首页> 外文会议>International conference on energy sustainability;ES2010 >SYSTEMS INTEGRATION FOR COST EFFECTIVE CARBON NEUTRAL BUILDINGS: A MASDAR HEADQUARTERS CASE STUDY
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SYSTEMS INTEGRATION FOR COST EFFECTIVE CARBON NEUTRAL BUILDINGS: A MASDAR HEADQUARTERS CASE STUDY

机译:成本有效的碳中性建筑的系统集成:马斯达尔总部案例研究

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Essential to the development of a low carbon economy will be the advancement of building product and process to reduce the capital and whole lifecycle cost of low, zero and net-positive energy buildings to allow these structures to be realized at a greater rate. On the whole, the built environment is responsible for one of the largest fractions of global energy consumption and thus anthropomorphic climate change, a result of the greenhouse gas emissions from power generation. When one also considers the energy required to design, fabricate, transport and construct the materials necessary to bring new building stock online, keeping pace with the rapid trend towards urbanization, the importance of the built environment in the energy sustainability equation is clearly evident. Yet, while technologically feasible, the realization of carbon neutral buildings is encumbered by the perception of increased annualized costs for operation and a greater upfront investment. This paper will review the design case of the Masdar International Headquarters, the flagship building of the net-zero carbon emission Masdar city currently being developed within the Abu Dhabi Emirates.Specifically, how an integrated approach enabled by computer simulation early within the design process allowed for improvements in economy and efficiency, setting a model for future high performance buildings.The five-story, 89,040-square-meter office building will incorporate eleven sculpted glass environmental towers to promote natural ventilation and introduce daylight to the interior of the building. These towers will also serve as the structural support for one of the world's largest building integrated photovoltaic arrays, sized to supply 103% of the building's total annual energy requirements while protecting the building and roof garden from intense heat and solar gains. Moreover, by integration into a separate structural trellis system, clean energy can potentially be generated to offset construction requirements while dually shading workers below during the heat of the day. This, along with other key sustainability design strategies such as a solar powered central district cooling system, thermoactive foundation piling, underfloor air distribution, desiccant dehumidification, a nanotechnology enabled building envelope and smart grid enabled facilities management infrastructurewill allow the Masdar Headquarters to reach carbon neutrality within a decade, allowing for the remaining century of its operation to serve as a platform for clean energy generation.
机译:低碳经济发展的关键是建筑产品和工艺的进步,以减少低,零和净正能源建筑的资本成本和整个生命周期成本,从而使这些结构的实现率更高。总体而言,建筑环境是全球能源消耗中最大的部分之一,因此是人为气候变化的原因之一,这是发电产生的温室气体排放的结果。当人们还考虑了设计,制造,运输和构造使新型建筑材料在线使用所需的能源时,与城市化的快速趋势保持同步的时候,建筑环境在能源可持续性方程中的重要性就显而易见了。然而,尽管在技术上可行,但碳中和建筑的实现受到人们的印象,即每年运营成本的增加和前期投资的增加。本文将回顾马斯达尔国际总部的设计案例,这是目前在阿布扎比酋长国开发的零碳净排放马斯达尔城市的旗舰建筑。 具体而言,在设计过程的早期通过计算机模拟实现的集成方法如何改善经济性和效率,为未来的高性能建筑树立模型。 这座五层楼高的办公大楼占地89,040平方米,将包含11座雕刻的玻璃环保塔,以促进自然通风并为建筑物内部引入日光。这些塔还将用作世界上最大的建筑物集成光伏阵列之一的结构支撑,其尺寸可满足建筑物每年总能源需求的103%,同时保护建筑物和屋顶花园免受强烈的热量和太阳能的侵害。此外,通过集成到单独的结构格架系统中,可以在一天的炎热期间潜在地产生清洁能源,以抵消建筑要求,同时在下方双重遮盖工人。这,连同其他关键的可持续发展设计策略,例如太阳能中央区域冷却系统,地热基础桩,地下空气分配,干燥剂除湿,启用纳米技术的建筑围护结构和启用智能电网的设施管理基础设施,将使Masdar总部能够实现碳中和在十年之内,将其剩余的运营时间用作清洁能源发电的平台。

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