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A simple calculation method for the energy performance of double skin facades

机译:一种双层外墙能量性能的简单计算方法

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摘要

Presently the assessment of the thermal behaviour and the energy efficiency of naturally ventilated double skin facades (DSF) is only possible by using complex simulation tools, which allow inter-connections between fluid dynamics, energy balances and optical transport mechanisms. The performance assessment of mechanically ventilated DSF is slightly easier but still requires simulation tools. Because of the interaction of separate calculation results, extensive iterations are often necessary. This makes it impossible to have reliable predictions on energy efficiency and impacts on comfort in the early planning phase and to sizable uncertainties at designers and investors.Therefore an assessment method was developed in the IEE project BESTFACADE. which on the one hand can be integrated in the assessment methods of the EPBD and on the other hand offers sufficient accuracy of the thermal behaviour and the energy performance of the system. Similar to the standardised approach for the winter gardens, trombe walls and the ventilated building envelope parts of the ISO 13790. annex F. a monthly balanced calculation procedure was developed and evaluated based on sensitivity studies performed in earlier projects of the consortium partners. This calculation procedure harmonises with the currently developed CEN-Standards for the implementation of the EPBD. The main work consisted of the approximation of the airflow in the facade interspace and the adaptation of the utilisation factor of the solar gains to the different facade systems.
机译:目前,仅通过使用复杂的模拟工具就可以评估自然通风的双层皮肤外墙(DSF)的热性能和能效,该工具允许流体动力学,能量平衡和光学传输机制之间的相互联系。机械通风DSF的性能评估稍微容易一些,但仍需要模拟工具。由于单独的计算结果相互影响,因此经常需要进行广泛的迭代。这使得不可能在早期规划阶段就能源效率及其对舒适性的影响做出可靠的预测,也无法为设计师和投资者带来巨大的不确定性。 因此,在IEE项目BESTFACADE中开发了一种评估方法。它一方面可以集成到EPBD的评估方法中,另一方面可以为系统的热性能和能量性能提供足够的准确性。与冬季花园,壁挂墙和ISO 13790附件F.通风的建筑围护结构部分的标准化方法类似,根据联盟合作伙伴早期项目中进行的敏感性研究,制定并评估了月度平衡计算程序。该计算程序与当前为实施EPBD而制定的CEN标准相一致。主要工作包括对立面空间中气流的逼近以及使太阳能增益的利用率适应不同立面系统的需求。

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