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ESTIMATION OF THE PERFORMANCE OF SUNSHADES USING OUTDOOR MEASUREMENTS AND THE SOFTWARE TOOL PARASOL V 2.0

机译:使用户外测量和软件工具遮阳伞探测遮阳伞的性能探测器v 2.0

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Solar shading devices can significantly reduce cooling loads, improve thermal comfort and reduce potential glare problems in commercial buildings. However, measured data or tools to facilitate a comparison among various shading devices have previously not been available to designers. The Solar Shading Project at Lund University was initiated in 1997 to increase the knowledge on shading devices. This paper describes results from an extensive measurement program and recent developments of the software tool ParaSol v 2.0. The total solar energy transmittance (g-value) of various shading devices has been estimated by means of measurements in a real climate using a double hot-box arrangement. Monitored results are shown for external products (awnings, Italian awnings, venetian blinds, horizontal slatted baffle, fabric screens, solar control films), interpane (between panes) and internal products (pleated curtains, roller blinds, venetian blinds, solar control films). The software tool ParaSol has been further developed to include all these types of products. In general, external shading devices are the best in reducing cooling loads, internal products are the worst, while interpane products fall between these two. Further, internal products must have a high reflectance in order to yield a low g-value. The monitored average g-value within each group (g-sunshade) was 0.3 for external products, 0.5 for interpane products and 0.6 for internal products. On average, external products are twice as good as internal products in reducing peak cooling loads. With the software tool ParaSol, it is possible to estimate the effective g-value of shading devices for various orientations in combination with an arbitrary glazing system. Further, effects on heating and cooling (both peak loads and annual energy demands) and operative temperatures of an office room can also be simulated.
机译:太阳遮阳装置可以显着降低冷却负荷,提高热舒适度,降低商业建筑中的潜在眩光问题。然而,设计人员以前没有可用的测量数据或工具以促进各种着色设备之间的比较。 Lund University的太阳阴影项目于1997年启动,以提高阴影设备的知识。本文介绍了广泛的测量程序和软件工具遮阳伞v 2.0的最新发展的结果。通过使用双热箱布置的真实气候中的测量来估计各种着色装置的总太阳能透射率(G值)。监测结果显示外部产品(遮阳篷,意大利遮阳篷,威尼斯百叶窗,水平板挡板,面料屏,太阳能控制胶片),嵌入式(窗格之间)和内部产品(折叠窗帘,滚子百叶窗,威尼斯百叶窗,太阳能控制胶片) 。软件工具遮阳伞进一步开发为包括所有这些类型的产品。通常,外部遮阳装置是减少冷却载荷的最佳,内部产品是最糟糕的,而嵌入产品之间的落在这两个之间。此外,内部产品必须具有高反射率,以产生低G值。对于外部产品,每个组(G-SUNSHADE)内的监测平均G值为0.3,内嵌剂产品为0.5,内部产品0.6。平均而言,外部产品在降低峰冷却载荷时是内部产品的两倍。通过软件工具遮阳伞,可以估计各种方向的着色装置的有效G值与任意玻璃系统组合。此外,还可以模拟对加热和冷却(峰值负荷和年度能量需求)和操作温度的影响。

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