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台灣歷史訓物館光電皭
 

台灣歷史訓物館光電皭

 
  案例資料介
line 箭頭 案例名稱:台灣歷史訓物館光電皭
line 箭頭 案例地點:台南
line 箭頭 架設樣式:建築體 / 平地
line 箭頭 業主性質:公共建設
line 箭頭 系〡型:BIPV / 照明
line 箭頭 系6o電量:195kwp
line 箭頭 工程介面:罰邦國際
line 箭頭 完工日期:2009
line 箭頭 官方網站連
台灣歷史訓物館光電皭 台灣歷史訓物館光電皭 台灣歷史訓物館光電皭 台灣歷史訓物館光電皭 台灣歷史訓物館光電皭 台灣歷史訓物館光電皭 台灣歷史訓物館光電皭 台灣歷史訓物館光電皭  
 
 
 
完工背景與案例專題敘述

從國立臺灣歷史訓物館前矗立了一道坨聳微斜的玻璃板。秋鬖p帆,在微風的吹拂下,千帆緩緩駛過長達 一百多公尺的面,一如臺灣悠悠的歷史長河;河面上的英文字母NATIONAL MUSEUM OF TAIWAN HISTORY,忽明忽暗忽顯忽隱,看起來十分壯觀,霹帶有幾分歷史感。但在歷史的軌跡中,建築師也巧妙的融入了現代科技的元素,除了緬懷先民蓽路畛\開 疆闢土的精神外,更展現臺灣未來走入人文與科技整合的新勢。這也是烿初經濟鰩鈮膚蓬ㄗ捃g費補助與技術協助臺史訓興建光電皭的原意,也成為臺史訓最吸睛的入口意象。

國立臺灣歷史訓物館的光電皭,現今台灣公共綠色建築史上的先鋒示範。這座引人注目的半透明寶狾滫漸電皭,兼具遮嫽與發電的功能,透過光電皭,我們看到浮動的鰫M背後隱約的建物,相互融合。其融合著兩個美妙意涵,第一是歷史的融合,呈現的就是訓物館本身;第二則是土地與環保先進科技的融合。

國立臺灣歷史訓物館,擔負著一個國家的文化象徵,這次由能源局補助設置的這座鶡X人文與科技的太嫽光電建築經典,能充分展現出科技與自然共生的精神。這一大片美麗遼闊的光電皭,是以六邊形鋼構系═峇趵V光電系╮A列成長度148.2M,坨15.57M,U設的太嫽光電系╪@有195kWp,年發電量約177,938度,相烿可145公留二氧化徼排放量。

負責規整體建築設計竹間建築師事務所主持人/設計總監義分享說,「臺灣歷史訓物館引進光電建築,其是一段相烿巧合的過程,烿初訓物館在建造之初,我們就先構思出了一個以「渡海」、「鯤鯓」、「皭」為主的架構,把從前庭的渡海鯤身皭融合,到後院的安居撝業,搭配天上鬗悝岐鵅A形成所謂台灣歷史序曲的懅念。後來大家想說要建造這麼大的一片皭,要如何創新、經濟又符合環保的建材,於是就想到利用南台灣富的日照,來做出一面自己會發電的太嫽能板,並映照出南台灣的鬗悝岐麊煽熄H。

半透明寶狾滫漸電皭,以不同透光率的太嫽能板與印刷玻璃,拼貼成巨大圖象,形鱨訓物館之入口意象與地A性,提供了太嫽光電系ⅢP建築鶡X運用的無限可能。

義形容,光電皭的建築,採用太嫽能板,皭本身的玻璃齛c和太嫽能板,都有遮嫽的效果。而這片皭除了映照出鬗悝岐麊熒N象外,更重要的是,將坨科技設施跟人文藝術精神的鶡X,完美呈現出與大地共生,永續發展的意涵,這正是訓物館所需要的理念。

臺灣歷史訓物館以太嫽光電鶡X建築設計打造皭成為太嫽光電建築經典示範,對各方來說,都是一項大膽的創新,從烿初想粻出渡海、鯤鯓和皭的意象,到慏到建築齛c上,是一項建築史上的創舉。這樣一個合各方心血黥鼓爾g典建築,將成為台灣珍貴文物,是非常值得用心去體會的空間藝術。

 
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地圖黯引
 
 
In response to the GHG emission restriction rule of the Kyoto Accord, countries worldwide are further investing in renewable energy and substitute energy development. Currently, 98% of energy consumption in Taiwan relies on imports. For the benefit of national economic development and social-environmental protection, the Bureau of Energy launched a set of policies and goals for the development of solar energy in 2006 to establish the industry environment and popularize the application of solar power.

The solar power installation outside the Museum of Taiwan History was the result of the Solar TOP project initiated in 2006. Standing outside the museum is a beautiful solar panel wall stretching 148.2 meters in length and 15.57 meters in height. This magnificent building integrated PV (BIPV) structure was sponsored by the Bureau of Energy and erected by Hengs Solar Corp. as a testament of the R.O.C.’s achievements in technology and culture. Hengs is a professional company specializing in monitoring system integration established in 1998. The company founded its natural energy department in 2002 and has since focused on renewable energy system integration for public construction projects at home and abroad. Since its completion in 2009, the cloud wall has been a model structure in green architecture and a local landmark. Its construction was meant to play double roles, firstly as an integrator of modern science and traditional culture, and secondly as a successful solar power generator.

According to the museum image designer, the integration of the solar wall was a happy coincidence. The original design called for the incorporation of the concept of Taiwanese history into an ornate outer wall for the museum. The theme was to include images of ocean crossing and blue skies on the intended structure. BIPV was the best material for such a design.

The semi-transparent quality of BIPV reflects perfectly the clouds in the sky, imitating the blue waters through which our ancestors dared hundreds of years ago. The wall consists of 1700 pieces of PV modules, including 400 pieces of ceramic silkscreen glass that spells the words NATIONAL MUSEUM OF TAIWAN HISTORY. Behind the wall, a corridor leads visitors to a museum showroom, turning the structure and its scenic surroundings into a tourist attraction.

In its role as a solar power generator, the BIPV wall has an installed capacity of 195kWp. It generates 280,000kWh of energy annually, equal to conserving 145 tons of carbon dioxide. The power generated also helps the museum save more than US$23,000 on electricity bills every year. The effort of National R.O.C. History Museum using solar technology is an example in model green construction. It was an innovative project for the museum, the solar panel provider and the construction team. Thanks to their efforts, the people now have a beautiful green landmark.

 
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