TWM330451U - Modulized solar air circulation conditioner - Google Patents

Modulized solar air circulation conditioner Download PDF

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Publication number
TWM330451U
TWM330451U TW096211200U TW96211200U TWM330451U TW M330451 U TWM330451 U TW M330451U TW 096211200 U TW096211200 U TW 096211200U TW 96211200 U TW96211200 U TW 96211200U TW M330451 U TWM330451 U TW M330451U
Authority
TW
Taiwan
Prior art keywords
air
ring wall
solar energy
modular solar
item
Prior art date
Application number
TW096211200U
Other languages
Chinese (zh)
Inventor
shi-xiong Chen
Original Assignee
Jetpo Technology Inc
shi-xiong Chen
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 Jetpo Technology Inc, shi-xiong Chen filed Critical Jetpo Technology Inc
Priority to TW096211200U priority Critical patent/TWM330451U/en
Publication of TWM330451U publication Critical patent/TWM330451U/en
Priority to US12/118,855 priority patent/US20090013991A1/en

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F5/00Air-conditioning systems or apparatus not covered by F24F1/00 or F24F3/00, e.g. using solar heat or combined with household units such as an oven or water heater
    • F24F5/0046Air-conditioning systems or apparatus not covered by F24F1/00 or F24F3/00, e.g. using solar heat or combined with household units such as an oven or water heater using natural energy, e.g. solar energy, energy from the ground
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24SSOLAR HEAT COLLECTORS; SOLAR HEAT SYSTEMS
    • F24S10/00Solar heat collectors using working fluids
    • F24S10/50Solar heat collectors using working fluids the working fluids being conveyed between plates
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24SSOLAR HEAT COLLECTORS; SOLAR HEAT SYSTEMS
    • F24S70/00Details of absorbing elements
    • F24S70/20Details of absorbing elements characterised by absorbing coatings; characterised by surface treatment for increasing absorption
    • F24S70/225Details of absorbing elements characterised by absorbing coatings; characterised by surface treatment for increasing absorption for spectrally selective absorption
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24SSOLAR HEAT COLLECTORS; SOLAR HEAT SYSTEMS
    • F24S80/00Details, accessories or component parts of solar heat collectors not provided for in groups F24S10/00-F24S70/00
    • F24S80/30Arrangements for connecting the fluid circuits of solar collectors with each other or with other components, e.g. pipe connections; Fluid distributing means, e.g. headers
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F5/00Air-conditioning systems or apparatus not covered by F24F1/00 or F24F3/00, e.g. using solar heat or combined with household units such as an oven or water heater
    • F24F5/0046Air-conditioning systems or apparatus not covered by F24F1/00 or F24F3/00, e.g. using solar heat or combined with household units such as an oven or water heater using natural energy, e.g. solar energy, energy from the ground
    • F24F2005/0064Air-conditioning systems or apparatus not covered by F24F1/00 or F24F3/00, e.g. using solar heat or combined with household units such as an oven or water heater using natural energy, e.g. solar energy, energy from the ground using solar energy
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A30/00Adapting or protecting infrastructure or their operation
    • Y02A30/27Relating to heating, ventilation or air conditioning [HVAC] technologies
