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Development of a radiant heating and cooling model for building energy simulation software

机译:开发用于建筑能耗模拟软件的辐射供热和制冷模型

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Efficient radiant heating and cooling systems are promising technologies in slashing energy bills and improving occupant thermal comfort in buildings with low-energy demands such as houses and residential buildings. However, the thermal performance of radiant systems in buildings has not been fully understood and accounted for in currently available building energy simulation software. The challenging tasks to improve the applicability of radiant systems are the development of an accurate prediction model and its integration in the energy simulation software. This paper addresses the development of a semi-analytical model for radiant heating and cooling systems for integration in energy simulation software that use the one-dimensional numerical modeling to calculate the heat transfer within the building construction assemblies. The model combines the one-dimensional numerical model of the energy simulation software with a two-dimensional analytical model. The advantage of this model over the one-dimensional one is that it accurately predict the contact surface temperature of the circuit-tubing and the adjacent medium, required to compute the boiler/chiller power, and the minimum and maximum ceiling/floor temperatures, required for moisture condensation (ceiling cooling systems), thermal comfort (heating floor systems) and controls. The model predictions for slab-on-grade heating systems compared very well with the results from a full two-dimensional numerical model.
机译:高效的辐射供暖和制冷系统是削减能源费用并提高房屋和住宅建筑物等低能耗需求的建筑物的乘员热舒适性的有前途的技术。然而,建筑物中的辐射系统的热性能尚未得到充分理解,并且在当前可用的建筑物能量模拟软件中也没有得到考虑。提高辐射系统适用性的挑战性任务是开发精确的预测模型并将其集成到能量模拟软件中。本文介绍了用于辐射供热和制冷系统的半分析模型的开发,该模型已集成到能源模拟软件中,该模型使用一维数值模型来计算建筑构件内部的热传递。该模型将能量模拟软件的一维数值模型与二维分析模型结合在一起。该模型相对于一维模型的优势在于,它可以准确预测计算锅炉/冷水机组功率所需的电路管与相邻介质的接触表面温度,以及所需的最低和最高最高/最低温度用于湿气冷凝(天花板冷却系统),热舒适性(加热地板系统)和控件。平板加热系统的模型预测与完整二维数值模型的结果进行了很好的比较。

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