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首页> 外文期刊>Journal of building performance simulation >Convection at the indoor side of complex fenestration systems: the ASHWAT model revisited
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Convection at the indoor side of complex fenestration systems: the ASHWAT model revisited

机译:复杂开窗系统在室内的对流:重新审视ASHWAT模型

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摘要

This paper examines the three-temperature problem of convection at the indoor side of a complex fenestration system (CFS) based on recent theoretical developments, namely the extended Newton formulation and the dQdT technique. CFD solutions were obtained for natural convection at the indoor side of various CFS configurations. The dQdT technique was then implemented numerically to obtain the paired heat transfer coefficients of each configuration. The results were used to assess the approximate relations used in the ASHRAE Window ATachment (ASHWAT) tool. The comparison shows that while there is remarkable agreement between the ASHWAT estimates and dQdT results for roller blinds, discrepancies exist between results for venetian blinds. Furthermore, although use of a delta resistor network to model convection at the indoor side is valid and relatively accurate for roller blinds, the application of this model to CFSs with venetian blinds requires additional levels of approximation. Nevertheless, the heat transfer rates calculated based on the approximate resistor-network model are in close agreement with the CFD results.
机译:本文基于最近的理论发展,即扩展牛顿公式和dQdT技术,研究了复杂开窗系统(CFS)室内侧的对流三温问题。在各种CFS配置的室内侧获得自然对流的CFD解决方案。然后对dQdT技术进行数字化处理,以获得每种配置的成对传热系数。结果用于评估ASHRAE窗口提示(ASHWAT)工具中使用的近似关系。比较结果表明,虽然ASHWAT估算与dQdT卷帘百叶窗结果之间存在显着一致性,但百叶窗百叶窗结果之间存在差异。此外,尽管使用三角电阻网络对室内对流建模是有效的,并且对于卷帘是相对准确的,但是将此模型应用于带有百叶窗的CFS仍需要更多的近似度。然而,基于近似电阻网络模型计算出的传热速率与CFD结果非常吻合。

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