    • Y02A30/272Solar heating or cooling
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B10/00Integration of renewable energy sources in buildings
    • Y02B10/20Solar thermal
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/40Solar thermal energy, e.g. solar towers
    • Y02E10/44Heat exchange systems

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  • Engineering & Computer Science (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Mechanical Engineering (AREA)
  • Sustainable Development (AREA)
  • Sustainable Energy (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Physics & Mathematics (AREA)
  • General Engineering & Computer Science (AREA)
  • Thermal Sciences (AREA)
  • Spectroscopy & Molecular Physics (AREA)
  • Duct Arrangements (AREA)
  • Other Air-Conditioning Systems (AREA)

Description

,M330451 mi, is ·: ;'. 八、新型說明: I♦月η j '' 【新型所屬之技術領域】 本創作係有關一種空調裝置,尤指一種模組式太陽能 空氣循環裝置。 【先前技術】, M330451 mi, is ·: ;'. Eight, new description: I♦月η j '' [New technical field] This creation is related to an air conditioning device, especially a modular solar air circulation device. [Prior Art]

自從人類懂得利用大自然的原始資源,來改善生活, 創^舒適的環丨兄以來,人類對於能源的需求,就不斷地增 加。因此,世界各國無不致力於能源的研究和開發。 人類在所知道的能源中,唯有太陽能取之不盡、用之 不竭。所以’有許多的太陽能科技產品問世,例如太陽能 熱水為,是利用集熱器收集太陽的熱能來製造熱水,而太 ,能電池収湘光/電轉換器,將太陽光轉換成電能輸 ,以提供電器產品或交通工具所需之電力。 …目前有-種收集太陽的熱能製作成可讓线循環的空 :系、’先’在天軋寒冷時,該太陽能空調裝置可以吸收太陽 =能’並將熱能輸送於屋内,以對屋内進行溫度加溫調 國專利公報第57_號之「太陽能空調系統」發 專利案,在該案中所揭露之結構包括有:— 态組件、一進口组件乃一 木…、 抑 ' 出口組件;其中,該太陽能集熱 盗組件包括有一吸敎租杜、未 ' ,^ , ”、、、、件、透明蓋板及底部組成,該吸埶 組件係以複數支撐板與吸埶祐 …、 …、扳圍成稷數條吸熱通道,該推 口組件則設於該吸熱組件入口一 亚與忒複數條吸熱通道相聯 通,該出口組件設於該埶 、邳如 盍板在吸熱板吸收後,可 月 乂i熱源輸送於屋内,在冬天裡Since humans have learned to use nature's original resources to improve their lives and create a comfortable and comfortable brother, the demand for energy has increased steadily. Therefore, all countries in the world are committed to the research and development of energy. Among the energy sources that human beings know, only solar energy is inexhaustible and inexhaustible. So, there are many solar technology products, such as solar hot water, which uses collectors to collect the heat of the sun to make hot water, and too, can charge the light/electrical converter to convert sunlight into electricity. To provide electricity for electrical products or vehicles. ... At present, there is a kind of air that collects the sun's heat energy to make the line circulate: the system, 'first', when the sky is cold, the solar air-conditioning device can absorb the sun = energy and transport the heat energy to the house to carry out the inside of the house. In the case of the "Solar Air Conditioning System" issued by the temperature-regulating Patent Gazette No. 57_, the structure disclosed in the case includes: - a state component, an inlet component is a wood..., and an exit component; The solar collector kit includes a suction hopper, a ', ^, 』, , , , a piece, a transparent cover and a bottom portion, the suction assembly is a plurality of support plates and suction 埶 ..., ..., The plurality of heat absorption channels are arranged in the inlet, and the push port assembly is disposed at the inlet of the heat absorbing component and is connected to the plurality of heat absorption channels, and the outlet component is disposed on the raft, such as the raft, after being absorbed by the heat absorbing plate, The moonlight i heat source is transported inside the house, in the winter

