  • the evaporator (3) in the air conditioning system is fixed in the incubator (2) tank, and the refrigerant inflow pipe (31) and the refrigerant outflow pipe (32) penetrate the casing and the evaporator of the incubator (2) (3) ) Connected.
  • the upper part of the incubator (2) has an air outlet pipe (22) and an incubator (2) inside the box:
  • the lower part of the case of the incubator (2) has an intake pipe (21) communicating with the incubator (2).
  • the moving window (5) is built by the base (52) and the bracket (51).
  • the moving window intake pipe (54) is connected to the moving window (5); the air inlet (53) is opened in the moving window (5).
  • the working principle is: air compressor U) compresses air, compressed air passes through air compressor outlet pipe (11), intake pipe (21) enters incubator (2) box; meanwhile, air conditioner system outdoor unit will be cooled
  • the agent flows through the evaporator (3) through the refrigerant inflow pipe (31), and then flows back to the outdoor unit of the air conditioning system by the refrigerant outflow pipe (32).
  • the refrigerant flows through the evaporator (3), it exchanges energy with the compressed air in the incubator (2) tank.
  • the energy exchanged compressed air enters the moving wind window (5) through the air outlet pipe (22), the air supply pipe (4), and the moving wind window intake pipe (54), and is then released into the air by the air outlet (53), thereby achieving
  • the air outlet of the air conditioning system can be moved to the vicinity of people's active areas.
  • the utility model has the beneficial effects of: reducing the energy consumption in the air supply process of the air conditioning system by moving the air outlet of the air conditioning system to the vicinity of the required area of the air conditioner, thereby achieving the purpose of saving energy.
  • FIG. 1 is a schematic view of a combination of devices of the present invention.
  • FIG. 2 is a schematic illustration of the construction of an incubator (2) of one of the devices of the present invention.
  • Figure 3 is a schematic view showing the construction of a moving wind window (5) of one of the devices of the present invention.
  • Air compressor Air compressor outlet pipe; 2. Incubator; 21. Intake pipe; 22. Outlet pipe: 3. Evaporator; 31. Refrigerant inflow pipe; Tube; 4. Air supply pipe; 5. Moving wind window; 51. Bracket: 52. Base; 53. Air outlet; 54. Moving windshield intake pipe.
  • the evaporator (: 0 is fixed in the incubator (2), the refrigerant inflow pipe (31), the refrigerant outflow pipe (32) penetrates the incubator (2)
  • the casing is connected with the evaporator (3) to form a passage of the refrigerant of the air conditioning system;
  • the upper part of the casing of the incubator (2) has an air outlet pipe (22), and the lower part of the casing of the heat preservation box (2) has an intake pipe (21);
  • the intake pipe (21) communicates with the incubator (2), and the heat preservation ⁇ (2) communicates with the air outlet pipe (22) to form part of the passage of the compressed air.
  • the moving wind window (5) is erected by a base (52) and a bracket (51).
  • the moving window intake pipe (54) is connected to the moving window (5); the air inlet (53) is opened in the moving window (5).
  • a refrigerant inflow pipe (31), a refrigerant outflow pipe (32) penetrates the casing of the incubator (2), and protrudes outside the incubator (2); air compression of the air compressor (1)
  • the air outlet pipe (11) is connected to the intake pipe (21); the intake pipe (21) is connected to the incubator (2); the incubator (2) is connected to the air outlet pipe (22); the air outlet pipe (22) is connected to the air supply pipe (4);
  • the air pipe (4) is connected to the moving wind window intake pipe (54); the moving wind window intake pipe (54) is connected to the air outlet (53) to be combined into an air supply system air supply passage.
  • the mountain base (52) and the bracket (51) are set up.

