首页> 外文会议>Conference on high and low concentrator systems for solar energy applications >Coupled Optical-Thermal-Fluid and Structural Analyses of Novel Light-Trapping Tubular Panels for Concentrating Solar Power Receivers
【24h】

Coupled Optical-Thermal-Fluid and Structural Analyses of Novel Light-Trapping Tubular Panels for Concentrating Solar Power Receivers

机译:用于集中式太阳能接收器的新型光陷管式面板的光学-热流体耦合和结构分析

获取原文

摘要

Traditional tubular receivers used in concentrating solar power are formed using tubes connected to manifolds to form panels; which in turn are arranged in cylindrical or rectangular shapes. Previous and current tubular receivers, such as the ones used in Solar One, Solar Two, and most recently the Ivanpah solar plants, have used a black paint coating to increase the solar absorptance of the receiver. However, these coatings degrade over time and must be reapplied, increasing the receiver maintenance cost. This paper presents the thermal efficiency evaluation of novel receiver tubular panels that have a higher effective solar absorptance due to a light-trapping effect created by arranging the tubes in each panel into unique geometric configurations. Similarly, the impact of the incidence angle on the effective solar absorptance and thermal efficiency is evaluated. The overarching goal of this work is to achieve effective solar absorptances of -90% and thermal efficiencies above 85% without using an absorptance coating. Several panel geometries were initially proposed and were down-selected based on structural analyses considering the thermal and pressure loading requirements of molten salt and supercritical carbon-dioxide receivers. The effective solar absorptance of the chosen tube geometries and panel configurations were evaluated using the ray-tracing modeling capabilities of SolTrace. The thermal efficiency was then evaluated by coupling computational fluid dynamics with the ray-tracing results using ANSYS Fluent. Compared to the base case analysis (flat tubular panel), the novel tubular panels have shown an increase in effective solar absorptance and thermal efficiency by several percentage points.
机译:用于集聚太阳能的传统管状接收器是利用连接到歧管上的管子形成面板的。依次排列成圆柱形或矩形。以前和现在的管状接收器,例如在Solar One,Solar Two和最近的Ivanpah太阳能发电厂中使用的接收器,都已经使用黑色涂料涂层来提高接收器的吸收率。但是,这些涂层会随着时间的流逝而退化,必须重新施涂,从而增加了接收器的维护成本。本文介绍了新型接收器管状面板的热效率评估,该管状面板由于将每个面板中的管子排列成独特的几何形状而产生的光捕获效应而具有更高的有效太阳吸收率。类似地,评估了入射角对有效日光吸收率和热效率的影响。这项工作的总体目标是在不使用吸收性涂层的情况下,实现-90%的有效太阳吸收率和85%以上的热效率。最初提出了几种面板几何形状,并根据结构分析(考虑了熔融盐和超临界二氧化碳接收器的热和压力负荷要求)进行了选择。使用SolTrace的光线跟踪建模功能评估了选定的管几何形状和面板配置的有效日光吸收率。然后,通过使用ANSYS Fluent将计算流体动力学与射线追踪结果相结合来评估热效率。与基本案例分析(扁平管状面板)相比,新型管状面板显示出有效的太阳吸收率和热效率提高了几个百分点。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号