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Numerical Investigation of Wind Flow around a Cylindrical Trough Solar Collector

机译:槽形太阳能集热器周围风流的数值研究

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The goal of this study is to model the effects of wind on Cylindrical Trough Collectors (CTCs). Two major areas are discussed in this paper: 1) heat losses due to wind flow over receiver pipe and 2) average forces applied on the collector’s body. To accomplish these goals a 2D modeling of CTC was carried out using commercial codes with various wind velocities and collector orientations. Ambient temperature was assumed to be constant at 300 K and for specific geometries different meshing methods and boundary conditions were used in various runs. Validation was done by comparing the simulation results for a horizontal collector with empirical data. It was observed that maximum force of 509.1 Newton per Meter occurs at +60 degrees. Nusselt number is almost the constant for positive angles while at negative angles it varies considerably with the collector’s orientation.
机译:这项研究的目的是模拟风对圆柱槽收集器(CTC)的影响。本文讨论了两个主要领域:1)由于风在接收管上流动而造成的热量损失,以及2)施加在集热器主体上的平均力。为了实现这些目标,使用具有不同风速和集热器方向的商业代码对CTC进行了2D建模。假定环境温度恒定为300 K,并且对于特定的几何形状,在各种运行中使用了不同的啮合方法和边界条件。通过将水平收集器的仿真结果与经验数据进行比较来进行验证。据观察,在+60度时会出现509.1牛顿/米的最大力。对于正角,努塞尔数几乎是常数,而在负角处,努塞尔数随收集器的方向而变化很大。

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