Abstract

一种能够将空调系统出风口移动的空调系统送风方式。它是在现有的空调系统中增加由空气压缩机(1),保温箱(2),送气管(4),移动风窗(5)等装置组合成的空调系统送风方式。其工作方式是:空气压缩机(1)将空气压缩,送入保温箱(2)里,压缩空气在保温箱里与安装在保温箱内的蒸发器(3)进行能量交换;经过能量交换的压缩空气经送气管(4)到达移动出风窗(5)后,再通过出风口(53)释放到空气中,从而达到移动空调系统出风口到需要的区域附近,减少现有的空调系统向较远区域送风过程中的能耗,达到节约能源的目的。

Description

一种空调系统送风方式 所属技术领域
本实用新型涉及空调系统, 即: 可以将出风口移动到需要的区域的空调系统送风方式。 背景技术
曰前, 空调系统的送风方式是: 由电风扇转动产生风经空调系统室内装置出风口吹入其 作用空间内。这种送风方式造成了出风口附近的区域与离出风口远的区域的温度差异。因此, 当人们在离出风口远的区域活动时, 为了得到希望得到的空气温度, 就必须让空调系统产生 比人们在出风口附近区域活动时所需要的能量更多的能量来抵消远距离送风过程中的能耗。 发明内容
为克服现有的空调系统这种送风方式的不足, 本实用新型提供一种可以将出风口移动的 空调系统送风方式。
本实用新型提供的技术方案是: 它是在现有的空调系统中增加由空气压缩机, 保温箱, 送气管, 移动风窗等装置组合成的空调系统送风方式。 将空调系统中的蒸发器(3 ) 固定 在保温箱 (2)箱内, 制冷剂流入管 (31 ) 和制冷剂流出管 (32) 穿透保温箱 (2)的壳体与蒸发 器 (3 ) 连通。 保温箱 (2)的壳体上部有出气管 (22) 与保温箱 (2)箱内连通: 保温箱 (2)的壳 体下部有进气管 (21)与保温箱 (2)箱内连通。
移动风窗 (5) 由基座 (52) , 支架 (51 )树立。 移动风窗进气管 (54) 与移动风窗 (5) 连通; 在移动风窗 (5) 的箱体开有出风口 (53 ) 。
其工作原理是: 空气压縮机 U ) 将空气压縮, 压缩空气通过空气压缩机出气管 (11 ) , 进气管(21 )进入保温箱(2 )箱里; 同时, 空调系统室外机将制冷剂通过制冷剂流入管(31 ) 流经蒸发器(3)后, 再由制冷剂流出管 (32 )流回空调系统室外机。 制冷剂流经蒸发器(3) 时会与保温箱(2)箱里的压缩空气进行能量交换。经过能量交换的压缩空气经出气管(22)、 送气管 (4 ) 、 移动风窗进气管 (54 ) 进入移动风窗 (5) 内, 再由出风口 (53) 释放到空气 中, 从而达到空调系统出风口可以移动到人们活动区域附近的目的。
本实用新型的有益效果是: 通过将空调系统出风口移动到人们需要区域附近, 从而减少 空调系统送风过程中的能耗, 达到节约能源的目的。
附图说明
图 1是本实用新型的装置组合示意图。
图 2是本实用新型的装置之一保温箱 (2) 的构造示-意图。
图 3是本实用新型的装置之一移动风窗 (5 ) 的构造示意图。
图中: 1.空气压缩机; 11.空气压縮机出气管; 2.保温箱; 21.进气管; 22.出气管: 3.蒸发器; 31.制冷剂流入管; 32.制冷剂流出管; 4.送气管; 5.移动风窗; 51.支架: 52.基座; 53.出风口; 54.移动风窗进气管。
具体实施方式
本实用新型具体实施方式是: 在图 2中, 蒸发器 (:0 固定在保温箱 (2)内, 制冷剂流入 管 (31 ) , 制冷剂流出管 (32 ) 穿透保温箱 (2)的壳体与蒸发器 (3) 连通, 构成空调系统制 冷剂的通道; 保温箱 (2)的壳体上部有出气管(22 ),保温箱 (2)的壳体下部有进气管 (21) ; 进 气管 (21)连通保温箱 (2) , 保温筘 (2)连通出气管 (22 ) 构成压縮空气的通道的一部分。
1
替换页 (细则第 26条) 在图 3中, 移动风窗 (5) 由基座 (52) , 支架 (51)树立。 移动风窗进气管 (54) 与移 动风窗 (5) 连通; 在移动风窗 (5) 的箱体开有出风口 (53) 。
在图 1中, 制冷剂流入管 (31) , 制冷剂流出管 (32) 穿透保温箱 (2)的壳体, 伸出在保 温箱 (2)外; 空气压缩机 (1) 的空气压缩机出气管 (11) 连通进气管 (21) ; 进气管 (21) 连通保温箱(2) ; 保温箱(2)连通出气管(22) ; 出气管(22)连通送气管 (4); 送气管 (4) 连通移动风窗进气管(54); 移动风窗进气管(54)连通出风口 (53) 组合成为空调系统送风通 道。 移动风窗 (5) 山基座 (52) , 支架 (51) 树立。
2
替换页 (细则第 26条)

