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Embodied Energy, CO_(2e), and Construction Cost of Indian Housing: Model of Low-Rise versus High-Rise Development

机译:所体现的能源,CO_(2E)和印度住房的施工成本:低层高层发展模型

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There has been a good deal of discussion over the most sustainable model for development of housing in India. Planners discuss the advantages of low-rise versus high-rise development in terms of energy and cost efficiency. Shortage and high cost of land has been a justification for high-rise development. In this paper, mixed housing (EWS, LIG, MIG, and HIG), from 1 to 30 stories, has been analyzed at a city level for a fixed population for embodied energy, construction cost, and potential for CO_(2e) sequestration. The inference drawn from this exercise is that low-rise (1-4 stories) load-bearing development is energy and cost efficient and can accommodate the maximum number of housing units in about 4% of the land area in a city. High-rise development is 194% and 17.5% more than low-rise in terms of embodied energy and construction cost, respectively. It is also found that 100% of CO_(2e) can be sequestered by planting trees in available open areas in low-rise developments compared with 57% in high-rise development (30-story). Further, high-rise development results in only marginal increase in open areas after four stories. Hence, high-rise development is neither sustainable nor cost effective.
机译:对印度住房最可持续发展的最可持续发展模式有很大讨论。规划者在能源和成本效率方面讨论了低层高层发展的优势。缺乏和高成本的土地对高层发展的理由。本文在1至30个故事中,在一个固定群体的一个城市等级分析了用于固定群体的混合壳体(EWS,LIG,MIG和HIG),用于实施能量,施工成本和CO_(2E)封存的潜力。从本练习中汲取的推动是低层(1-4次故事)承载开发是能源和成本效益,并且可以容纳大约4%的城市土地面积的最大房屋数量。高层发展分别比体现能源和施工成本分别低于低层增长率为194%和17.5%。还发现,100%的CO_(2E)可以通过在低层发展的可用开放区域中种植树木,而高层发展(30层)的57%,通过种植树木(30层)。此外,高层发展导致四层故事后开放区域的边际增加。因此,高层发展既不是可持续的也不是成本效益。

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