TWM375850U - Water curtain cooling sheet and water curtain wall - Google Patents

Water curtain cooling sheet and water curtain wall Download PDF

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Publication number
TWM375850U
TWM375850U TW98219803U TW98219803U TWM375850U TW M375850 U TWM375850 U TW M375850U TW 98219803 U TW98219803 U TW 98219803U TW 98219803 U TW98219803 U TW 98219803U TW M375850 U TWM375850 U TW M375850U
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Taiwan
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water
wavy
wall
cooling
cooling fins
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TW98219803U
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Chinese (zh)
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Rong-Xin Cai
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Rong-Xin Cai
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Priority to TW98219803U priority Critical patent/TWM375850U/en
Publication of TWM375850U publication Critical patent/TWM375850U/en

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五、新型說明: 【新型所屬之技術領威】 [0001] 本創作係有關於一種水濂冷卻片及水濂牆,尤指一 種具高度容水量’可以使空氣流通而過時’大幅降低空 氣溫度的水濂冷卻片及水濂牆。 [先前技術3 [0002] 按,一般於建築物四周會築起屋壁’以提供擋風、 防曰暾及防竊等作用’但相對地屋壁亦會阻隔屋内外空 氣的對流通風性’以致屋内氣流一直無法適時且有效地 疏散,因此,當整個建築物係曝露於強烈太陽光的持續 照射下,則屋内氣流溫度便會開始昇高。 於是,為了降低屋内的熱溫,一般的做法係架設風 扇吹送,以使屋外氣流可以不斷循環輸送入屋内,達到 排散熱温的效果,而對於工廠廠房等大型建築物,則會 在屋頂上裝設抽風扇,以及於屋壁上開設窗口,以提高 室内空氣的流通率’使室内溫度可以降低。 而為了更提高建築物内空氣的流通性與涼爽性,於 是,乃有業者研擬於建築物一側裝設有呈複數蜂巢之水 濂牆,另在建築物另側架設有抽排風扇,而其水廉牆内 的水濂片係由數條呈波浪狀之紙板構成,再於水濂牆上 方搭設有一進水管,另在水濂牆下方架設有集水槽;藉 此,當水由進水管喷灑於紙板,使纸板沾溼吸水,再使 抽排風扇將室内熱空氣排放於外,此時,室内與室外即 形成壓力差’隨之,外部的空氣係由沾溼的水濂牆通過 而降低其溫度,使流入室内的空氣較為涼爽。 表單編號A0101 第3頁/共17頁 M375850 由上述可知,現有之水濂牆主要係由波浪狀之紙板 搭接組成,利用紙板吸水的特性,以使紙板含有水分, 繼讓通過含水紙板之空氣降低其溫度;然,依此設計, 於使用上係發生如下缺失: 1. 現有之水濂牆主要係使紙板沾溼含帶水分,以使 通過紙板的空氣降溫,但含水之紙板不耐久用,於使用 一段時間後,紙質即會產生變化碎爛,而須定期更換, 以致造成使用者極大的經濟負擔。 2. 又,現有之水濂牆僅利用通過紙板之水流及紙板 上含帶的水分,來降低通過水濂牆空氣之溫度,其降溫 效果係相當有限。 3. 再者,含水之紙板容易於其上附著青苔、髒物、 細菌,當空氣流通而過時,該髒物、細菌便會隨著空氣 進入室内,不僅使空氣品質降低,並容易影響室内人體 的健康。 緣是,本創作人有鑑於現有由紙板組成之水濂牆於 使用上的缺失,乃藉其多年於相關領域的製造及設計經 驗和知識的輔佐,並經多方巧思,針對現有水濂牆作更 新的研發改良,以期發揮其更高的實用效益性,而研創 出本創作。 【新型内容】 [0003] 本創作係有關於一種水濂冷卻片及水濂牆,其主要 實施目的,係為了提供一種具高度容水量,可以使空氣 流通而過時,大幅降低空氣溫度的水濂冷卻片及水濂牆 表單编號A0101 第4頁/共17頁 為了達到上述實施目的,本創作人乃研擬如下實施 技術,係由至少二水濂冷卻片所組成,乃使二水濂冷卻 片呈相異波浪方向之交錯擺放,以使二相異波浪狀條紋 間構成容水空間,再使其一水濂冷卻片呈凹入之波浪條 紋與另·一水濂冷卻片呈凸起之波浪條紋相對應,以對合 形成風孔,並使風孔與容水空間形成相對位置之設置, 復於水濂冷卻片之每一波浪狀條紋上設有透水孔。 藉此,當外部熱空氣經風孔流過容水空間後,即可 以大幅降低空氣的溫度,以使吹入室内的空氣加倍涼爽 者。 【實施方式】 [0004] 而為令本創作之技術手段及其所能達成之效果,能 夠有更完整且清楚的揭露,茲詳細說明如下,請一併參 閱揭露之圖式及圖號: 首先,請參閱第一圖所示,為本創作之水濂冷卻片 (1),係為塑膠材質,乃於其上成形複數波浪狀條紋 (1 1 ),並使該波浪狀條紋(1 1 )呈間隔之凹凸狀 態,且使其凹凸之形狀呈梯形狀,再於每一間隔呈凹凸 狀態之波浪狀條紋(1 1 )上各別成形有接合柱(1 2 )與接合孔(1 3),又使每一波浪狀條紋(1 1 )端 面成形有止水肋(1 4),另使每一波浪狀條紋(1 1 )上設有呈三角形之透水孔(15)。 據此,當組裝實施時,請一併參閱第二、三圖所示 ,係使二水濂冷卻片(1 )呈相異波浪方向之交錯擺放 ,以使二相異波浪狀條紋(11)間構成容水空間(1 表單編號A0101 第5頁/共17頁 6),再使其一水濂冷卻片(i )呈凹入之波浪條紋( 1 1 )與另一水濂冷卻片(1 )呈凸起之波浪條紋(工 1 )相對應,以使呈梯形狀之凹凸波浪條紋(丄1 ), 藉其接合柱(1 2)與接合孔(1 3)之組接後,對合 形成蜂巢狀之風孔(1 7),且使該蜂巢狀風孔(1 7 )與谷水空間(1 6)形成相對之位置設置; 依此組裝模式,請一併參閱第四、五圖所示,以將 水濂冷卻片(1)組合形成水濂牆(2 ),再利用支撲 架(3 )將水濂牆(2)固定架設於建築物一側牆外, 並使水廉牆(2)下方容置於—集水槽(4)中,另在 水濂牆(2)上方則架設有灑水管(5),以與集水槽 (4)之排水官(4 1 )間利用抽水馬達相連通,又於 建築物相對水濂踏(2)另側牆壁組裝有抽排風扇(6 )° 藉此,當使用實施時’係作動抽水馬達,以使容裝 於集水槽(4)内的水經抽水馬達抽引,流入水濂牆( 2)上方灑水管(5),再由灑水管(5)將水灑落於 水濂牆(2)上; 此時’水即由構成水濂牆(2)之每一水濂冷卻片 (1 )上形成之透水孔(1 5)流動而下,並藉由二水 濂冷卻片(1 )其相異波浪狀條紋(1 1 )所構成容水 空間(1 6)’使水得以暫留於該容水空間(1 6)中 ,且利用每一波浪狀條紋(1 1)端面形成之止水肋( 14) ’以阻擋水由風孔(17)流出於外,依此,係 使每單位之容水空間(16)之容水量可達2〇〇〇〜 3 0 〇 〇公克/平方公尺; 表單蝙號A0101 第6頁/共17頁 M375850 • « 於同時,設於水濂牆(2)相對另側之抽排風扇( 6)係將建築物内的熱空氣抽出排放於外,此時,建築 物内的空氣壓力係小於建築物外之空氣壓力,於此,外 部的空氣即由相對於抽排風扇(6)之水濂牆(2)方 向流入建築物内; 當外部空氣流經水濂牆(2)之蜂巢狀風孔(1 7 )而入時,係會經與蜂巢狀風孔(1 7)相對應之容水 空間(1 6)而出,而使外部空氣内挾帶充分之水氣, 進而使流入建築物内之外部空氣的溫度大幅降低,如此 一來,低溫之冷空氣即會充滿整個建築物内,而達到涼 爽室内溫度的效果。 