Claims

权 利 要 求 书
1.一种空调系统送风方式, 它是在现有的空调系统中增加以压缩空气为风源的空调系统送风 组合装置, 其特征是: 空气压缩机的空气压缩机出气管连通进气管, 进气管连通保温箱; 蒸 发器安装在保温箱内; 保温箱连通出气管; 出气管连通送气管; 送气管连通移动风窗进气管。
2.根据权利要求 1所述的空调系统送风方式, 其特点是: 蒸发器安装在保温箱内。
3.根据权利要求 1所述的空调系统送风方式, 其特点是: 送气管是可以移动的。
4.根据权利要求 1所述的空调系统送风方式, 其特点是: 出风口安装在可移动机座上。
5.根据权利要求 1所述的空调系统送风方式, 其特点是: 空气压缩机为风的来源的动力装置。
3
替换页 (细则第 26条)
PCT/CN2013/000411 2012-04-23 2013-04-10 一种空调系统送风方式 WO2013159563A1 (zh)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103267341A (zh) * 2013-05-31 2013-08-28 青岛海尔空调电子有限公司 一种风嘴结构及风管机

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN202675550U (zh) * 2012-04-23 2013-01-16 李海 一种空调系统送风方式

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FR2693258A1 (fr) * 1992-07-06 1994-01-07 Bontami Const Isothermiques Cellule de refroidissement et/ou de congélation rapide programmable.
CN2285438Y (zh) * 1996-11-08 1998-07-01 修永明 中央移动式空调器
JP2001004167A (ja) * 1999-06-18 2001-01-12 Fujitsu General Ltd 除湿機
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CN201314652Y (zh) * 2008-08-08 2009-09-23 李代繁 节能环保供热全新风空调器
CN201429157Y (zh) * 2009-06-08 2010-03-24 施春建 一种分体式热水空调
CN202675550U (zh) * 2012-04-23 2013-01-16 李海 一种空调系统送风方式

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2693258A1 (fr) * 1992-07-06 1994-01-07 Bontami Const Isothermiques Cellule de refroidissement et/ou de congélation rapide programmable.
CN2285438Y (zh) * 1996-11-08 1998-07-01 修永明 中央移动式空调器
JP2001004167A (ja) * 1999-06-18 2001-01-12 Fujitsu General Ltd 除湿機
CN101144663A (zh) * 2006-09-13 2008-03-19 苏大庆 风力冰箱、风力冷库、风力空调及风力制冷系统
CN201314652Y (zh) * 2008-08-08 2009-09-23 李代繁 节能环保供热全新风空调器
CN201429157Y (zh) * 2009-06-08 2010-03-24 施春建 一种分体式热水空调
CN202675550U (zh) * 2012-04-23 2013-01-16 李海 一种空调系统送风方式

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103267341A (zh) * 2013-05-31 2013-08-28 青岛海尔空调电子有限公司 一种风嘴结构及风管机
CN103267341B (zh) * 2013-05-31 2015-07-29 青岛海尔空调电子有限公司 一种风嘴结构及风管机

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