TWM326135U - Air conditioning structure capable of promoting cold air efficiency with nebulized water - Google Patents

Air conditioning structure capable of promoting cold air efficiency with nebulized water Download PDF

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Publication number
TWM326135U
TWM326135U TW96209445U TW96209445U TWM326135U TW M326135 U TWM326135 U TW M326135U TW 96209445 U TW96209445 U TW 96209445U TW 96209445 U TW96209445 U TW 96209445U TW M326135 U TWM326135 U TW M326135U
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TW
Taiwan
Prior art keywords
water
air
pipe
fins
condenser
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TW96209445U
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Chinese (zh)
Inventor
Yu-Lieh Wu
Shou-Ping Hsu
Win-Jet Luo
Kuang-Cheng Yu
Jauh-Shyong Chen
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Nat Chin Yi University Of Tech
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Application filed by Nat Chin Yi University Of Tech filed Critical Nat Chin Yi University Of Tech
Priority to TW96209445U priority Critical patent/TWM326135U/en
Publication of TWM326135U publication Critical patent/TWM326135U/en

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  • Devices For Blowing Cold Air, Devices For Blowing Warm Air, And Means For Preventing Water Condensation In Air Conditioning Units (AREA)

Description

M326135 ,八、新型說明: .【新型所屬之技術領域】 本㈤作係一種以霧化水提升冷氣效益之空調構造,特 別疋扣種應用空調系統所排之冷凝水,使之產生霧化水 並以輔助蒸發器令冷房有更佳冷氣之效果者。 【先前技術】 - 按,冷氣空調機係目前家庭、公司行號必備之家電, _ f因此有各式因應不同環境和需求的空調機,例如:窗型冷 氣機,分離式冷氣機及移動式冷氣機,然不論何種冷氣空 調構造,其原理均係利用冷凝管與排熱管的冷熱交換原理 來達成其輸出冷氣的效果,如此在使用的過程中,冷凝管 '就會不斷的凝結水份,因此不論何種空調構造必^要將 .冷凝水排出。 ' 傳統之空調構造,均係將所生之冷凝水經排水裝置, 將冷凝水以排水管輸出,此冷凝水排出後導引到室外,就 鲁成為廢水不再做二次利用,造成水資源之浪費。 【新型内容】 ' 本^作係解決習用空調構造之無法使冷凝水再次利用 及降低室内溫度需較長時間之問題。 本創作係提供—㈣㈣水提升冷 造,係包括有: 皿又工凋構 數以管路連接&縮機,管路外設有複 數,片H扇’設置於面向冷凝器複數 膨脹闕,以管路連接上述冷凝器;蒸發器,㈣路連=上 6 M326135 官路外設有複數鰭片;第二風扇M326135, VIII, new description: . [New technical field] This (5) is an air-conditioning structure that uses atomized water to enhance the efficiency of air-conditioning, especially the condensed water discharged from the air-conditioning system, which produces atomized water. And with the auxiliary evaporator to make the cold room have better effect of cold air. [Prior Art] - Press, air-conditioning system is the home appliance and the company's current number of home appliances, _ f therefore there are various types of air conditioners that respond to different environments and needs, such as: window air conditioners, split air conditioners and mobile Air-conditioner, however, regardless of the air-conditioning structure, the principle is to use the principle of cold-heat exchange between the condenser and the heat-dissipating tube to achieve the effect of outputting cold air. Thus, during use, the condenser will continuously condense water. Therefore, regardless of the air conditioning structure, the condensate must be discharged. 'The traditional air-conditioning structure is to pass the condensed water produced by the drainage device, and the condensed water is discharged as a drain pipe. After the condensed water is discharged, it is led to the outside, and the waste water is no longer used for secondary use, resulting in water resources. Waste. [New content] 'This is a problem that solves the problem that the conventional air conditioning structure cannot reuse the condensed water and reduce the indoor temperature for a long time. The creation department provides - (4) (4) water lifting and cold-making, including: the number of vessels and the number of pipes to be connected with the pipe and the shrinking machine, the pipe is provided with a plurality of pipes, and the piece of H-fan is set to face the condenser expansion 阙Connect the above condenser with pipeline; evaporator, (four) road connection = upper 6 M326135 outside the official road with multiple fins; second fan