請一併參閱第六圖所示,係可以於室内設置多道水 濂牆(2),據此,除可以增加室内空氣的涼爽性外, 更可以藉此多道水濂牆(2)的設置達到濾除空氣中灰 塵、髒物與細菌的效果,使室内空氣更加清淨,更有益 於人體健康者。 由上述結構及實施方式可知,本創作係具有如下優 點: 1. 本創作係使水濂冷卻片上成形複數波浪狀條紋, 再使二水濂冷卻片呈相異波浪方向之交錯擺放,以使二 相異波浪狀條紋間構成容水空間,藉此,即可以使外部 熱空氣通過該容水空間時,大幅增加空氣中的含水量, 並降低空氣的溫度,以使吹入室内的空氣更加涼爽。 2. 本創作係使水濂冷卻片上之每一波浪狀條紋端面 成形有止水肋,以有效擋止水流入容水空間後,隨即由 側邊流出於外,藉此,以更提高容水空間之容水量。 表單編號A0101 第7頁/共17頁 M375850 3.本創作係使水廉冷卻片上之每 一波浪狀條紋設有 呈三角形之透水孔,利用此三 加水流的流速與順暢性。 角形透水孔之設計,以增 4,本創作係為附水性材f,因此,可以保持其乾淨 性,不易引附髒物、細菌附著其上,故髒物、細菌不會 隨著空氣進人室内,而影響室内人體的健康,亦不會因 為含水,而造成其質變腐爛,須時常更換的弊失。 綜上所述,本創作實施例確能達到所預期功效又 其所揭露之具體構造,不僅未曾見諸於同類產品中,亦 未曾公開於申凊别,誠已完全符合專利法之規定與要求 ,爰依法提出新型專利之申請,懇請惠予審查,並賜准 專利,則實感德便。 【圖式簡單說明】 [0005] [0006] 第一圖 本創作之立體分解圖 第二圖 本創作之側視圖 唆一因 乐二圖 本創作之端面剖視圖 第四圖 本創作之整體立體分解圖 第五圖 本創作之使用狀態圖 第六圖 本創作之另 一實施例使用狀態圖 【主要元件符號說明】 (1 ) 水濂冷卻片 (1 1)波浪狀條紋 (1 2)接合柱 (13)接合孔 (14)止水肋 (15)透水孔 (16: )容水空間 (17)風孔 (2 ) 水濂牆 (3) 支#架 表單編號A0101 第8頁/共17頁 M375850 (4) 集水槽 (5) 灑水管 (4 1 )排水管 (6) 抽排風扇 表單編號A0101 第9頁/共17頁V. New Description: [New Technology Alliance] [0001] This creation is about a water raft cooling fin and a water raft wall, especially a kind of high water capacity 'can make air circulation and obsolete' greatly reduce air temperature Water raft cooling fins and otter walls. [Prior Art 3 [0002] According to the general idea, the wall of the building will be built around the building to provide wind, flood and anti-theft. But the opposite wall will also block the convective ventilation of the air inside and outside the house. 'The airflow inside the house has not been able to be evacuated in a timely and effective manner. Therefore, when the entire building is exposed to intense sunlight, the temperature of the airflow inside the house will begin to rise. Therefore, in order to reduce the heat temperature inside the house, the general practice is to set up a fan to blow, so that the outdoor airflow can be continuously circulated into the house to achieve the effect of dissipating heat, and for large buildings such as factory buildings, it will be installed on the roof. A fan is installed, and a window is opened on the wall to increase the indoor air circulation rate' so that the indoor temperature can be lowered. In order to improve the flow and coolness of the air in the building, the industry has developed a water wall with a plurality of honeycombs on one side of the building, and a suction fan on the other side of the building. The water slab in the water wall is composed of a plurality of wavy cardboard, and a water inlet pipe is arranged on the water wall, and a sump is arranged under the water wall; thereby, when the water is connected by the water inlet pipe Sprayed on the cardboard to make the cardboard wet and absorb water, and then let the exhaust fan discharge the indoor hot air. At this time, the pressure difference between the indoor and the outdoor is formed. Then, the external air passes through the wet water wall. Lower the temperature and make the air flowing