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Balancing urban density,energy performance and environmental quality in the Mediterranean: a typological evaluation based on photovoltaic potential

机译:地中海的城市密度,能源性能和环境质量:基于光伏电位的类型学评估

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As research on the correlation between urban design and environmental performance is still lacking,the following long-standing question still stands-How far can we densify urban districts without sacrificing their energy balance and indoor environmental quality? This question served as the starting point for a parametric typological study conducted at the block scale in the context of Tel Aviv,with the overall aim of promoting performance driven design of Mediterranean urban environments.Dynamic input parameters included fenestration ratio,aspect ratios and floor area ratios of 5 different building typologies in both office and residential land uses.Environmental outputs included energy cooling loads,spatial daylight autonomy and the monthly average load match between energy demand and photovoltaic energy supply.The courtyard typology was found to achieve the best performance in terms of monthly Load Match,however mostly in residential uses of lower density.Although the high-rise typology offered the best daylight conditions,it recorded the worse performance in terms of energy balance and energy cooling demand.Results demonstrate the potential of a parametric typological workflow to effectively indicate the tradeoffs between single building and urban scale design considerations.This potential could be harnessed to assess the environmental feasibility of net zero energy typologies in Mediterranean climates and will be used for district energy studies as part of future work.
机译:随着城市设计与环境绩效之间的相关性仍然缺乏研究,以下长期存在的问题仍然存在 - 我们可以在不牺牲他们的能量平衡和室内环境质量的情况下致密城市区的多远这个问题是在特拉维夫的背景下在块规模上进行参数学类型研究的起点,其促进地中海城市环境的性能驱动设计的整体目标。动态输入参数包括更新比率,纵横比和地板办公室和住宅用地的5种不同建筑类型的比率。环境输出包括能量冷却负荷,空间日光自治和能源需求与光伏能量供应之间的月平均负载匹配。发现庭院类型化以实现最佳性能每月负载匹配,然而,大多数是较低密度的住宅用途。虽然高层类型化提供了最佳的日光条件,但它在能量平衡和能量冷却需求方面记录了更糟的性能。结果证明了参数学类型工作流程的潜力有效地表明单一建筑之间的权衡D城市规模设计考虑因素。可以利用该潜力来评估地中海市净零能量类型的环境可行性,并将用于区能源研究作为未来工作的一部分。

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