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星火太陽能和你一起了解更多太陽能資訊

BIPV的最高境界

返回列表 來源: 碳中和115 發(fā)布日期: 2022.06.12 瀏覽次數(shù):
太陽是一種無窮無盡的能量來源,其輸出功率約為1000瓦/平方米。這個(gè)功率的值是瞬時(shí)的,根據(jù)定義,獲得的能量是它的功率乘以時(shí)間。因此,每年大約有1000到2000小時(shí)的等效全日照,每平方米有1000到2000千瓦時(shí)(取決于具體的位置)得到接收。這相當(dāng)于一桶油(159升),大約含有1700千瓦時(shí)的能量。一平方米的土地每年可以獲得相當(dāng)于一桶石油的收入——這是一大筆錢!我們每年消耗多少能源?開車行駛15000公里大約需要900升油(對(duì)于燃燒6l/100公里的汽車)或5到10平方米的一輛電動(dòng)汽車的光伏板!適度隔熱的房屋需要100-150千瓦時(shí)/平方米的能耗用于供暖/制冷和供電。如果太陽的能量能夠以100%的效率被捕獲,那么很容易計(jì)算出10-15平方米太陽能電池板足以滿足一個(gè)家庭的全部能源需求。
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      實(shí)際上有多種獲取和利用太陽能的可能性,這將使許多房屋成為能源生產(chǎn)者,并實(shí)際上獨(dú)立于其他外部能源。一個(gè)適當(dāng)隔熱的房子當(dāng)然是一個(gè)先決條件。
        光伏通常因其使用和安裝簡(jiǎn)單而被選擇。光伏板可以添加到現(xiàn)有的屋頂(也稱為建筑物添加光伏建筑附著光伏),或者可以更優(yōu)雅地集成到屋頂或立面中(也稱為集成光伏的建筑)光伏建筑一體化).適用于幾乎任何類型的建筑,目前存在的眾多解決方案也允許以非常低的成本生產(chǎn)電力!
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仿石材幕墻效果的太陽能光伏技術(shù)
        許多成功的BIPV項(xiàng)目已經(jīng)完成,主要使用晶體硅模塊、彩色太陽能電池、均勻的黑色外觀,或者在項(xiàng)目中使用薄膜來創(chuàng)造更令人愉悅的結(jié)果。許多研究機(jī)構(gòu)和行業(yè)正在合作設(shè)計(jì)新產(chǎn)品和解決方案,以制造新一代光伏產(chǎn)品,這將改變?nèi)藗兛创退伎冀ㄖ刑柲茈姵匕寮傻姆绞健J聦?shí)上,在過去的幾年里,一些引人注目的新例子已經(jīng)出現(xiàn),包括創(chuàng)造白色模塊或顯色的可能性,如傳統(tǒng)屋頂中使用的產(chǎn)品,以及高分辨率圖像的集成,以獲得更多的美學(xué)應(yīng)用。理論上,每一個(gè)建筑元素都有成為潛在發(fā)電源的無限可能。
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     為屋頂應(yīng)用程序,今天開發(fā)的最成熟的技術(shù)是專門為建筑敏感區(qū)域設(shè)計(jì)的模塊(圖1)。除了電氣生產(chǎn)能力,該模塊還提供了符合建筑材料建筑規(guī)范的高機(jī)械強(qiáng)度。該模塊的細(xì)長(zhǎng)矩形具有大瓷磚外觀,可以集成到歐洲傳統(tǒng)遺產(chǎn)中常見的敏感城市地區(qū)的屋頂中。 光伏建筑一體化正面在高密度的城市中心特別有價(jià)值,在那里,立面與屋頂?shù)拿娣e比隨著建筑物的高度而增加。對(duì)于立面應(yīng)用,開發(fā)了幾種著色技術(shù)和不同類型的基板,以改變標(biāo)準(zhǔn)光伏模塊的視覺外觀。 這些例子展示了太陽能電池板如何在建筑上融入建筑,同時(shí)保持優(yōu)雅和對(duì)歷史遺產(chǎn)的尊重。
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圖1,在納沙泰爾。a)"協(xié)會(huì)之家",2015年瑞士太陽能獎(jiǎng)翻新類(資料來源:海因斯泰因、EPFL和CSEM)。b)弗里堡埃庫維倫斯的傳統(tǒng)農(nóng)場(chǎng),帶有由伊索爾公司生產(chǎn)的太陽能-Terra模塊(來源CSEM),C)伊索爾公司為聯(lián)合建筑公司(挪威)拱門生產(chǎn)的彩色活動(dòng)立面。位于布德里的太陽能公司生產(chǎn)的白色太陽能外墻。