into the room cooler. Form No. A0101 Page 3 of 17 M375850 As can be seen from the above, the existing faecal wall is mainly composed of wavy cardboard lap joints, which utilizes the water absorbing properties of the cardboard to make the cardboard contain moisture, and then pass the air through the water-containing cardboard. The temperature is lowered; however, according to the design, the following defects are caused in the use: 1. The existing water wall mainly causes the cardboard to be wet with moisture, so that the air passing through the cardboard is cooled, but the water-containing cardboard is not durable. After using for a period of time, the paper will change and break, and it must be replaced regularly, resulting in a great economic burden on the user. 2. Moreover, the existing water wall only uses the water flowing through the cardboard and the moisture contained in the cardboard to reduce the temperature of the air passing through the water wall, and the cooling effect is rather limited. 3. In addition, the water-containing cardboard is easy to attach moss, dirt and bacteria to it. When the air circulates, the dirt and bacteria will enter the room with the air, which not only reduces the air quality, but also easily affects the indoor human body. Health. The reason is that the creator has in view of the lack of use of the existing water-repellent wall made of cardboard, thanks to its many years of manufacturing and design experience and knowledge in related fields, and through many ingenuity, targeting the existing faucet wall. To make updated research and development improvements, in order to exert its higher practical efficiency, and to create this creation. [New content] [0003] This creation is about a water raft cooling fin and a water raft wall. Its main purpose is to provide a water raft with a high water capacity, which can make the air circulate and obsolete, and greatly reduce the air temperature. Cooling Plate and Water Wall Form No. A0101 Page 4 of 17 In order to achieve the above-mentioned implementation objectives, the creator has developed the following implementation technique, which consists of at least two water-cooling fins to cool the dihydrate. The sheets are staggered in different wave directions so that the two-phase wavy strips form a water-receiving space, and then the water-cooling fins are concavely wavy strips and the other water-cooling fins are convex. Corresponding to the wavy stripes, the air holes are formed in the opposite direction, and the air holes are arranged in a relative position with the water-receiving space, and a water-permeable hole is formed on each of the wavy stripes of the water-cooling fin. Thereby, when the external hot air flows through the water receiving space through the air hole, the temperature of the air can be greatly reduced, so that the air blown into the room is doubled. [Embodiment] [0004] In order to make the technical means of the present invention and the effects thereof can be more completely and clearly disclosed, the following is a detailed description, please refer to the disclosed drawings and drawings: First As shown in the first figure, the water-cooling fin (1) of this creation is made of plastic material, on which a plurality of wavy stripes (1 1 ) are