TWI475181B - Both solar power and indoor ventilation structure - Google Patents
Both solar power and indoor ventilation structure Download PDFInfo
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- TWI475181B TWI475181B TW101135533A TW101135533A TWI475181B TW I475181 B TWI475181 B TW I475181B TW 101135533 A TW101135533 A TW 101135533A TW 101135533 A TW101135533 A TW 101135533A TW I475181 B TWI475181 B TW I475181B
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- Y—GENERAL 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
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E10/00—Energy generation through renewable energy sources
- Y02E10/40—Solar thermal energy, e.g. solar towers
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Description
本發明係有關於一種兼具太陽能發電和室內通風構造,特別是指一種不需耗費任何能源,即能對於室內及太陽能板進行散熱,以維持其高發電效率之散熱構造。 The present invention relates to a solar power generation and indoor ventilation structure, and particularly relates to a heat dissipation structure capable of dissipating heat to indoors and solar panels without consuming any energy, thereby maintaining high power generation efficiency.
目前由於國際能源短缺,而主要係以太陽能作為最佳的替代能源,尤其太陽能取得容易、用之不盡,而且也不會有環境污染或破壞的疑慮,所以太陽能運用的前景相當看好。 At present, due to the international energy shortage, solar energy is the best alternative energy source. In particular, solar energy is easy to use and inexhaustible, and there is no doubt about environmental pollution or damage. Therefore, the prospect of solar energy application is quite promising.
例如中華民國99年12月21日所公告之新型第M395143號「太陽能通風器及使用該太陽能通風器之通風系統」專利案,其係揭露:該太陽能通風器之結構包括一太陽能板,其係結合於一殼座之頂面;一殼座,相對於太陽能板之底面具備有一入風口,靠近入風口且垂直該殼座底面之一側面具備有一出風口,於入風口與出風口間以一概呈ㄩ型之柵板分隔,且該柵板與入風口相鄰接之一縱面形成有一向上之缺口;一橫軸式風扇,一側具備一馬達,於頂面結合一蓋板,且左側、右側及後側為封閉式的設計;一控制器,該控制器係分別與太陽能板、橫軸式風扇之馬達及蓄電單元電性連結;一蓄電單元,該蓄電單元係與控制器電性連結,且透過控制器可對該蓄電單元進行電力的雙向存取;藉由橫軸式風扇之蓋板結合於殼座之柵板上,並使橫軸式風扇對應於殼座之入 風口與出風口位置,同時將控制器與蓄電單元置入該殼座內,將太陽能板結合於殼座之頂面,而構成一太陽能通風器。該太陽能通風器進一步可使用於建築物之屋頂之外部平面或建築物之屋頂之夾層,而構成該建築物之通風系統。 For example, the new type M395143 "Solar ventilator and ventilation system using the solar ventilator" disclosed in the Republic of China on December 21, 1999, discloses that the structure of the solar ventilator includes a solar panel. The utility model is coupled to a top surface of a shell; a shell seat having an air inlet opening opposite to the bottom surface of the solar panel, and an air outlet opening adjacent to the air inlet opening and perpendicular to one side of the bottom surface of the shell seat, between the air inlet and the air outlet The grid is separated by a grid type, and the grid plate forms an upward gap with one of the longitudinal faces adjacent to the air inlet; a horizontal axis fan has a motor on one side, a cover plate on the top surface, and a left side The right side and the rear side are closed designs; a controller is electrically connected to the solar panel, the motor of the horizontal axis fan and the power storage unit respectively; an electric storage unit, the electric storage unit and the controller are electrically connected Connected, and the power storage unit can perform bidirectional access to the power through the controller; the cover plate of the horizontal axis fan is coupled to the grid of the housing, and the horizontal axis fan corresponds to the housing The tuyere and the outlet are placed, and the controller and the electric storage unit are placed in the housing, and the solar panel is coupled to the top surface of the housing to form a solar ventilator. The solar ventilator can further be used for the outer plane of the roof of the building or the mezzanine of the roof of the building to form the ventilation system of the building.
