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DEVELOPMENT OF A SIMULATION ANALYSIS ENVIRONMENT FOR VENTILATED SLAB SYSTEMS

机译:通风板系统仿真分析环境的开发

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This paper presents a simulation environment developed to assess the energy performance of hollow core ventilated slab systems. The developed simulation environment combines a transient finite difference solution of a ventilated slab system with an RC network model for a multi-floor building. The developed simulation environment takes into account ventilated slab system thermal bridge effects on the energy performance of multi-floor buildings. The predictions of the developed simulation environment are verified against those obtained from a detailed whole-building energy simulation tool. In addition, several parametric analyses are performed to determine the performance of ventilated slab systems under various design and operating conditions. In particular, the parametric analyses include the effect of supply air inlet temperature, air mass flow rate, hollow core depth, and hollow core diameter. In particular, it is found that due to increased heat transfer through slab edge increases due to thermal bridge effects, ventilated slab requires 5% more heating and 7% more cooling energy end-uses.
机译:本文介绍了一种模拟环境,用于评估空心通风板系统的能源性能。所开发的仿真环境将通风楼板系统的瞬态有限差分解决方案与用于多层建筑的RC网络模型相结合。发达的仿真环境考虑了通风平板系统的热桥对多层建筑物的能源性能的影响。对照从详细的整栋建筑能源模拟工具获得的预测,验证了已开发模拟环境的预测。此外,还进行了一些参数分析,以确定通风板系统在各种设计和操作条件下的性能。尤其是,参数分析包括送风入口温度,空气质量流量,中空芯深度和中空芯直径的影响。特别地,发现由于通过板边缘的热传递增加,由于热桥效应而增加,通风的板最终需要多加热5%和增加7%的冷却能量。

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