首页> 外文会议>International Conference on Mechanics and Control Engineering >Computational Study on Estimating the Surface Heat Transfer Coefficient of Absorber Tube in Solar Parabolic Trough Collector
【24h】

Computational Study on Estimating the Surface Heat Transfer Coefficient of Absorber Tube in Solar Parabolic Trough Collector

机译:太阳抛抛槽收集器中吸收管表面传热系数的计算研究

获取原文

摘要

Solar Parabolic Trough collectors are commonly used to harness the solar power for power generating applications involving high temperatures. In the given paper study we have made use of the SolTrace software which uses the Monte Carlo algorithm for finding out the radiation received on the absorber tube of the collector. The computational study was performed taking into account the solar radiation received at Vellore city in India (12.92°N, 79.13°E) as on 16th February 2013. Further a 3D model of the absorber tube used in the parabolic trough collector was created and meshed with the help of the Ansys Gambit software. The absorber tube which we considered for our study is made up of Stainless Steel AISI 302 material. The meshed model so created was then exported to the Ansys Fluent 6.3 software and simulations were performed for different mass flow rates of the fluid. The fluid which we used in the computational analysis study is Therminol 55. The temperature differences for different mass flow rates of the liquid passing through the absorber tube were found out and based on the temperature rise contours plots so obtained, we have plotted the surface heat transfer coefficient for the absorber tube. We also found out the static temperature contour plot for the fluid flowing through the given absorber tube taking into account the heat flux acting on the absorber tube due to the hourly and daily average solar radiation.
机译:太阳能抛物线槽收集器通常用于利用涉及高温的发电应用的太阳能。在给定的纸张研究中,我们已经利用了使用Monte Carlo算法来查找收集器的吸收管上接收的辐射的索尔特拉丘软件。考虑到计算研究,考虑到印度的Vellore City(12.92°N,79.13°E)的太阳辐射,截至2013年2月16日。进一步创建抛物线槽收集器中使用的吸收管的3D模型并啮合在ANSYS GAMBIT软件的帮助下。我们考虑过我们研究的吸收管由不锈钢AISI 302材料组成。然后将所创建的网状模型导出到ANSYS流畅的6.3软件,并针对流体的不同质量流速进行模拟。我们在计算分析研究中使用的流体是热门醇55.发现通过吸收管的不同质量流量率的温度差异,并基于如此获得的温度上升轮廓图,我们已经绘制了表面热量吸收管的传递系数。我们还发现了用于流过给定吸收管的流体的静态温度等高曲线图,考虑到由于每小时和每日平均的太阳辐射而作用在吸收管上的热量通量。

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