首页> 外文期刊>Renewable energy >Field synergy principle analysis for reducing natural convection heat loss of a solar cavity receiver
【24h】

Field synergy principle analysis for reducing natural convection heat loss of a solar cavity receiver

机译:减少太阳腔接收器自然对流热损失的场协同原理分析

获取原文
获取原文并翻译 | 示例
           

摘要

Due to the operating temperature from 900 K to 1300 K produced by the concentrating ratio over 2000 in solar parabolic dish-engine system, the natural convection heat loss driven by the buoyancy force of air contributes an important role in the energy loss of cavity receiver. 3-D numerical simulations were performed and the results are analyzed from the novel viewpoint of field synergy principle (FSP) in order to study the heat transfer and fluid flow characteristics in natural convection heat loss of cavity receiver. The effects of geometric parameters, including the inclination angle, aperture size, aperture position and cavity geometric shape on the natural convection heat loss of cavity receiver were examined. The FSP analysis on the simulation results demonstrates that FSP can well explain the reduction mechanism for natural convection heat loss of cavity receiver because the smaller inner production of velocity vector and temperature gradient always corresponds to the lower Nusselt number occurred in the cases with lager inclination angle, smaller aperture size, lower aperture position and frustum-cylinder cavity, respectively. Therefore, the reducing natural convection heat loss attributes to the weakening synergy between velocity vector and temperature gradient. In addition, the local heat transfer performance is studied by the presented distributions of heat transferred via fluid motion, where more interesting natural convection heat loss characteristics of cavity receiver and the detailed explanations were provided. The results of this work offer benefits for the development of theory and technique about reducing natural convection heat loss of cavity receiver. (C) 2014 Elsevier Ltd. All rights reserved.
机译:由于太阳能抛物面碟形发动机系统中的聚光比超过2000,产生的工作温度为900 K至1300 K,由空气的浮力驱动的自然对流热损耗在腔体接收器的能量损耗中起着重要作用。为了研究腔体接收器自然对流热损失中的传热和流体流动特性,进行了3​​-D数值模拟,并从场协同原理(FSP)的新观点对结果进行了分析。考察了倾斜角,孔径大小,孔径位置和腔体几何形状等几何参数对腔体自然对流热损失的影响。 FSP对仿真结果的分析表明,FSP可以很好地解释空腔接收器自然对流热损失的减少机理,因为在较大倾斜角的情况下,速度矢量和温度梯度的较小内部产生总是对应于较低的Nusselt数。 ,较小的光圈大小,较低的光圈位置和平截头体缸腔。因此,自然对流热损失的减少归因于速度矢量和温度梯度之间的协同作用减弱。另外,通过给出的通过流体运动传递的热量分布来研究局部传热性能,其中提供了更有趣的空腔接收器自然对流热损失特性,并提供了详细的解释。这项工作的结果为减少空腔接收器自然对流热损失的理论和技术的发展提供了有益的帮助。 (C)2014 Elsevier Ltd.保留所有权利。

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