M330451 P"i3: 可以對屋内進行力、 、 I 引出於室外,=溫調節,而在夏天裡可以將屋Vim 調節之空調系統新鮮空氣進入於屋内,以達空氣猶環 雖4 ’该專利宰 、人 々 -調節,在天氣火勒在軋中可以對屋内進行加溫 .並將屋内熱源:二了將外部的新鮮空氣引入屋内, 案整體結構設叶以達到屋内溫度之調節。由於該專利 以讓使用者自;體積大,在製作成模組化後,也難 【新型内容】 有鏗於傳統缺失, 能空氣循環空調裳置的目的’在於簡化了太陽 組化,讓使用者T 、、、"構’使體積小而輕,更趨向於模 T者可以輕易、快速的自行安裝。 马了達到上述之曰从 ,Λγ 循環空調裝置,該空_置=模組化之太陽能空氣 -透明蓋體,·其令,;;::括:一箱體、-吸熱單元及 接有—底部,娜*目虹上具有-環體,該環體下緣承 内側設有一接合部, n 蹁上、、彖 管部内之通道與該容置=回與底部上各設有一管部,該 該容置允門 二B相通;該吸熱單元係以配置於 夏工間裡’以金Μ奸刺从 可吸收太陽熱能之吸哉元件該载體上布設有一層 的上緣,可供太陽光穿:件且:Γ編配觸環牆 ::之通道與容置空間形成相通狀广有-官部’該官 【貫施方式】 兹有關本創作之技術内容及詳細說明,現配合圖式說 6 ~M330451 魏7',U〜 " 明如下: 請參閱第―、二圖,係本創作陽 裝置分解及外觀组立示意圖。如圖所示二 空額 之太陽能空氣猶環空碉Ii μ 之松組化 •卜-吸敎單調裝置10包括:-箱體 犮…早兀2及一透明蓋體3;苴中, =:其上具有—環牆η,該環牆Η下緣承接有 、周二與底部17形成有一容置空間12,該四 上緣内側設有-斷面呈L型之接合部13,… 牆η上設有二相對稱的圓形之管部14、14,,該二管^ 14 14内之通逼141、141’與該容置空間u相通,另 於該箱體1的底部17設有一管部15,該管部㈣之通道 ^與該容置空晒目通,該f抑、14,、⑽了提供 流通外:還可以達到與另-箱體(圖中未示)的 5 ^ :之目的’另’於該環牆11内壁上貼附有絕熱元件 ’該絕熱元件16為一絕熱材料以防止内部熱源由箱體丄 _ 的環牆Π傳遞於外界。 另於D亥載脰21、吸熱元件22及絕熱元件23上開設有—相 同位置及形狀的通孔24、25,以提供熱源可以流人於該管 部15内之通道151中。在本圖式中,該吸熱元件四為遠紅 。亥吸熱單元2,係以配置於該容置空間裡,其上具 ^-載=21 ’該載體21係以金屬材料製成,其在該載體^ :側上設有-層吸熱元件22 ’彡過吸熱元件四可以吸收太 陽=熱能,而另-侧設有—絕熱元件23,該絕熱元件烈為 -絕熱材料以防止㈣的熱源由箱體1底部傳遞於外界。 ΰβ I j·^ . 外線、正溫度係數(Positive Tem_toe . Jr·—〜_ 氣化:熱塗科或沬色漆料(如黑色漆)之任一種。 制二透:蓋體3,係以破璃或壓克力之任-種透明材料 衣成 板體,该透明芸I# q4 _ 型之接環牆11上緣,並與L 接口 413接合,該透明蓋體3的 31,在透明蓋妒]芸人从-+ s ^ 3盍合於環牆11上的接合部13,使該管邱 31内之通道311鱼含玄交署处叫η…^ ,、巧谷置二間11形成相通狀態。 -M330451M330451 P"i3: can carry out the force inside the house, I lead out of the outdoor, = temperature regulation, and in the summer, the air conditioning system of the house Vim can be adjusted into the house, so that the air is still ringing 4 'the patent slaughter , people-adjustment, in the weather, the fire can be used to warm the house. The heat source inside the house: Second, the external fresh air is introduced into the house, and the overall structure of the case is set to achieve the adjustment of the temperature inside the house. Because the patent is user-friendly; it is bulky, and it is difficult to make it into a modular form. [New content] It is contrary to the traditional lack, the purpose of air circulation air conditioners is to simplify the solarization and use The T, ,, " structure makes the volume small and light, and the more T-mode can be installed easily and quickly. The horse has reached the above-mentioned 曰 Λ cycle air-conditioning device, the air _ set = modular solar air-transparent cover, · its order;;:: including: a box, - heat-absorbing unit and connected - At the bottom, there is a ring body on the bottom of the ring body, and a joint portion is arranged on the inner side of the lower edge of the ring body, and a pipe portion is arranged on the upper and lower sides of the ring pipe, and a pipe portion is arranged on each of the receiving and returning bottoms. The accommodating door is connected to the door B; the heat absorbing unit is arranged in the summer labor room to provide a layer of upper edge from the sucking element capable of absorbing solar heat energy. Wear: piece and: Γ 配 触 : :: : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : Said 6 ~ M330451 Wei 7 ', U ~ " As follows: Please refer to the first and second diagrams, which is a schematic diagram of the decomposition and appearance of the creation of the device. As shown in the figure, the two empty solar air is still ring-shaped. The Ii μ loose grouping • Bu-sucking monotonous device 10 includes: - box 犮... early 兀 2 and a transparent cover 3; 苴中, =: There is a ring wall η, the lower edge of the ring wall is received, and the accommodating space 12 is formed on the inner side and the bottom