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Wind barriers optimization for minimizing collector mirror soiling in a parabolic trough collector plant

机译:优化挡风玻璃,以最大程度减少抛物线槽式集热器装置中的集光镜污染

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摘要

Wind barriers, according to their sizes and shapes, can effectively control, shift and even modify the airflow field in their downstream. These structures can accelerate the wind flow over the mirror field and move the airborne particles away from the mirrors. For example, in concentrated solar power plants it is highly desirable to engineer the system in a way that fewer particles are deposited within the solar field, in particular, onto mirror surfaces. Therefore, design optimization of dust barriers could significantly impact the mirror soiling and favourably reduce the cleaning water consumption of a solar power plant. This study focuses on the optimization of a solid wind barrier around a parabolic trough collector plant for their protection against dust soiling. The presented simulation results show that an optimum solid wind barrier is able to direct large amount of particles (in this study, more than 86%) to pass over the solar field with very small fraction (around 0.8%) being deposited on the mirrors. In addition, it was found that the barrier wall is more effective in deflecting the larger particles from the solar field.
机译:根据其大小和形状,挡风板可以有效地控制,移动甚至改变其下游的气流场。这些结构可以加快风在镜面上的流动,并使空气中的粒子从镜上移开。例如,在集中式太阳能发电厂中,非常需要以这样的方式设计系统:使较少的颗粒沉积在太阳能场内,尤其是沉积在镜面上。因此,防尘罩的设计优化可能会严重影响镜面污染,并有利地减少太阳能发电厂的清洁用水量。这项研究的重点是优化抛物线槽式集热器厂周围的固体挡风板,以防止灰尘污染。给出的仿真结果表明,最佳的固体挡风玻璃能够引导大量的粒子(在本研究中,超过86%)穿过太阳场,而很小的一部分(约0.8%)沉积在反射镜上。另外,已经发现,阻挡壁在使较大的粒子从太阳场偏转方面更有效。

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