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CFD simulation and evaluation of different heating systems installed in low energy building located in sub-arctic climate

机译:亚北极气候中低能耗建筑中安装的不同供暖系统的CFD模拟和评估

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Computational Fluid Dynamics (CFD) simulations were used to study the indoor climate in a low energy building in northern Sweden. The building's low heat requirement raise the prospect of using a relatively simple and inexpensive heating system to maintain an acceptable indoor environment, even in the face of extremely low outdoor temperature. To explore the viability of this approach, the indoor climate in the building was studied considering three different heating systems: a floor heating system, air heating through the ventilation system and an air heat pump installation with one fan coil unit. The floor heating system provided the most uniform operative temperature distribution and was the only heating system that fully satisfied the recommendations to achieve tolerable indoor climate set by the Swedish authorities. On the contrary, air heating and the air heat pump created a relatively uneven distribution of air velocities and temperatures, and none of them fulfills the specified recommendations. From the economic point of view, the air heat pump system was cheaper to be installed but produced a less pleasant indoor environment than the other investigated heating systems. (C) 2015 Elsevier Ltd. All rights reserved.
机译:计算流体动力学(CFD)模拟用于研究瑞典北部一栋低能耗建筑的室内气候。建筑物的低热量需求提高了使用相对简单且便宜的供暖系统来维持可接受的室内环境的前景,即使面对极低的室外温度也是如此。为了探索这种方法的可行性,研究了建筑物的室内气候,其中考虑了三种不同的供暖系统:地板供暖系统,通过通风系统进行的空气加热以及带有一个风机盘管的空气热泵装置。地板采暖系统提供了最均匀的工作温度分布,并且是唯一完全满足瑞典当局设定的可容忍室内气候建议的采暖系统。相反,空气加热和空气热泵使空气的速度和温度分布相对不均匀,它们都不符合指定的建议。从经济角度来看,空气热泵系统的安装成本较低,但与其他研究的供暖系统相比,室内环境不那么舒适。 (C)2015 Elsevier Ltd.保留所有权利。

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