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Optimization of Radiators, Underfloor and Ceiling Heater Towards the Definition of a Reference Ideal Heater for Energy Efficient Buildings

机译:散热器,地板和天花板加热器的优化朝向节能建筑参考理想加热器的定义

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摘要

Heat emitters, as the primary devices used in space heating, cover a fundamental role in the energy efficient use of buildings. In the search for an optimized design, heating devices should be compared with a benchmark emitter with maximum heat emission efficiency. However, such an ideal heater still needs to be defined. In this paper we perform an analysis of heat transfer in a European reference room, considering surface effects of thermal radiation and computing the induced operative temperature (op.t.) both analytically and numerically. Our ideal heater is the one determining the highest op.t. By means of functional optimization, we analyse trends such as the variation of operative temperature with radiator panel dimensions, finding optimal configurations. To make our definitions as general as possible, we address panel radiators, convectors, underfloor (UFH) and ceiling heater. We obtain analytical formulas for the operative temperature induced by panel radiators and identify the 10-type as our ideal radiator, while the UFH provides the best performance overall. Regarding specifically UFH and ceiling heaters, we find optimal sizes providing maximum op.t. The analytical method and qualitative results reported in this paper can be generalized and adopted in most studies concerning the efficiency of different heat emitter types in building enclosures.
机译:作为空间加热中使用的主要装置的热发射器,涵盖了建筑物的节能使用中的基本作用。在寻找优化的设计中,应将加热装置与基准发射器进行比较,具有最大的散热效率。但是,需要定义这种理想的加热器。在本文中,我们在欧洲参考室中进行了传热分析,考虑了热辐射的表面效应并计算了分析和数值的诱导的操作温度(OP.T.)。我们的理想加热器是确定最高的OP.T.通过功能优化,我们分析了散热器面板尺寸的趋势,如操作温度的变化,找到最佳配置。要使我们的定义尽可能普遍,我们地址面板散热器,对流器,地板(UFH)和天花板加热器。我们获得了面板辐射器诱导的操作温度的分析公式,并识别10型作为理想散热器,而UFH则提供最佳性能。关于专门的UFH和天花板加热器,我们发现提供最大op.t的最佳尺寸。本文报告的分析方法和定性结果可以在大多数关于建筑外壳中的不同发射器类型效率的大多数研究中推广和采用。

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