上述之箱體内另設有一水位感應器。 上述之霧化水管路另設有一鼓風扇。 -述膨脹閥與壓縮機,管鲜 β置於 管連 一霧 本創作具有下列之優點: 回收聚集再利 1·本創作係將冷凝器所產生之冷凝水回 2·本創作所產生之霧化水可更有效降低室内溫度,達 到更佳之冷氣效果。 • 3·本創作可使室内保持一定濕度。 -【實施方式】 首先,如第一圖所示,本創作係包括有: 壓縮機(1)。 鲁 冷凝器(2),以管路(Α)連接壓縮機(1),管路(a) 外設有複數鰭片(21)。 第一風扇(3),設置於面向冷凝器(2)複數鰭片(21) 之位置。 膨脹閥(4),以管路(Α)連接上述冷凝器。 蒸發器(5),以管路(Α1)連接上述膨脹閥(4)與 、壓縮機(1),管路(Α1 )外設有複數鰭片(51 )。 , 第二風扇(6) ’設置於面向蒸發器(5)複數鰭片(51) 之位置。 7 M326135 ^ 一箱體(7)以一水管(71)連接上述冷凝器(2), •箱體(7)内設有一震盪元件(72),另設有一水位感應器 ^73),箱體(7)另連接一霧化水管路(74),該霧化水 =路(74)之出口端(741)靠近上述蒸發器(5),又該 務化水管路(74)内另設有一鼓風扇(75)。 . 使用時,如第二圖所示,冷媒由低溫低壓之乾飽和蒸 &狀態進入壓縮機(1),啟動壓縮機(1)作動,將冷媒 _ 、=由壓縮機(丨)之絕熱等壓縮過程,使冷媒之溫度及壓力 提升到面溫高壓之過熱蒸器狀態,當高溫高壓之過熱蒸氣 狀態經由管路(Α)被導入冷凝器(2),進行冷卻,使冷 媒面放熱一面冷凝成飽和或過冷高溫高壓之液體,而管 路(A)外没有複數鰭片(21 ),使熱氣傳導分佈於鰭片(21) •上,此時藉由面向鰭片(21)之第一風扇(3)將熱氣吹送 至室外,而管路(A)内之冷凝液體因管路(A)外之溫度 較同,而形成冷凝水滴,該冷凝水滴,滴落至冷凝器(2 ) 鲁底部形成冷凝水(B ),而經水管(71 )匯流聚集於箱體(7 ) 内。 ^此時’冷凝器(2)之管路(A)内之飽和或過冷高溫 咼壓之液體,被導入膨脹閥(4 )降壓,而其中少部份液態 冷媒被蒸發成汽態,成為低溫低壓之液、汽混合狀態,該 降壓之目的,乃是為了降低冷媒之蒸發溫度,當低溫低壓 、之液、’'混合之液態冷媒經由管路(A1 )流入蒸發器($ ), 利用相變化及冷媒之高溫潛熱值,液態冷媒於蒸發器(5) 吸收進入蒸發器(5)之空氣熱量而液態冷媒蒸發成為為低 8 M326135 — 低壓之飽和恶冷媒,其低溫傳導至管路(Μ)外所設 *複數鰭片(51),再以設置於面向蒸發器(5)複數鰭片(51) 位置之第一風扇(6) ’將低溫吹送至室内,以使室内空氣 循環,以降低室内之溫度。而同時間,箱體(7)内以水管 ·( 71)連接上述冷凝器(2 ),所收集之冷凝水(B)其集 ’水量超過水位感應器(73),啟動震盪元件(72),該震 盪π件(72)運用超音波震盪,使冷凝水形成霧化水 (c),該霧化水(c)經過霧化水管路(74),利用霧化 水管路(74)内設有之鼓風扇(75),將霧化水(c)吹送 至矛备化水管路(74)之出口端(741),該出口端(741) 罪近蒸發器(5),而第二風扇(6)吹送風於蒸發器 ,之複數籍片(51),亦將霧化水(C)帶向蒸發器(5), ,使霧化水(C)通過蒸發器(5),而令冷房有更佳的冷氣 效果’有效降低室内之溫度。 【圖式簡單說明】 • 第一圖係本創作平面示意圖。 第二圖係本創作實施狀態圖。 【主要元件符號說明】 (1) 壓縮機 (2) 冷凝器 (21) 鰭片 (3) 第一風扇 (4) 膨脹閥 (5) 蒸發器 (51) 鰭片 (6) 弟二風扇 (7) 箱體 (71) 水管 (72) 震盪元件 (73) 水位感應器 M326135 (74) 霧化水管路 (741) 出口端 (75) 鼓風扇 (A) 管路 (Al) 管路 (B) 冷凝水 (C) 霧化水A water level sensor is additionally provided in the above box. The atomized water pipe mentioned above is further provided with a blower fan. - Explain the expansion valve and the compressor, the tube fresh β is placed in the tube and the fog has the following advantages: Recycling and gathering and then benefiting 1. The creation system will return the condensed water produced by the condenser to the fog produced by the creation. Water can reduce indoor temperature more effectively and achieve better air-conditioning effect. • 3. This creation allows the room to maintain a certain humidity. - [Embodiment] First, as shown in the first figure, the creation system includes: a compressor (1). Lu condenser (2), connected to the compressor (1) by a pipeline (Α), and a plurality of fins (21) outside the pipeline (a). The first fan (3) is disposed at a position facing the plurality of fins (21) of the condenser (2). The expansion valve (4) is connected to the condenser by a line (Α). The evaporator (5) is connected to the expansion valve (4) and the compressor (1) by a pipe (Α1), and a plurality of fins (51) are disposed outside the pipe (Α1). The second fan (6)' is disposed at a position facing the plurality of fins (51) of the evaporator (5). 7 M326135 ^ A tank (7) is connected to the condenser (2) by a water pipe (71). The casing (7) is provided with a oscillating member (72) and a water level sensor ^73). (7) further connecting an atomizing water line (74), the atomizing water=the outlet end (741) of the road (74) is close to the evaporator (5), and the auxiliary water line (74) is further provided with a Drum fan (75). When in use, as shown in the second figure, the refrigerant enters the compressor (1) from the dry-saturated state of the low-temperature and low-pressure, and starts the compressor (1) to actuate, and the refrigerant _, = is insulated by the compressor (丨) During