首页> 外文期刊>Solar Energy >Improving thermal power of a cylindrical solar cooker via novel microano porous absorbers: A thermodynamic analysis with experimental validation
【24h】

Improving thermal power of a cylindrical solar cooker via novel microano porous absorbers: A thermodynamic analysis with experimental validation

机译:通过新型微/纳米多孔吸收剂提高圆柱形太阳能灶的热功率:具有实验验证的热力学分析

获取原文
获取原文并翻译 | 示例
           

摘要

In this paper, cylindrical solar cookers with microporous absorbers are experimentally and numerically investigated in terms of thermodynamic performance figures. For a typical spring day in Bayburt, which is a good example of continental climate in Turkey, a comprehensive thermal performance analysis is done for a cylindrical solar cooker. A mathematical model is developed to verify the accuracy of the measurements, which is applied to a solar cooker with conventional absorber, and a good accordance is achieved between numerical and experimental data. Afterwards, the model is utilised to analyse the impacts of porous absorbers on thermal performance parameters of cylindrical solar cooker with different porosity characteristics. In this respect, three porosity configurations (triangular, semi-circular and trapezoidal) are considered on the absorber surface, and the enhancement in thermal performance figures are evaluated through a computer code written in MATLAB. The results reveal that microporous absorbers play a key role in improving thermodynamic performance parameters of cylindrical solar cooker. According to the experimental results, energy and exergy efficiency of cylindrical solar cooker with ordinary absorber is found to be in the range of 27.7-17.0 and 17.9-11.5%, respectively. On the other hand, the said figures are enhanced to 30.4-18.7 and 19.9-12.8% with triangular porosity, 33.2-20.4 and 21.7-14.0% with semi-circular porosity, 34.6-21.2 and 22.6-14.6% with trapezoidal porosity. The time to boiling is also noticeably reduced via microporous absorbers, which is justified through a dynamic regression analysis.
机译:本文对具有微孔吸收器的圆柱形太阳能灶具进行了热力学性能数据的实验和数值研究。在土耳其伯尔伯特(Bayburt)典型的春季,这是土耳其大陆性气候的一个很好的例子,对圆柱形太阳能灶具进行了全面的热性能分析。建立了数学模型以验证测量的准确性,该数学模型应用于具有常规吸收器的太阳能炊具,并且在数值和实验数据之间取得了良好的一致性。然后,利用该模型分析了多孔吸收剂对具有不同孔隙率特性的圆柱型太阳灶热性能参数的影响。在这方面,吸收体表面考虑了三种孔隙结构(三角形,半圆形和梯形),并通过用MATLAB编写的计算机代码评估了热性能指标的提高。结果表明,微孔吸收剂在改善圆柱形太阳能炊具的热力学性能参数中起着关键作用。根据实验结果,采用普通吸收器的圆柱形太阳能炊具的能量和火用效率分别为27.7-17.0和17.9-11.5%。另一方面,三角形孔隙度时所述数值增加到30.4-18.7和19.9-12.8%,半圆形孔隙度时分别增加到33.2-20.4和21.7-14.0%,梯形孔隙度时增加到34.6-21.2和22.6-14.6%。通过微孔吸收剂,沸腾时间也明显减少,这通过动态回归分析证明是合理的。

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