portion 17. The inner side of the four upper edges is provided with a joint portion 13 having an L-shaped cross section, ... There are two symmetrical tube sections 14, 14 which are connected to the accommodating space u, and a tube 17 is provided at the bottom 17 of the box 1. In the part 15, the channel (4) of the pipe part (4) is connected to the space, and the f, 14, and (10) are provided for circulation: it can also reach 5^ with another-box (not shown): The purpose of the other is to attach a heat insulating element to the inner wall of the ring wall 11. The heat insulating element 16 is a heat insulating material to prevent the internal heat source from being transmitted to the outside by the ring wall of the box body. Further, through holes 24, 25 of the same position and shape are formed in the D-loading port 21, the heat absorbing element 22, and the heat insulating member 23 to provide a heat source that can flow into the passage 151 in the pipe portion 15. In the figure, the heat absorbing element four is far red. The heat absorbing unit 2 is disposed in the accommodating space, and has a carrier 21; the carrier 21 is made of a metal material, and the layer is provided with a layer of heat absorbing elements 22' The heat absorbing element 4 can absorb the sun = heat energy, and the other side is provided with a heat insulating element 23, which is a heat insulating material to prevent the heat source of (4) from being transmitted from the bottom of the tank 1 to the outside. Ϋ́β I j·^ . External line, positive temperature coefficient (Positive Tem_toe . Jr·—~ _ gasification: any one of hot coating or enamel paint (such as black lacquer). The glass or acrylic is a kind of transparent material coated into a plate body, the upper edge of the transparent wall I# q4 _ type ring wall 11 is engaged with the L interface 413, and the transparent cover body 31 is transparent妒 妒 芸 芸 从 从 - - - - - - 从 - 从 从 从 从 从 从 从 从 从 从 从 从 从 从 从 从 从 从 从 从 从 从 从 从 从 从 从 从 从 从 从 从 从 从 从 从 从 从 从Interconnected state. -M330451

由於將太陽能空氣循環空調裝置10製作成一模組化, 便於使用者可自彳τ安裝,在使用者自行安裝時,可以輕 易、快速的將多個空調裝置10連結在一起使用。 請參閱第三、四圖,係本創作之太陽能空氣循環空調 f置側剖視及熱能流動狀態示意圖。如圖所示:在該空調 I置10組裝時,先將吸熱單元2組裝於該箱體丨的容置空 間12裡,將透明蓋體3蓋合於環牆n上緣的接合部13上。 該管部15^31可與輸送管4、4,或另一組的箱體(圖中 未示)之管部連結。而未與另一個箱體或輸送管4、 連結之管部14、14,上可封接一塞體(或蓋體)5、 以防止蟲進入或熱源外洩。 由於該透明蓋體3可供太陽光穿入於該箱體1内部, 使吸熱元件22可以吸收太陽熱能,以產生熱源於該箱體1 内部,在透過管部14、14, 、15或31可以將熱源輪出,或 輸送至另一個箱體(圖中未示)内部。 請參閱第五、六圖,係本創作之多個太陽能空氣循環 空調裝置連結使用狀態及第五圖之多個太陽能空氣循環处 ㈣置連結剖視示意圖。如圖所示:在寒冷的天^ .M330451 時,可將多個空調裝置10、10A、⑽連結,並透過", 角鐵之固定元件20將空調裝置1〇、_、ι〇β鎖固於节於 屋子8的屋頂上。在空調裝錢、1GA、⑽彼此之間連 結時,可以透過套接管6套接於該空調裝置1〇、1〇 應、⑽的管部14,及14上,在空調裝置㈣ 調裝置⑽之管部15、14’上連結有—輸送管7 :7次: 而未連結的管部14或31則透過塞體(或蓋 閉,以避免蟲入侵或熱源外茂。者個 、 θ a 戈 田夕個吸熱早兀2所吸收 太陽能而產生的熱源將透過輸送管7、了,輸送於屋内 以進行屋内之加溫調節。或者由輪送管7’將屋内熱源引 出,經過空调農置1⑽、胤、1〇c後,再由輪送管7、輸 ϋ於屋内卩達循環方式進行屋内加溫調節。 為了讓熱源可以快速的輸送於屋内,可以在輸送管 ^ 7’ $管體内部或輸出口上可配置一風扇(圖中未 不)使幸則送官7、7 ’所輸送的熱源可以快速送到屋内 或遠端處。 月/閱第七圖,係本創作之另一多個太陽能空氣循環 空调裝置連結使用狀態示意圖。如圖所示:本創作可以利 用長形輸送管9連結於多個空調裝置10、1QA、應的管 部31上,使多個空調裝置1Q、嵐、1GB可以形成並聯狀 態(或者以管部14、14,連結呈串聯狀態)連結在一起, 。襄夕们工凋衣置1 〇、1 、1⑽所吸收的熱源都流至於該 幸刖达官9内,再輸送管9將熱源集中的輸送於屋内,以對 M3 3 0451 屋内進行加溫之調節。 — 明參閱第八圖,係本創作之另一實施例示意圖。如圖 所不:本創作之透明蓋體3係以第一蓋板32及第二蓋板 33,該第一蓋板32係蓋絕熱元件16上緣,並於第一蓋板32 ^具有中空管部321 ,再於箱體1上蓋合第二蓋板33,該 第一盍板33上設有一套於該管部321上之通孔331 。該第 盍板32與第二蓋板33可供太陽光通過,但可以防止熱能 由第二蓋板32傳遞於外部,而造成熱能損失。 一明筝閱第九圖,係本創作之再一實施例示意圖。如圖 所不·本創作之箱體丨的環牆u可以利用絕熱材料或非絕 熱材料(如金屬)製作而成,而該箱體丨的底部17可以直 接以吸熱單元2的絕熱元件23,使該箱體}形成—缸合式 箱體。 、 ^ 上述僅為本創作之較佳實施例而已,並非用來限定本 :::乍實施之範圍。即凡依本創作申請專利範圍所做的均等 • 文化與修飾,皆為本創作專利範圍所涵蓋。 【圖式簡單說明】 ’係本創作之太陽能空氣循環空調裝置分解示意 第二圖 愿《圖。 