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Building cooling energy uncertainty and life cycle economic performance: A stochastic air conditioning behavior model based comparative analysis

机译:建设冷却能量不确定性和生命周期经济效:基于对比分析的随机空调行为模型

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This paper investigates the energy and economic uncertainty of residential apartments using a stochastic AC behavior model and evaluates the appropriateness of existing building standards/codes-based AC setting in predicting energy and life cycle economic performance of energy-saving measures (e.g. wall insulation) in hot summer and cold winter zone of China. Monte Carlo simulation, distribution fitting and statistical tests were used to conduct relevant analysis. Results show that cooling energy uncertainty at different temporal scales is significant ranging from 8.59% (annual) to 70.22% (hourly) while standards/codes-based AC setting does not provide uncertainty information. The widely used simple assumption that the relative values of the energy-saving effects in actual are the same as those in thermal simulation (standard-based AC setting) is incorrect and there is a significant overestimation of cooling energy saving by standard-based AC setting. Further life cycle economic analysis of adding wall insulation shows that standards/codes-based AC setting may overestimate net present value (NPV) by about 1243.82% and lead to an inappropriate design decision when comparing different energy-saving measures. Therefore, existing building standards/codes-based AC setting may lead to biased energy and economic prediction of energy-saving measures and recommendations on future building standard and policy improvements are provided. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本文调查了使用随机交流行为模型的住宅公寓的能量和经济不确定性,并评估了现有建筑标准/代码的AC环境的适当性,以预测节能措施(例如墙壁绝缘)的能源和生命周期经济绩效炎热的夏季和寒冷的冬季区。 Monte Carlo仿真,分配拟合和统计测试用于进行相关分析。结果表明,不同时间尺度的冷却能量不确定性从8.59%(每年)到70.22%(每小时)的显着范围为70.22%,而基于标准/基于标准的AC设置不提供不确定性信息。广泛使用的简单假设实际的节能效果的相对值与热仿真(基于标准的AC设置)相同,并且通过基于标准的AC设置有显着高估冷却节能。进一步生命周期的加入壁绝缘的经济分析表明,基于标准/代码的AC设定可能高估净值(NPV)约1243.82%,并在比较不同的节能措施时导致不恰当的设计决策。因此,基于建筑标准/代码的AC环境可能导致偏见的能量和节能措施的经济预测和关于未来建筑标准的建议和政策改进。 (c)2020 elestvier有限公司保留所有权利。

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