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Modelling energy use in residential buildings: How design decisions nfluence final energy performance in various Chilean climates

机译:对住宅建筑中的能源使用进行建模:设计决策如何影响各种智利气候下的最终能源绩效

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To reduce the energy consumption in buildings, there is a demand for tools that identify significant parameters of energy performance. The work presents the development and validation of a simulation model, called MEEDI, and graphical figures for the parametric sensitivity investigation of energy performance in different climates in Chile. The MEEDI is based on the ISO 13790 monthly calculation method of building energy use with two improved procedures for the calculation of the heat transfer through the floor and the solar heat gains. The graphical figures illustrate the effects of climate conditions, envelope components and window size and orientation on the energy consumption. The MEEDI program can contribute to find the best solution to increase energy efficiency in residential buildings. It can be adapted for various parameters, making it useful for future projects. The economic viability of specific measures for building envelope materials was analysed. Payback periods range from 5 to 27 years depending on the location and energy scenario. The study illustrates how building design decisions can have a significant impact on final energy performance. With simple envelope components modification, valuable energy gains and carbon emission reductions can be achieved in a cost-effective manner in Chile.
机译:为了减少建筑物中的能耗,需要一种工具来识别能源性能的重要参数。这项工作提出了称为MEEDI的仿真模型的开发和验证,以及用于智利不同气候条件下能源绩效的参数敏感性研究的图形图。 MEEDI基于ISO 13790建筑能耗的月度计算方法,并通过两种改进的程序来计算通过地板的热传递和太阳热能的获取。图形显示了气候条件,围护结构组件以及窗户尺寸和方向对能耗的影响。 MEEDI计划可以帮助找到最佳解决方案,以提高住宅建筑的能源效率。它可以适应各种参数,从而对将来的项目很有用。分析了用于建筑围护结构材料的特定措施的经济可行性。投资回收期从5年到27年不等,具体取决于地点和能源情况。该研究说明了建筑设计决策如何对最终能源绩效产生重大影响。通过简单的信封组件修改,可以在智利以经济有效的方式实现宝贵的能源获取和碳排放减少。

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