係本創作之太陽能空氣循環空 調裳置外觀組立示 第三圖 圖。 係本創作之太陽能空氣循環空 調襄置側剖視示意Since the solar air circulation air conditioner 10 is made into a module, it is convenient for the user to install from the 彳τ, and the plurality of air conditioners 10 can be easily and quickly connected together when the user installs himself. Please refer to the third and fourth figures, which is a schematic diagram of the side view and thermal energy flow of the solar air circulation air conditioner. As shown in the figure, when the air conditioner I is assembled 10, the heat absorbing unit 2 is first assembled in the accommodating space 12 of the box ,, and the transparent cover 3 is attached to the joint portion 13 of the upper edge of the ring wall n. . The tube portion 15^31 may be coupled to the tube portions of the delivery tubes 4, 4, or another set of housings (not shown). The tube portion (14), which is not connected to the other tank or the conveying pipe 4, may be sealed with a plug body (or cover) 5 to prevent insects from entering or leaking heat. Since the transparent cover 3 can allow sunlight to penetrate into the interior of the casing 1, the heat absorbing element 22 can absorb solar heat energy to generate heat from the inside of the casing 1 through the pipe portion 14, 14, 15, or 31. The heat source can be rotated or delivered to the inside of another tank (not shown). Please refer to the fifth and sixth figures, which are the connection status of the multiple solar air circulation air conditioners in this creation and the multiple solar air circulations in the fifth figure. As shown in the figure: On a cold day ^.M330451, a plurality of air conditioners 10, 10A, (10) can be connected, and the air conditioner 1〇, _, ι〇β can be locked through the ", angle iron fixing member 20. It is fixed on the roof of the house 8. When the air conditioner is loaded with money, 1GA, and (10) are connected to each other, the socket portion 6 can be sleeved on the tube portions 14 and 14 of the air conditioner 1〇, 1〇, (10), and the air conditioner (4) adjusting device (10) The pipe portions 15, 14' are connected to the transfer pipe 7: 7 times: and the unconnected pipe portion 14 or 31 is passed through the plug body (or closed to prevent insect invasion or heat source. θ a 戈The heat source generated by the absorption of solar energy by Tianxi is absorbed through the transport pipe 7, and is transported inside the house for heating adjustment inside the house. Or the heat source inside the house is taken out by the transfer pipe 7', and passed through the air conditioning farm 1 (10) After the 胤, 〇, 1〇c, and then the rounding pipe 7 and the squatting in the house to achieve the indoor heating regulation. In order to allow the heat source to be quickly transported inside the house, it can be inside the pipe. Or a fan can be configured on the output port (not shown in the figure), so that the heat source delivered by the official 7, 7 ' can be quickly sent to the house or the far end. Monthly / read the seventh picture, which is another multiple of the creation The schematic diagram of the connection state of the solar air circulation air conditioner is as shown in the figure: The plurality of air-conditioning devices 10Q, 1Q, and 1GB can be connected to each other by the long-shaped transport pipe 9 so that the plurality of air-conditioning devices 1Q, 岚, and 1GB can be connected in parallel (or the pipe portions 14 and 14 can be connected together). The tandem state is linked together. The heat source absorbed by the 襄, 1, 1 and 1 (10) flows into the 刖 刖 官 官, and the transport tube 9 concentrates the heat source inside the house to the M3. 