然,該專利前案之太陽能通風器,僅能對於建築物之屋頂表面進行降溫,如果處於白天時降溫過於緩慢,遠遠比不上太陽曝曬時的昇溫速度,所以其降溫效果有限,而且會造成太陽能通風器本身的溫度上昇,而影響其發電效效,又當夜間時係自動切換由蓄電單元供電至橫軸式風扇之馬達,持續於夜間驅動橫軸式風扇之轉動,使太陽能通風器於夜間仍可持續進行強制空氣對流的作業,其必須耗費所產生之電力,因此在使用效果上並不夠理想。 However, the solar ventilator of the patent case can only cool the roof surface of the building. If the temperature is too slow during the daytime, it is far less than the heating rate when the sun is exposed, so the cooling effect is limited, and The temperature of the solar ventilator itself rises, which affects its power generation efficiency. When it is nighttime, it automatically switches the motor that is powered by the power storage unit to the horizontal axis fan, and continues to drive the horizontal axis fan at night to make the solar ventilator Forced air convection is still possible at night, which must consume the electricity generated, so it is not ideal in terms of use.
另有中華民國96年11月21日所公告之新型第M322435號「使用於廠房之太陽能通風及照明設備」專利案,其係揭露:主要用以設置於廠房屋頂上方,用以提供電力於通風及照明設備,達可使廠房的通風及省電效果者。其具備有設置在廠房屋頂上方之太陽能板以連結通風設備及照明設備,俾太陽能板吸附太陽光能轉為電力,並將此電力提供通風設備產生轉動,以將廠房內部熱氣抽出室外,並當太陽能板之電力充足者,亦可提供廠內之照明設備,然太陽能板之電力不足者,利用一切換開關將一般電力切換連結通風設備及照明設備,或可以切換僅提供通風設備或僅提供照明設備使用,使得廠房內部的通風設備及照明設備均能各自發揮其作用。 In addition, the new patent No. M322435 “Solar Ventilation and Lighting Equipment for Plants” announced by the Republic of China on November 21, 1996, is disclosed as being mainly placed above the roof of the plant to provide electricity for ventilation. And lighting equipment, to make the plant ventilation and power saving effect. The utility model has a solar panel disposed above the roof of the factory to connect the ventilation device and the lighting device, and the solar panel absorbs the sunlight energy into electric power, and the electric power is supplied to the ventilation device to generate the rotation, so that the hot air inside the plant is taken out of the room, and when If the solar panel has sufficient power, it can also provide lighting equipment in the factory. However, the power of the solar panel is insufficient. The switch can be used to switch the general power to the ventilation equipment and lighting equipment, or can switch to provide only ventilation or only provide illumination. The use of the equipment enables the ventilation equipment and lighting equipment inside the plant to play their respective roles.
惟,該專利前案之構造,同樣必須耗費電力來進行室內散熱 ,因此仍然未能達到最佳之使用效果。 However, the construction of the patent case must also consume electricity for indoor heat dissipation. Therefore, it still fails to achieve the best results.
爰此,有鑑於目前所使用之太陽能通風設備,具有上述種種之缺點,故本發明提供一種兼具太陽能發電和室內通風構造,係設有一通風座,其係設有一通道,該通道內係設有相對之一透光面及一受光面,另該通道之二端係分別設有一進氣端及一出氣端,該出氣端之高度恆保持高過於該進氣端,又該進氣端係分別設有一第一入口及一第二入口,並於該第一入口及該第二入口之間設有一活動樞轉之閘門,藉以控制該閘門關閉該第一入口或第二入口,另該進氣端之第一入口係通向室內,而該第二入口及該出氣端係分別通向室外;至少一太陽能板,其係設置於該通風座之受光面上。 Therefore, in view of the above-mentioned various types of solar ventilating equipment, the present invention provides a solar power generation and indoor ventilation structure, and is provided with a ventilating seat, which is provided with a passageway, and the passage is provided therein. There is a light-transmissive surface and a light-receiving surface, and the two ends of the channel are respectively provided with an air inlet end and an air outlet end, and the height of the air outlet end is kept high above the air inlet end, and the air inlet end is further Separating a first inlet and a second inlet respectively, and providing a movable pivoting gate between the first inlet and the second inlet, thereby controlling the gate to close the first inlet or the second inlet, and further The first inlet of the gas end is open to the indoor, and the second inlet and the outlet end are respectively open to the outside; at least one solar panel is disposed on the light receiving surface of the ventilation seat.
