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ON THE OPTIMIZATION OF BUILDING ENVELOPE THERMAL PERFORMANCE

机译:关于建筑围护热性能的优化

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摘要

The optimal sequence of resistive and capacitive layers within building envelope is determined, in order to minimize the air-conditioning plant intervention to keep the indoor air temperature constant against sinusoidal and impulsive external temperature variations. In the case of sinusoidal variations with angular frequency ω, the optimal structure of the building envelope is determined by the value of the dimensionless parameter σ = ωrc only, where rc is the wall thermal time constant. For σ < 18 the interventions of the air-conditioning plant are minimized if the whole heat capacity is lumped between two plane slabs with the same value of the thermal resistance (symmetrical three-layered wall); for σ > 18 symmetrical walls are still preferable, but with a number of layers increasing with σ (walls with more than three layers); for σ → ∞ the optimal structure is the one of a homogeneous wall. In the case of impulsive stresses, the wall which facilitates the plant intervention, is a symmetrical three-layered one, as the previous case for low values of σ.
机译:确定建筑物围护结构内电阻和电容层的最佳顺序,以最大程度地减少空调设备的干预,以保持室内空气温度恒定,以防止正弦和脉冲外部温度变化。在角频率为ω的正弦变化的情况下,建筑物围护结构的最佳结构仅由无量纲参数σ=ωrc的值确定,其中rc是墙热时间常数。对于σ<18,如果将全部热容量集中在两个具有相同热阻值的平板之间(对称的三层墙),则可将空调设备的干预降到最低。对于σ> 18的对称墙,仍是首选,但层数随σ的增加而增加(三层以上的墙);对于σ→∞而言,最佳结构是均匀墙之一。在脉冲应力的情况下,有利于植物干预的壁是对称的三层壁,如先前针对低σ的情况。

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