3 0451 Adjustment of heating in the house. - See Figure 8 for a schematic view of another embodiment of the present invention. As shown in the figure: the transparent cover 3 of the present invention is a first cover 32 and a second cover. 33, the first cover plate 32 covers the upper edge of the heat insulating member 16, and has a hollow tube portion 321 on the first cover plate 32, and covers the second cover plate 33 on the case body 1, the first seesaw 33 A through hole 331 is formed on the tube portion 321 . The second plate 32 and the second cover plate 33 are allowed to pass sunlight, but heat energy can be prevented from being transmitted to the outside by the second cover plate 32, thereby causing thermal energy loss. A picture of the ninth picture of a Ming Zheng is a schematic diagram of another embodiment of the present creation. The ring wall u can be made of a heat insulating material or a non-insulating material (such as metal), and the bottom portion 17 of the box body can be directly formed by the heat insulating member 23 of the heat absorbing unit 2, so that the box body is formed into a cylinder-shaped box body. The above are only the preferred embodiments of this creation, and are not intended to limit the scope of this:::implementation. That is, the equalization of culture and decoration made by the scope of application for this creation is the creation of this patent. Covered by the scope. [Simple description of the diagram] 'The decomposition of the solar air circulation air conditioning unit of this creation is shown in the second picture. "The picture shows the appearance of the solar air circulation air conditioner in the creation of the third group. Side view of the solar air circulation air conditioner

第四匿I 係本創作之太陽能空氣循環 空調袈置的熱能流動 M330451 M 7-13.:: i,· Η -- "* Ί / 、 狀態示意圖。 ' 第五圖,係本創作之多個太陽能空氣循環空調裝置連結使 用狀態示意圖。 第六圖,係第五圖之多個太陽能空氣循環空調裝置連結剖 -視不意圖。 .第七圖,係本創作之另一多個太陽能空氣循環空調裝置連 結使用狀態示意圖。 第八圖,係本創作之另一實施例示意圖。 修第九圖,係本創作之再一實施例示意圖。 【主要元件符號說明】 空調裝置10、10Α 、10Β 箱體1 環牆11 容置空間12 接合部13 春管部 14、14’ 、15、31 通道 141、141 ’ 、151 、311 絕熱元件16、23 -底部17 吸熱單元2 載體21 吸熱元件22 通孔 24、25、331 透明蓋體3 •M330451 * 第一蓋板32 第二蓋板33 輸送管4、4’ 、7、7’ 塞體5、5 ’ ,套接管6 屋子8The fourth energy system is the solar energy circulation of the air conditioner. The heat energy flow of the air conditioner is M330451 M 7-13.:: i,· Η -- "* Ί / , state diagram. The fifth picture shows the state of the connection between the solar energy air-conditioning units of the present creation. The sixth figure is a cross-sectional view of a plurality of solar air circulation air conditioners in the fifth diagram, which is not intended. The seventh figure is a schematic diagram of the connection state of another solar air circulation air conditioning unit of the present invention. The eighth figure is a schematic diagram of another embodiment of the present creation. The ninth figure is a schematic diagram of still another embodiment of the present creation. [Description of main components] Air conditioners 10, 10Α, 10Β Box 1 Ring wall 11 accommodating space 12 Joints 13 Spring tubes 14, 14', 15, 31 Channels 141, 141 ', 151, 311 Insulation elements 16, 23 - bottom 17 heat absorbing unit 2 carrier 21 heat absorbing element 22 through hole 24, 25, 331 transparent cover 3 • M330451 * first cover 32 second cover 33 delivery tube 4, 4', 7, 7' plug body 5 , 5 ', socket 6 room 8