本創作進一步設有一遮雨罩,其係裝設於該通道之出氣端。 The creation further includes a rain cover that is mounted on the outlet end of the passage.
上述透光面係為玻璃、壓克力、玻璃纖維或塑膠之透光材質所製成。 The light transmissive surface is made of glass, acrylic, glass fiber or plastic light-transmitting material.
上述出氣端係設置有一護網。 The outlet end is provided with a protective net.
本發明具有下列之優點: The invention has the following advantages:
1.本發明不需要耗費任何的能源,即可對於室內進行散熱降溫的作用。 1. The invention does not require any energy source, and can perform the function of cooling and cooling indoors.
2.本發明同時也可對於太陽能板進行熱對流,使其散熱降溫,藉以維持其高發電效率,並防止其衰減。 2. The invention can also perform thermal convection on the solar panel to cool the heat, thereby maintaining its high power generation efficiency and preventing its attenuation.
3.本發明之構造相當簡單,製造極其容易,而且成本低廉, 適合大量生產製造及安裝,並可達到節能減碳之需求。 3. The construction of the present invention is relatively simple, extremely easy to manufacture, and low in cost. Suitable for mass production and installation, and can meet the needs of energy saving and carbon reduction.
(1)‧‧‧通風座 (1) ‧‧‧ventilation seat
(11)‧‧‧通道 (11) ‧‧‧ channels
(12)‧‧‧透光面 (12)‧‧‧Transparent surface
(13)‧‧‧受光面 (13) ‧‧‧Glossy surface
(14)‧‧‧進氣端 (14) ‧‧‧ intake end
(15)‧‧‧出氣端 (15) ‧ ‧ venting end
(16)‧‧‧第一入口 (16) ‧ ‧ first entrance
(17)‧‧‧第二入口 (17) ‧ ‧ second entrance
(18)‧‧‧閘門 (18) ‧‧ ‧ gate
(19)‧‧‧護網 (19) ‧ ‧ Guard net
(2)‧‧‧太陽能板 (2) ‧‧‧ solar panels
(3)‧‧‧遮雨罩 (3) ‧‧‧ rain cover
(A)‧‧‧建築物 (A) ‧ ‧ buildings
(B)‧‧‧太陽 (B) ‧ ‧ sun
第一圖係為本發明之組合剖視圖。 The first figure is a combined cross-sectional view of the present invention.
第二圖係為本發明開啟第一入口之熱空氣流動示意圖。 The second figure is a schematic diagram of the hot air flow of the first inlet of the present invention.
第三圖係為本發明開啟第二入口之熱空氣流動示意圖。 The third figure is a schematic diagram of the hot air flow for opening the second inlet of the present invention.
首先,請參閱第一圖所示,本發明係包括有通風座(1)、太陽能板(2)及遮雨罩(3),其中:通風座(1),其係設有一通道(11),該通道(11)內之二相對壁面上係分別設有一透光面(12)及一受光面(13),其中該透光面(12)係為玻璃、壓克力、玻璃纖維、塑膠等透光材質所製成,藉以可供陽光通過而照射於該受光面(13)上,又該受光面(13)係恆朝向南方,藉以能終日面對到陽光,另該通道(11)之二端係分別設有一進氣端(14)及一出氣端(15),其中該出氣端(15)之高度恆保持高過於該進氣端(14),又該進氣端(14)係分別設有一第一入口(16)及一第二入口(17),並於該第一入口(16)及該第二入口(17)之間設有一可活動樞轉之閘門(18),藉以利用自動或手動方式控制該閘門(18)關閉該第一入口(16)或第二入口(17),另該進氣端(14)之第一入口(16)係通向一建築物(A)之室內,而該第二入口(17)及該出氣端(15)係分別通向室外,並於該出氣端(15)設置有一護網(19),藉以防止昆蟲或其他生物進入通道(11)而侵入到室內。 First, referring to the first figure, the present invention includes a ventilating seat (1), a solar panel (2) and a rain cover (3), wherein: the venting seat (1) is provided with a passage (11) The two opposite sides of the channel (11) are respectively provided with a light transmitting surface (12) and a light receiving surface (13), wherein the light transmitting surface (12) is glass, acrylic, glass fiber, plastic It is made of a light-transmitting material, so that the sunlight can pass through the light-receiving surface (13), and the light-receiving surface (13) is always facing the south, so that the sunlight can be faced all the time, and the passage (11) The second end is respectively provided with an intake end (14) and an air outlet end (15), wherein the height of the outlet end (15) is kept high above the intake end (14), and the intake end (14) Each of the first inlet (16) and the second inlet (17) is provided with a movable pivoting gate (18) between the first inlet (16) and the second inlet (17). The gate (18) is controlled to close the first inlet (16) or the second inlet (17) by an automatic or manual method, and the first inlet (16) of the inlet end (14) leads to a building ( A) indoor, and the second inlet (17) and the gas (15) lines leading to the outside, respectively, and is provided with a retaining net (19) to the outlet end (15), so as to prevent insects or other organisms into the channel (11) entering the chamber.
