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Study of residential underfloor air distribution (UFAD) systems using a new modelling approach

机译:使用新的建模方法研究住宅地板下空气分配(UFAD)系统

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Although single/multi-zone thermal models have their own advantages, like simple and fast computations of building energy demand, the accuracy of these models is problematic. The assumption of a uniform room temperature reduces the accuracy of the final energy demand results. In fact, the single/multi-zone thermal models are not able to predict indoor thermal behaviours or building energy demands accurately, if a non-uniform environment in a room or building is created by a single or multiple heating, ventilation, and air conditioning (HVAC) systems, i.e. an underfloor air distribution (UFAD) system. The research described in this article investigated the use of a new approach to improve the computational quality and accuracy of the heating energy demands of UFAD systems using an integrated zonal/multi-zone model. Several case studies were carried out, and the results demonstrate not only the advantages of UFAD systems used in a residential house in terms of energy saving, but also the importance of thermostat location in the prediction of building energy consumption. Additionally, the results indicate that the conventional single/multi-zone models are not appropriate to use for UFAD systems in the building energy demand predictions.
机译:尽管单/多区域热模型具有其自身的优势,例如简单快速地计算建筑能源需求,但是这些模型的准确性还是有问题的。假定室温均匀,会降低最终能源需求结果的准确性。实际上,如果通过单次或多次供暖,通风和空调造成房间或建筑物内的环境不均匀,那么单/多区域热模型就无法准确预测室内的热行为或建筑物的能源需求。 (HVAC)系统,即地板空气分配(UFAD)系统。本文所述的研究调查了使用新方法来改善UFAD系统使用集成的区域/多区域模型的加热能量需求的计算质量和准确性。进行了一些案例研究,结果不仅证明了在住宅中使用的UFAD系统在节能方面的优势,而且还显示了恒温器在预测建筑能耗中的重要性。此外,结果表明,传统的单/多区域模型不适用于建筑物能源需求预测中的UFAD系统。

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