formed, and the wavy stripe (1 1 ) is formed. The concave and convex portions are in a state of being uneven, and the shape of the concavities and convexities is trapezoidal, and the joint pillars (1 2 ) and the joint holes (1 3) are formed on the wavy strips (1 1 ) in which the intervals are uneven. Further, each wavy stripe (1 1 ) end face is formed with a water stop rib (14), and each wavy stripe (1 1 ) is provided with a triangular water permeable hole (15). Accordingly, when assembling and implementing, please refer to the second and third figures together, so that the dihydrate fins (1) are staggered in different wave directions to make two-phase wavy stripes (11). ) to form a water-contained space (1 Form No. A0101, page 5 / page 17 of 6), and then make the water-cooling fin (i) a concave wavy stripe (1 1 ) and another water-cooling fin ( 1) Corresponding wavy strips (work 1) correspond to the trapezoidal undulations (丄1) in the shape of a ladder, by the combination of the joint pillars (12) and the joint holes (13), Form a honeycomb-shaped wind hole (17), and make the honeycomb wind hole (17) and the valley water space (16) form a relative position; according to the assembly mode, please refer to the fourth and fifth figures together. As shown, the water raft cooling fins (1) are combined to form a water raft wall (2), and the water raft wall (2) is fixedly mounted outside the side wall of the building by using the smashing frame (3), and the water is clean. The wall (2) is placed under the sump (4), and a sprinkler pipe (5) is placed above the sluice wall (2) for use with the drainage officer (4 1 ) of the sump (4). Pumping motor connected And the building is opposite to the water pedal (2) and the other side wall is equipped with a suction fan (6). Thereby, when used, the system is operated to pump the water so that the water contained in the sump (4) The pumping motor draws and flows into the sprinkler pipe (5) above the water wall (2), and then sprinkles the water on the water wall (2) by the sprinkler pipe (5); at this time, the water constitutes the water wall (2) The water permeable hole (15) formed on each of the water slab cooling fins (1) flows down, and the water permeable space is formed by the divergent cooling fins (1) with different wavy stripes (1 1 ) (1 6) 'Let the water to remain in the water-receiving space (16), and use the water-stop ribs (14) formed by the end faces of each wavy stripe (1 1) to block the water from the wind holes (17) ) Flowing out, according to this, the water capacity per unit of water space (16) can reach 2〇〇〇~3 0 〇〇/m2; Form bat number A0101 Page 6 of 17 M375850 • « At the same time, the extraction fan (6) located on the opposite side of the water wall (2) is used to evacuate the hot air inside the building. At this time, the air pressure in the building is less than that of the building. Outside air pressure, where the external air flows into the building in the direction of the water wall (2) relative to the extraction fan (6); when the outside air flows through the honeycomb hole of the water wall (2) ( 1 7) When entering, it will pass through the water-containing space (16) corresponding to the honeycomb-shaped vent (17), and the outside air will be filled with sufficient moisture to flow