A detailed review on various V-shaped ribs roughened solar air heater

被引:0
作者
Sheetal Kumar Jain
Ghanshyam Das Agrawal
Rohit Misra
机构
[1] Malaviya National Institute of Technology,Department of Mechanical Engineering
[2] Govt. Engineering College,Department of Mechanical Engineering
来源
Heat and Mass Transfer | 2019年 / 55卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Solar air heater (SAH) is a popular and economical device which collects the solar energy and is employed for space heating, drying of agricultural products, food items, and leather, seasoning of timber, etc. Attachment of artificial roughness on the absorber surface is an appropriate method to augment the heat transfer from the heated surface to the air flowing through SAH duct. Use of artificial roughness has been an area of great interest for researchers as far as the cooling of turbine blades, and combustion chambers are concerned. This technique is effective in enhancing the heat transfer in a micro-channel heating/cooling system. Present paper holistically furnishes concise information about various kinds of V-shaped roughness geometries used in SAHs for improving its performance covering experimental, analytical, numerical and computational fluid dynamics (CFD) approaches. In this paper, 124 research articles have been referred, which provide a detailed comprehensive and comparative study revealing the effect of various geometrical parameters and different V-shaped roughness patterns on the performance of SAH. This article also brings in the information about the correlation developed by researchers for heat transfer and friction factor. This comprehensive review will be quite useful for technical persons and researchers working in the area of SAH.
引用
收藏
页码:3369 / 3412
页数:43
相关论文
共 288 条
  • [71] Lau SC(2012)Nusselt number and friction factor correlations for solar air heater duct with broken V-down ribs combined with staggered rib roughness Journal of Renewable and Sustainable Energy 4 033122-67
  • [72] Kukreja RT(2014)Experimental Investigation of Enhanced Heat Transfer and Pressure Drop in a Solar Air Heater Duct With Discretized Broken V-Rib Roughness J Sol Energy Eng 137 021013-746
  • [73] Mcmillin RD(2016)Performance analysis of solar air heater duct roughened with multigap V-down ribs combined with staggered ribs Renew Energy 91 484-77
  • [74] Ekkad SV(2015)Effect of roughness width ratios in discrete multi V-rib with staggered rib roughness on overall thermal performance of solar air channel Sol Energy 119 399-8
  • [75] Han J(2016)Experimental investigation on performance of a double pass artificial roughened solar air heater duct having roughness elements of the combination of discrete multi V shaped and staggered ribs Energy 116 507-383
  • [76] Ekkad SV(2018)Effect of roughness elements on thermal and thermohydraulic performance of double pass solar air heater duct having discrete multi V-shaped and staggered rib roughness on both sides of the absorber plate Exp Heat Transf 31 47-963
  • [77] Han J(2018)Nusselt number and friction factor correlations for forced convective type counter flow solar air heater having discrete multi V shaped and staggered rib roughness on both sides of the absorber plate Appl Therm Eng 129 735-829
  • [78] Gao X(2017)Thermohydraulic performance of solar air heater with staggered multiple V-shaped ribs on the absorber plate Energy 127 68-923
  • [79] Sundén B(2003)Effects of Duct Aspect Ratios on Heat/Mass Transfer with discrete V-shaped ribs Proc ASME Turbo Expo 2003 1-1304
  • [80] Momin AM(2013)Heat transfer enhancement in solar air heater with V-shaped perforated baffles Journal of Renewable and Sustainable Energy 5 023122-426