1212

Claims (1)

M330451 九、申請專利範圍: ;/;「急 1 種模組化之太陽能空氣循環空調裝置,該裝置 包括: 一=體,其上具有一環牆,該環牆下緣承接有一底 -部’該環牆與底部内形成有—容置空間,該箱體的環牆及 .底部上設有=部,該管部内之通道與該容置空間相通; 一吸熱單元,係以配置於該容置空間裡,其上具有一 載體,該載體上佈設有一層吸熱元件; -透明蓋體,係配置於該環牆的上緣之接合部上。 乂二如!請專利範圍第1項所述之模組化之太陽能空 ^盾哀工㈣置,其中,該環牆上緣設有-接合部,該接 合部斷面呈L型。 氣循二專利範圍第1項所述之模組化之太陽能空 ι置’其中’該環牆内壁上貼附有-絕敎元 件,該絕熱元件為一絕熱材料。 …請專利範圍第1項所述之模組化之太陽能空 =I工4裝置’其中,該環牆係以絕熱材 料之任一種製成。 〜由!二如申請專利範圍第4項所述之模組化之太陽能空 氣4盾故空调装晉,甘+ » , 〃中’该非絕熱材料為金屬材料。 尸 申明專利範圍第1項所述之模組化之太陽能空 氣循琢工調裳置,其中,該環牆上的二個管部呈相對應設 置。 7、如中請專利範圍第丨項所述之模組化之太陽能空 13 m iz M330451 氣循環空調m中’該载體為—金屬材料。l—] L如申請專利第丨項所述之模組化之太陽能空 調裝置’其中,該吸熱元件為遠紅外線、正溫度 # ^ (Positive Temperature Coefficient,ΡΤ〇 ^ ^ Α ,b t ^ ^ # 或味色漆料(如黑色漆)之任一種。 如中請專利範圍第1項所述之模組化之太陽能空 :?工调衣置’其中’該载體另一側面貼附有一絕熱元 件,該絕熱元件為一絕熱材料。 ^ 10、如申請專利範圍第9項所述之模組化之太陽能空 ::展空調裝置,纟中,該载體另-側面貼附有-絕熱元 件係以作為箱體之底部。 U、如中請專利範圍第i項所述之模組化之太陽能空 軋循環空調裝晉,1 44 置/、中该透明盍體係以玻璃或壓克力之 任一種透明材料製成一片狀體。 ^ 2如申明專利範圍第1項所述之模組化之太陽能空 ^盾環空調裝置,其中,該透明蓋體的表面找有一管 和该官部内之通道與箱體的容置空間形成相通狀態。 Μ ^、如申請專利範圍第i項所述之模組化之太陽能空 ::盾%空调裝置’ *中’該透明蓋體係以第-蓋板、第二 成该第一盍板係蓋絕熱元件上緣,並於第一蓋板 =有中空管部’再於箱體上蓋合第二蓋板,該第二蓋板 上设有一套於該管部上之通孔。 5如申請專利範圍第1項所述之模組化之太陽能空 Hu㈣置H更進-步在於該管部可連結輸送 14 M330451 管, 氣循空第14項所述之模組化之二空 扇,使熱源可;該輸送f的輸出σ處可配置風 厌迷輸迗或送至遠端。 气循=如申請㈣範®第1項所述之模組化之太陽能空 軋循%空調裝置,其中, 双防此二 上,使太陽^尸 更/、有一套接管套接於二個管部 17、 Ί循環空職置形成並聯或串聯連結。 氣循wj:專利乾15第1項所述之模組化之太陽能空 #中’更可透過—個長形輸送管同時連 、‘於夕個太陽能空氣循環空調裝置的管部上。 18、 如中請專利範圍第丨項所述之模組化之太陽能空 氣循環空調裝置,#中,該管部未使用時可配置-蓋體或 塞體之任一種。 19、如f請專利範圍第丨項所述之模組化之太陽能空 氣循環空調裝置,其中,該空調裝置透過L形角鐵之固定M330451 IX. Patent application scope: ;/; "An urgent modular solar air circulation air conditioning unit, the device includes: a body having a ring wall, the lower edge of the ring wall receiving a bottom portion" The ring wall and the bottom portion are formed with a receiving space, and the ring wall and the bottom portion of the box body are provided with a portion, and the passage in the tube portion communicates with the receiving space; a heat absorbing unit is disposed in the receiving portion The space has a carrier thereon, and the carrier is provided with a heat absorbing element; a transparent cover body is disposed on the joint portion of the upper edge of the ring wall. 乂二如! Please refer to the patent item 1 The modular solar energy shield shields (4), wherein the edge of the ring wall is provided with a joint portion, and the joint portion has an L-shaped cross section. The modularized method described in the first item of the patent scope 2 The solar energy is placed in the 'the inner wall of the ring wall is attached with a 敎 element, the heat insulating element is a heat insulating material. ... Please select the modular solar energy described in the first item of the patent scope = I work 4 device' Among them, the ring wall is made of any one of heat insulating materials. Applying the modularized solar air 4 shield as described in item 4 of the patent scope, the air conditioner is installed in Jin, Gan + » , and the non-insulation material is metal. The modularization described in the first paragraph of the patent scope The solar air is circulated, and the two pipe sections on the ring wall are correspondingly arranged. 