太陽能板(2),其係設置於該通風座(1)之受光面(13)上,該 太陽能板(2)係可供接收陽光後,將其轉換成為電能輸出,以供其他設備裝置使用。 a solar panel (2) disposed on the light receiving surface (13) of the venting seat (1), The solar panel (2) is designed to receive sunlight and convert it into an electrical energy output for use by other equipment.
遮雨罩(3),其係裝設於該通道(11)之出氣端(15)上,藉以當下雨時,可以遮蔽雨水防止其流入到室內。 A rain cover (3) is attached to the air outlet end (15) of the passage (11) so that when it rains, rainwater can be shielded from flowing into the room.
使用時,如第二圖所示,其係將該進氣端(14)之第一入口(16)予以連通至一建築物(A)之室內,而該第二入口(17)及該出氣端(15)係分別通向室外,並且控制該閘門(18)關閉該第二入口(17),而開啟該第一入口(16),當白天太陽(B)的陽光照射通過該透光面(12),而直接照射到該受光面(13)上的太陽能板(2)時,該太陽能板(2)係能接收該陽光,並將其轉換成為一電能輸出,以供應給建築物(A)內或遠端其他設備裝置使用,而該太陽能板(2)受熱後所產生之熱能,以及該建築物(A)之室內的熱能,均可透過煙囪效應,即係利用熱空氣會向上昇起,而冷空氣會下降的原理,因此室內溫度較高的空氣則會向上昇起,而通過該進氣端(14)的第一入口(16),進入到該通道(11)內,並與該太陽能板(2)的熱能進行熱交換,而所有的熱空氣則會沿著該通道(11)持續向上昇起,而由該出氣端(15)排出到室外,如此周而復始的循環散熱,則可使建築物(A)的室內及該太陽能板(2)均保持低溫,並且能夠維持該太陽能板(2)的高發電效率,而不至於衰減。 When in use, as shown in the second figure, it connects the first inlet (16) of the intake end (14) to the interior of a building (A), and the second inlet (17) and the outlet The end (15) is respectively open to the outside, and the gate (18) is controlled to close the second inlet (17), and the first inlet (16) is opened, and the sunlight of the daytime sun (B) passes through the transparent surface. (12), when directly irradiating the solar panel (2) on the light receiving surface (13), the solar panel (2) can receive the sunlight and convert it into an electric energy output for supply to the building ( A) use of other equipment devices inside or at the far end, and the heat energy generated by the solar panel (2) after being heated, and the heat energy of the room (A), can pass through the chimney effect, that is, the use of hot air will The principle of rising, and the cold air will fall, so the air with higher indoor temperature will rise upward, and enter the channel (11) through the first inlet (16) of the inlet end (14). And exchange heat with the heat energy of the solar panel (2), and all the hot air continues to rise along the channel (11), and is discharged from the outlet end (15) Outdoor heat cycle again and again, it will enable the building (A) and the interior of the solar panel (2) are kept low, and to maintain the solar panel (2) a high power generation efficiency, and thus will not decay.