into the building. The temperature of the outside air is greatly reduced, so that the cold air at a low temperature will fill the entire building and achieve the effect of cooling the indoor temperature. Please refer to the sixth picture together. It is possible to install multiple water wall (2) indoors. According to this, in addition to increasing the coolness of indoor air, it is also possible to use multiple water walls (2). Set to achieve the effect of filtering out dust, dirt and bacteria in the air, making the indoor air more clean and more beneficial to human health. According to the above structure and embodiment, the author has the following advantages: 1. The creation system forms a plurality of wavy stripes on the water raft cooling sheet, and then causes the swill fins to be staggered in different wave directions. The two-phase wavy strips form a water-containing space, thereby allowing the external hot air to pass through the water-storing space, greatly increasing the water content in the air, and reducing the temperature of the air, so that the air blown into the room is more cool. 2. This creation system forms a water-stop rib on each wavy stripe end surface on the water raft cooling fin to effectively stop the water from flowing into the water-receiving space, and then flows out from the side, thereby increasing the water capacity. The volume of water in the space. Form No. A0101 Page 7 of 17 M375850 3. This creation system provides a triangular water-permeable hole for each wavy stripe on the water cooling fin, which utilizes the flow rate and smoothness of the three water flow. The design of the angled water-permeable hole is increased by 4. This creation is made of water-based material f. Therefore, it can keep its cleanness, and it is difficult to attract dirt and bacteria to adhere to it. Therefore, dirt and bacteria will not enter the air. Indoors, which affect the health of the indoor human body, will not cause water quality, causing its quality to rot, which must be replaced frequently. In summary, the present embodiment can achieve the expected efficacy and the specific structure disclosed. It has not been seen in similar products, nor has it been disclosed in Shen Bie, and has fully complied with the requirements and requirements of the Patent Law.爰Proposing an application for a new type of patent in accordance with the law, and pleading for a review and granting a patent, it is really sensible. [Illustration of the drawing] [0005] [0006] The first picture of the creation of the three-dimensional exploded view of the second side of the creation of this side of the creation of the second picture of the end of the picture of the second section of the creation of the fourth section of the creation of the overall three-dimensional exploded view Fig. 5 is a state diagram of the use state of the present invention. Fig. 6 is a diagram showing another embodiment of the present invention. [State element symbol description] (1) Water raft cooling fin (1 1) wavy stripe (1 2) joint column (13) ) Engagement hole (14) Water stop rib (15) Water hole (16: ) Water space (17) Air hole (2) Water wall (3) Branch #架表号 A0101 Page 8 of 17 M375850 ( 4) Sink (5) Sprinkler pipe (4 1 ) Drain pipe (6) Extraction fan form No. A0101 Page 9 of 17