7. The modular solar energy 13 m iz M330451 gas as described in the patent scope In the circulating air conditioner m, the carrier is a metal material. l-] L. The modular solar air conditioner according to the above application, wherein the heat absorbing element is far infrared ray, positive temperature # ^ (Positive Temperature Coefficient, ΡΤ〇^ ^ Α , bt ^ ^ # or any of the scented paints (such as black lacquer). For example, the modular solar energy described in the first paragraph of the patent scope: Wherein the other side of the carrier is attached with a heat insulating element, which is a heat insulating material. ^ 10. The modular solar energy space as described in claim 9 of the patent scope: The carrier is attached to the other side - a thermal insulation component As the bottom of the cabinet. U. For example, please refer to the modularized solar air-rolling cycle air-conditioning installed in the scope of patent item i, and the transparent enamel system is made of glass or acrylic. A modular solar energy air-shield air conditioner according to claim 1, wherein the surface of the transparent cover is found in a tube and in the official part. The channel is in communication with the housing space of the cabinet. Μ ^, as described in the patented scope item i, the modular solar energy:: shield% air conditioning unit '*中' the transparent cover system with the first cover The second slab is attached to the upper edge of the heat insulating component, and the second cover is closed on the first cover plate and has a hollow pipe portion, and the second cover is provided with a set of a through hole in the tube portion. 5 As shown in the patent application scope, the modular solar energy Hu (four) H is further advanced, the step is that the pipe can be connected to transport 14 M330451 pipe, and the modularized air space described in item 14 of the air cycle The fan makes the heat source available; the output σ of the transport f can be configured to be stunned or sent to the far end. Gas cycle = as described in the application of (4) Fan®, item 1 of the modular solar-air-cooling cycle air-conditioning device, in which the double-proof two, so that the sun is more corpse, and a set of sockets are connected to the two pipes. The part 17, the Ί cyclic empty position forms a parallel or series connection. Air circulation wj: The modular solar energy #中' described in the first paragraph of the patent dry 15 is more transparent - a long-shaped conveying pipe is connected at the same time, 'on the pipe part of the solar air circulation air-conditioning device. 18. In the modularized solar air circulation air conditioning unit according to the scope of the patent application, in the #, the tube portion may be configured to be either a cover body or a plug body when not in use. 19. The modular solar air circulation air conditioning device according to the scope of the invention, wherein the air conditioning device is fixed by an L-shaped angle iron 源輸送之用。 元件鎖固於該建築物上。 15For source transportation. The component is locked to the building. 15 ,M330451 , 七、指定代表圖·· (一) 本案指定代表圖為:第(一)圖 (二) 本代表圖之元件符號簡單說明: 空調裝置10 -箱體1 w環牆11 容置空間12 接合部13 _ 管部 14、14’ 、15、31 通道 141、141 ’ 、151、311 絕熱元件16、23 底部17 吸熱單元2 載體21 吸熱元件22 • 通孔24、25 透明蓋體3 4, M330451, VII, designated representative figure · (1) The representative representative of the case is: (1) Figure (2) The symbolic symbol of the representative figure is simple: Air-conditioning device 10 - Box 1 w ring wall 11 accommodating space 12 Joint 13 _ Tube 14 , 14 ′ , 15 , 31 Channel 141 , 141 ' , 151 , 311 Insulation element 16 , 23 Bottom 17 Heat absorbing unit 2 Carrier 21 Heat absorbing element 22 • Through hole 24 , 25 Transparent cover 3 4
TW096211200U 2007-07-10 2007-07-10 Modulized solar air circulation conditioner TWM330451U (en)

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