       自然,除了屋頂和外墻,光伏還可以用于許多其他地方:陽臺(tái)、遮陽系統(tǒng)、花園桌子……甚至街道。這完全取決于你的想象!


The sun is an endless source of energy, with an output power of about 1,000 watts per square meter.  The value of this power is instantaneous, and by definition, the energy obtained is its power times time.  As a result, approximately 1,000 to 2,000 hours of equivalent total sunshine are received each year, with 1,000 to 2,000 KWH per square meter (depending on location).  That's equivalent to one barrel of oil (159 liters), which contains about 1,700 kilowatt-hours of energy.  One square metre of land can bring in the equivalent of a barrel of oil every year - that's a lot of money!  How much energy do we consume every year?  Driving 15000 km requires about 900 litres of fuel (for cars burning 6L / 100km) or 5 to 10 square metres of pv panels for an electric car!  Moderately insulated homes require 100-150 KWH/m2 of energy for heating/cooling and power.  If the sun's energy could be captured with 100 percent efficiency, it would be easy to calculate that 10-15 square meters of solar panels would be enough to meet the entire energy needs of a home.  

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There are actually multiple possibilities for capturing and utilizing solar energy, which would make many houses energy producers and virtually independent of other external sources of energy.   A properly insulated house is of course a prerequisite.  

Photovoltaics are often chosen for their ease of use and installation.  Photovoltaic panels can be added to existing roofs (also known as building plus PHOTOVOLTAIC building attached PV) or can be more elegantly integrated into roofs or facades (also known as building with integrated PV).  Suitable for almost any type of building, the numerous solutions that exist today also allow electricity to be produced at a very low cost!  

The picture  

Solar photovoltaic technology imitating the effect of stone curtain wall  

Many successful BIPV projects have been completed using crystalline silicon modules, colored solar cells, uniform black appearance, or thin films in projects to create more pleasing results.   Many research institutions and industries are collaborating to design new products and solutions to manufacture a new generation of photovoltaic products that will change the way people look at and think about solar panel integration in buildings.  In fact, in the past few years, some striking new examples have emerged, including the possibility of creating white modules or color rendering, such as the products used in traditional rooftops, and the integration of high-resolution images for more aesthetic applications.  In theory, every architectural element has unlimited potential to become a potential power source.  

The picture  

The most mature technology being developed today for roofing applications is modules designed specifically for sensitive areas of the building (Figure 1).  In addition to electrical production capacity, the module also provides high mechanical strength in accordance with building codes for building materials.   The module's elongated rectangles have a large tile appearance that can be integrated into the roofs of sensitive urban areas common in European heritage.  Integrated pv building facades are particularly valuable in high-density urban centers, where the area ratio of facades to roofs increases with the height of the building.   For facade applications, several coloring techniques and different types of substrates were developed to change the visual appearance of standard PV modules.  These examples show how solar panels can be incorporated into the building, while maintaining elegance and respect for the historic heritage.  

The picture  

Picture 1, in Neuchatel.  A)" House of associations ", 2015 Swiss Solar Prize Renovation Category (sources: Heinstein, EPFL and CSEM).  B) The traditional farm in Ekuvylens, Fribourg, with solar-Terra modules (source: CSEM) produced by Isol, and C) The coloured active facade produced by Isol for Arch of United Architecture (Norway).  White solar facades made by Solar Energy in Buderi.  

Naturally, pv can be used in many other places besides roofs and facades: balconies, shading systems, garden tables...  Even the streets.  It all depends on your imagination!  


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