the compression process, the temperature and pressure of the refrigerant are raised to the superheated steamer state of the surface temperature and high pressure. When the superheated vapor state of the high temperature and high pressure is introduced into the condenser (2) via the pipeline (Α), the cooling is performed to condense the heat of the refrigerant surface. Saturated or supercooled high temperature and high pressure liquid, and there is no multiple fins (21) outside the pipeline (A), so that the hot gas is distributed on the fins (21) • at this time, by the fins (21) A fan (3) blows hot air to the outside, and the condensed liquid in the pipeline (A) is condensed by the temperature outside the pipeline (A), and the condensed water droplets drip to the condenser (2) The bottom of the Lu forms condensed water (B), and the water pipe (71) merges and collects in the tank (7). ^ At this time, the saturated or supercooled high temperature pressurized liquid in the pipeline (A) of the condenser (2) is introduced into the expansion valve (4) to reduce the pressure, and a small part of the liquid refrigerant is evaporated into a vapor state. It is a liquid and vapor mixed state of low temperature and low pressure. The purpose of this pressure reduction is to reduce the evaporation temperature of the refrigerant. When the low temperature and low pressure liquid, the ''mixed liquid refrigerant flows into the evaporator via the pipeline (A1) ($) Using the phase change and the high temperature latent heat value of the refrigerant, the liquid refrigerant absorbs the air heat entering the evaporator (5) in the evaporator (5) and the liquid refrigerant evaporates into a low 8 M326135 - low pressure saturated refrigerant, which is conducted to the tube at a low temperature. A plurality of fins (51) are provided outside the road (Μ), and the first fan (6) disposed at a position facing the plurality of fins (51) of the evaporator (5) is blown to the room to make the indoor air Cycle to reduce the temperature inside the room. At the same time, the tank (7) is connected to the condenser (2) by a water pipe (71), and the collected condensed water (B) collects the amount of water exceeding the water level sensor (73), and starts the oscillating element (72). The oscillating π piece (72) is ultrasonically oscillated, so that the condensed water forms atomized water (c), and the atomized water (c) passes through the atomizing water line (74), and is built in the atomizing water line (74). There is a blower fan (75) that blows atomized water (c) to the outlet end (741) of the spear-forming water supply line (74), the outlet end (741) is close to the evaporator (5), and the second fan (6) blowing a plurality of sheets (51) of the wind on the evaporator, and also bringing the atomized water (C) to the evaporator (5), so that the atomized water (C) passes through the evaporator (5), The cold room has better air-conditioning effect' to effectively reduce the indoor temperature. [Simple description of the diagram] • The first diagram is a schematic diagram of the creation. The second figure is a state diagram of the implementation of this creation. [Main component symbol description] (1) Compressor (2) Condenser (21) Fin (3) First fan (4) Expansion valve (5) Evaporator (51) Fin (6) Younger fan (7) ) Housing (71) Water pipe (72) Oscillating element (73) Water level sensor M326135 (74) Atomizing water line (741) Outlet end (75) Blowing fan (A) Line (Al) Line (B) Condensation Water (C) atomized water