Claims (1)

M375850 「、申請專利範圍: 1 . 一種水濂冷卻片,係其上成形複數波浪狀條紋,並使該波 浪狀條紋呈間隔之凹凸狀態,且使每一波浪狀條紋端面上 成形有止水肋,再於每一波浪狀條紋上設有透水孔。 2 .如申請專利範圍第1項所述水濂冷卻片,其中,該每一間 隔呈凹凸狀態之波浪狀條紋上係各別成形有接合柱與接合 孔。 3 .如申請專利範圍第1項所述水濂冷卻片,其中,該波浪狀 條紋係使其ώ凸之形狀呈梯形狀。 4 .如申請專利範圍第1項所述水濂冷卻片,其中,該透水孔 係呈三角形。 5 .如申請專利範圍第1項所述水濂冷卻片,其中,該水濂冷 卻片係具附水性。 6 . —種水濂牆,係由至少二水濂冷卻片所組成,乃使二水濂 冷卻片呈相異波浪方向之交錯擺放,以使二相異波浪狀條 紋間構成容水空間,再使其一水濂冷卻片呈凹入之波浪條 紋與另一水濂冷卻片呈凸起之波浪條紋相對應,以對合形 成風孔,並使風孔與容水空間形成相對位置之設置,復於 水濂冷卻片之每一波浪狀條紋上設有透水孔。 7 .如申請專利範圍第6項所述水濂牆,其中,該水濂冷卻片 之每一波浪狀條紋端面上係進一步成形有止水肋。 8 .如申請專利範圍第6項所述水濂牆,其中,該水濂冷卻片 之每一間隔呈凹凸狀態之波浪狀條紋上係各別成形有接合 柱與接合孔,以供二水濂冷卻片對合組接。 9 .如申請專利範圍第6項所述水濂牆,其中,該波浪狀條紋 098219803 表單編號Α0101 第10頁/共17頁 0982062260-0 M375850 係使其凹凸之形狀呈梯形狀,以使二水濂冷卻片對合形成 之風孔呈蜂巢狀。 10 .如申請專利範圍第6項所述水濂牆,其中,該水濂冷卻片 之透水孔係呈三角形。 11 .如申請專利範圍第6項所述水濂牆,其中,該水濂冷卻片 係具附水性。 0982062260-0 098219803 表單編號A01〇l 第11頁/共17頁M375850 ", the scope of application for patents: 1. A water-cooling fin, which is formed with a plurality of wavy stripes, and the wavy stripes are spaced and uneven, and a water-stopping rib is formed on each wavy strip end surface. And a water-permeable hole is provided on each of the wavy strips. The water-cooling fin of the first aspect of the invention, wherein each of the wavy strips in the uneven state is formed with a joint. The squid-shaped cooling sheet according to the first aspect of the invention, wherein the wavy stripe has a convex shape in a trapezoidal shape. 4. The water according to claim 1濂 濂 , , 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 It is composed of at least two water-cooling fins, so that the dihydrate fins are staggered in different wave directions, so that the two-phase wavy strips form a water-filling space, and then the water-cooling fins are Concave wavy stripes with another The 濂 cooling fins are corresponding to the wavy stripes of the protrusions, and the wind holes are formed to be opposite to each other, and the wind holes are arranged at a relative position with the water-receiving space, and the water-permeable holes are formed on each wavy strip of the water raft cooling fins. 7. The sluice wall according to claim 6, wherein each wavy stripe end surface of the otter cooling fin is further formed with a water stop rib. 8. As described in claim 6 The water raft wall, wherein the wavy stripe of each of the leeches of the leeches is formed with a joint column and an engaging hole for the merging of the water jet cooling fins. The faucet wall according to item 6 of the patent scope, wherein the wavy stripe 098219803 form number Α0101 10th page/total 17 page 0982062260-0 M375850 has a shape of a concave and convex shape in a trapezoid shape, so that the pair of leeches cooling fins The formed wind hole is in the form of a honeycomb. 10. The water wall according to claim 6, wherein the water permeable fin has a triangular shape. 11. The water according to claim 6 a wall, wherein the water is cooled With the aqueous-based attachment. 0982062260-0 A01〇l Form Number 098219803 Page 11/17 Total
TW98219803U 2009-10-27 2009-10-27 Water curtain cooling sheet and water curtain wall TWM375850U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
TW98219803U TWM375850U (en) 2009-10-27 2009-10-27 Water curtain cooling sheet and water curtain wall

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
TW98219803U TWM375850U (en) 2009-10-27 2009-10-27 Water curtain cooling sheet and water curtain wall

Publications (1)

Publication Number Publication Date
TWM375850U true TWM375850U (en) 2010-03-11

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Application Number Title Priority Date Filing Date
TW98219803U TWM375850U (en) 2009-10-27 2009-10-27 Water curtain cooling sheet and water curtain wall

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Country Link
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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103988713A (en) * 2014-05-29 2014-08-20 江苏省农业科学院 Mushroom cultivation water curtain type ventilation cooling device
TWI659145B (en) * 2017-04-12 2019-05-11 黃榮芳 Factory heat dissipation structure

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103988713A (en) * 2014-05-29 2014-08-20 江苏省农业科学院 Mushroom cultivation water curtain type ventilation cooling device
TWI659145B (en) * 2017-04-12 2019-05-11 黃榮芳 Factory heat dissipation structure

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