又當室內的溫度降低時,如第三圖所示,其係控制該閘門(18)樞轉而關閉該第一入口(16),並開啟該第二入口(17),藉以利用室外的冷空氣,通過該進氣端(14)的第二入口(17),而進入到該通道(11)內,並與該太陽能板(2)受到太陽(B)照射後所產生的熱能進行熱交換,而熱交換後之熱空氣則會沿著該通道(11)持 續向上昇起,並由該出氣端(15)排出到室外,如此利用室外的冷空氣,可以周而復始的循環散熱,藉以使該太陽能板(2)能保持低溫,同樣可以一直維持該太陽能板(2)的高發電效率,以防止其衰減。 When the temperature in the room is lowered, as shown in the third figure, it controls the gate (18) to pivot to close the first inlet (16), and opens the second inlet (17), thereby utilizing the outdoor cold. Air enters the passage (11) through the second inlet (17) of the intake end (14) and exchanges heat with the heat generated by the solar panel (2) after being irradiated by the sun (B) And the hot air after heat exchange will be held along the channel (11) The continuation rises and is discharged to the outside by the outlet end (15), so that the outdoor cold air can be used for heat dissipation in a cycle, so that the solar panel (2) can be kept at a low temperature, and the solar panel can be maintained at the same time ( 2) High power generation efficiency to prevent its attenuation.
惟,以上所述僅為本發明其中之一最佳實施例,當不能以此限定本發明之申請專利保護範圍,舉凡依本發明之申請專利範圍及說明書內容所作之簡單的等效變化與替換,皆應仍屬於本發明申請專利範圍所涵蓋保護之範圍內。 However, the above description is only one of the preferred embodiments of the present invention, and the scope of the patent application and the contents of the description of the present invention are not limited thereto. All should still fall within the scope of protection covered by the scope of the patent application of the present invention.
(1)‧‧‧通風座 (1) ‧‧‧ventilation seat
(11)‧‧‧通道 (11) ‧‧‧ channels
(12)‧‧‧透光面 (12)‧‧‧Transparent surface
(13)‧‧‧受光面 (13) ‧‧‧Glossy surface
(14)‧‧‧進氣端 (14) ‧‧‧ intake end
(15)‧‧‧出氣端 (15) ‧ ‧ venting end
(16)‧‧‧第一入口 (16) ‧ ‧ first entrance
(17)‧‧‧第二入口 (17) ‧ ‧ second entrance
(18)‧‧‧閘門 (18) ‧‧ ‧ gate
(19)‧‧‧護網 (19) ‧ ‧ Guard net
(2)‧‧‧太陽能板 (2) ‧‧‧ solar panels
(3)‧‧‧遮雨罩 (3) ‧‧‧ rain cover
(A)‧‧‧建築物 (A) ‧ ‧ buildings
Claims (4)
Priority Applications (1)
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TW101135533A TWI475181B (en) | 2012-09-27 | 2012-09-27 | Both solar power and indoor ventilation structure |
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TW101135533A TWI475181B (en) | 2012-09-27 | 2012-09-27 | Both solar power and indoor ventilation structure |
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TW201413195A TW201413195A (en) | 2014-04-01 |
TWI475181B true TWI475181B (en) | 2015-03-01 |
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Citations (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
TWM322435U (en) * | 2007-05-25 | 2007-11-21 | Jia Huei Da Entpr Co Ltd | Solar energy ventilation and lighting equipment for use in plant |
CN100432571C (en) * | 2006-04-29 | 2008-11-12 | 北京工业大学 | Solar energy enhanced natural ventilating and green lighting system |
CN201416553Y (en) * | 2009-02-11 | 2010-03-03 | 王钢 | Wind-driven air exchange device |
CN202002254U (en) * | 2011-03-30 | 2011-10-05 | 河南科达节能环保有限公司 | Temperature reducing system of solar energy air collector |
-
2012
- 2012-09-27 TW TW101135533A patent/TWI475181B/en not_active IP Right Cessation
Patent Citations (4)
Publication number | Priority date | Publication date | Assignee | Title |
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CN100432571C (en) * | 2006-04-29 | 2008-11-12 | 北京工业大学 | Solar energy enhanced natural ventilating and green lighting system |
TWM322435U (en) * | 2007-05-25 | 2007-11-21 | Jia Huei Da Entpr Co Ltd | Solar energy ventilation and lighting equipment for use in plant |
CN201416553Y (en) * | 2009-02-11 | 2010-03-03 | 王钢 | Wind-driven air exchange device |
CN202002254U (en) * | 2011-03-30 | 2011-10-05 | 河南科达节能环保有限公司 | Temperature reducing system of solar energy air collector |
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TW201413195A (en) | 2014-04-01 |
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