Claims (1)

M326135 九 申請專利範圍: 1· 一種以霧化水提升冷氣效益之空調構造,係包括有: 壓縮機; 々一冷凝器,以管路連接壓縮機,管路外設有複數鰭片; •第一風扇,設置於面向冷凝器複數鰭片之位置; • 膨脹閥,以管路連接上述冷凝器; ’ 蒸發器,以管路連接上述膨脹閥與壓縮機,管路 - 有複數鰭片; 口M326135 Nine patent application scope: 1. An air conditioning structure that uses atomized water to enhance the efficiency of air-conditioning, including: a compressor; a condenser, connected to the compressor by a pipeline, and a plurality of fins outside the pipeline; a fan disposed at a position facing the plurality of fins of the condenser; • an expansion valve connected to the condenser by a pipe; 'an evaporator connecting the expansion valve and the compressor with a pipe, the pipe - having a plurality of fins; 置; 器,箱體 該霧化水 第二風扇,設置於面向蒸發器複數鰭片之位 %其特徵在於:一箱體以一水管連接上述冷凝 內广有震盪元件,箱體另連接一霧化水管路, 吕路之出口端靠近上述蒸發器。 範圍第1項所述之以霧化水提升冷氣效 ° &,八中箱體内另設有一水位感應器。 益之3空專1?圍第1項所述之以霧化水提升冷氣效 凋構&,其中霧化水管路另設有一鼓風扇。 11The second fan of the atomized water is disposed at a position facing the plurality of fins of the evaporator. The utility model is characterized in that: a tank is connected by a water pipe to the condensed component in the condensation, and the tank is connected with a mist. The water pipe, the outlet end of Lulu is close to the above evaporator. In the first item of the scope, the atomized water is used to enhance the cooling efficiency. In the eight-box, there is another water level sensor. Yizhi 3 Air Special 1? According to the first item, the atomized water is used to enhance the cooling effect, and the atomizing water line is additionally provided with a blower fan. 11
TW96209445U 2007-06-08 2007-06-08 Air conditioning structure capable of promoting cold air efficiency with nebulized water TWM326135U (en)

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TW96209445U TWM326135U (en) 2007-06-08 2007-06-08 Air conditioning structure capable of promoting cold air efficiency with nebulized water

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TW96209445U TWM326135U (en) 2007-06-08 2007-06-08 Air conditioning structure capable of promoting cold air efficiency with nebulized water

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TWM326135U true TWM326135U (en) 2008-01-21

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TW96209445U TWM326135U (en) 2007-06-08 2007-06-08 Air conditioning structure capable of promoting cold air efficiency with nebulized water

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US8441789B2 (en) 2010-10-29 2013-05-14 Industrial Technology Research Institute Data center module
TWI601916B (en) * 2014-10-29 2017-10-11 台達電子工業股份有限公司 Ventilation-precoolingdevice of air conditioner

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US8441789B2 (en) 2010-10-29 2013-05-14 Industrial Technology Research Institute Data center module
US9137931B2 (en) 2010-10-29 2015-09-15 Industrial Technology Research Institute Data center module
TWI601916B (en) * 2014-10-29 2017-10-11 台達電子工業股份有限公司 Ventilation-precoolingdevice of air conditioner

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