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Sensitivity of the Solar Heat Gain Coefficient of Complex Fenestration Systems to the Indoor Convection Coefficient

机译:复杂窗系统太阳热增益系数对室内对流系数的敏感性

摘要

Accurate estimation of the solar gain of a fenestration system is important in analyzing the energy performance of buildings. Recently, models were developed for complex fenestration systems – glazing systems with attachments such as venetian blinds and insect screens. These models use a three-node network for modeling heat transfer at the indoor-side of a glazing system. Empirical expressions based on observation and known limits were originally proposed for the corresponding convection coefficients. To address any ambiguity or error associated with these expressions, a research project is underway to develop techniques for evaluating these convection coefficients more accurately. The purpose of the current paper is to quantify the sensitivity of the U-value and solar heat gain coefficient of complex fenestration systems to the indoor-side convection coefficients. Configurations comprised of low-e glazings, roller blinds, venetian blinds, drapes and insect screens are examined in design summer and winter conditions using the window analysis software VISION5. Results show that the presence of an indoor-mounted attachment can significantly change the solar heat gain coefficient of a fenestration system. Nevertheless, the solar heat gain coefficient and the overall heat transfer coefficient are not sensitive to the indoor convection coefficient.
机译:准确估算开窗系统的太阳能增益对于分析建筑物的能源性能非常重要。最近,针对复杂的开窗系统(带有百叶窗和防虫网等附件的玻璃窗系统)开发了模型。这些模型使用三节点网络对玻璃系统的室内传热进行建模。最初针对相应的对流系数提出了基于观测值和已知极限的经验表达式。为了解决与这些表达式相关的任何歧义或错误,正在进行一项研究项目,以开发更准确地评估这些对流系数的技术。本文的目的是量化复杂开窗系统的U值和太阳热增益系数对室内侧对流系数的敏感性。使用视窗分析软件VISION5在夏季和冬季设计条件下检查由低辐射玻璃,卷帘,百叶窗,悬垂帘和防虫网组成的配置。结果表明,室内安装附件的存在会显着改变开窗系统的太阳热能系数。然而,太阳热增益系数和总传热系数对室内对流系数不敏感。

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