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On the green adaptation of urban developments in Egypt; predicting community future energy efficiency using coupled outdoor-indoor simulations

机译:关于埃及城市发展的绿色适应;结合室外-室内模拟预测社区未来的能源效率

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摘要

This research aims to investigate adaptation opportunities of Egyptian urban communities for climate change by the application of green cover and its effect on domestic energy efficiency in present and future. Coupled outdoor-indoor simulations were applied to overcome the incapability of packages to do both jobs in one tool and to account for the effects of adaptation of urban greenery on the indoor performance since indoor simulations tools does not consider microclimatic interactions. In addition to the three types of urban trees which modeling parameters were measured, green roofs and facades were applied. Present and future (2020, 2050 and 2080) microclimatic effects of the green cover of two case studies in different climatic zones were compiled conjunctionally in a TMY2 weather files to relate ENVI-metV4.0 simulations (accounting for outdoor conditions) with indoor simulations using DesignBuilderV4.2 which has been applied to predict sites' energy efficiency. Results show that even if TMY3 weather files are available, which is not for many countries including Egypt, it will not account for urban microclimate and vegetation effects of local sites when only indoor simulations take place. Thermal comfort (PMV) and air temperature (T-a) maps' results of both cases outdoor adapted conditions showed cool spots at the center of communities. Those cool spots improvements decrease by 2080 due the effects of climate change. Whole site averages of (Ta) showed increased records for the adapted cases owed to the suggested green facade coverage which draws attention to the sensitive plantation of building walls as well as the coverage percentage of Urban trees that might traps heat. In comparison to their un-adapted cases, the least energy efficiency result for whole site was 10.0% corresponding to 23.8% cost saving at 2080 in case two whereas the maximum was 21.3% corresponding to 35.7% cost savings at present day. Summing energy savings until the end of century, case one payback period was 20 years (in 2037) and case two was 15 years (in 2032). (C) 2017 Elsevier B.V. All rights reserved.
机译:这项研究旨在通过应用绿色覆盖及其对当前和未来国内能源效率的影响,研究埃及城市社区适应气候变化的机会。由于室内模拟工具没有考虑微气候的相互作用,因此应用了室外-室内模拟相结合的方法,以克服包装无法同时使用一种工具完成两项工作以及解决城市绿化对室内性能的影响的能力。除了测量建模参数的三种类型的城市树木外,还应用了绿色屋顶和外墙。使用TMY2气象文件将两个案例研究在不同气候区的绿色覆盖的当前和未来(2020年,2050年和2080年)的微气候影响联合编制,以将ENVI-metV4.0模拟(考虑室外条件)与室内模拟联系起来,使用DesignBuilderV4.2已用于预测站点的能源效率。结果表明,即使有TMY3气象文件,这对于包括埃及在内的许多国家也不是很重要,但仅进行室内模拟时,就不会考虑城市微气候和当地站点的植被影响。两种情况的热舒适度(PMV)和空气温度(T-a)地图的结果都是在室外适应条件下在社区中心显示出凉点。由于气候变化的影响,到2080年,这些热点的改善将减少。 (Ta)的整个场地平均值显示,由于建议的绿色外墙覆盖率,改编案例的记录有所增加,这提示了人们注意建筑物墙壁的敏感种植以及可能积蓄热量的城市树木的覆盖率。与他们的不适应案例相比,在第二个案例中,到2080年,整个场所的能源效率结果最低为10.0%,相当于节省了23.8%,而今天的最大值为21.3%,相当于节省了35.7%。总结本世纪末之前的节能情况,案例一的投资回收期为20年(2037年),案例二的投资回收期为15年(2032年)。 (C)2017 Elsevier B.V.保留所有权利。

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