Synthesis of metal-based nanofluids and their thermo-hydraulic performance in compact heat exchanger with multi-louvered fins working under laminar conditions

被引:0
作者
Vinay Kumar
Naimish Pandya
Bhargav Pandya
Alpesh Joshi
机构
[1] National Institute of Technology,School of Renewable Energy and Efficiency
[2] Gujarat Power Engineering and Research Institute,Department of Mechanical Engineering
[3] Merchant Institute of Technology,undefined
来源
Journal of Thermal Analysis and Calorimetry | 2019年 / 135卷
关键词
Characterization; Nanofluid synthesis; Compact heat exchanger; Laminar flow; Heat transfer;
D O I
暂无
中图分类号
学科分类号
摘要
Present experimental investigation incorporates characterization of Al nanopowder, synthesis of Al/water nanofluids, and effect of these nanofluids on thermal performance of compact heat exchanger. Al nanoparticles are characterized using TEM and XRD. Al/water nanofluid is prepared by dispersing metal basis aluminium nanoparticles of average 100 nm size into double distilled water at two different particle volume concentrations of 0.1 and 0.2%. The nanofluids are prepared by two-step method and cetyl trimethyl ammonium bromide surfactant is used to stabilize the nanofluid. Thermo-physical properties of nanofluids at two different concentrations and their variation with fluid temperature are measured experimentally. It is examined that thermal conductivity, viscosity, and density of the nanofluid increased with the increase of volume concentrations. Furthermore, by increasing the fluid temperature, thermal conductivity is intensified, while the viscosity and density are decreased. Heat transfer parameters are strong functions of these thermo-physical properties. Therefore, comprehensive findings on heat transfer coefficient, Nusselt number, colburn factor, friction factor, and effectiveness are determined experimentally for prepared nanofluids passing under laminar conditions through single-pass cross-flow compact heat exchanger attached with multi-louvered fins.
引用
收藏
页码:2221 / 2235
页数:14
相关论文
共 70 条
[1]  
LotfizadehDehkordi B(2013)Investigation of viscosity and thermal conductivity of alumina nanofluids with addition of SDBS Heat Mass Transf 49 1109-1115
[2]  
Kazi SN(2000)Heat transfer enhancement of nanofluids Int J Heat Fluid Flow 21 58-64
[3]  
Hamdi M(2011)Study of the effect of volume fraction concentration and particle materials on thermal conductivity and thermal diffusivity of nanofluids Jpn J Appl Phys 50 085201-621
[4]  
Ghadimi A(2010)Numerical study of fluid dynamic and heat transfer performance of Al Int J Heat Fluid Flow 31 613-1838
[5]  
Sadeghinezhad E(2011)O Appl Therm Eng 31 1833-53
[6]  
Metselaar HSC(2014) and CuO nanofluids in the flat tubes of a radiator J Therm Sci Eng Appl 6 021010-288
[7]  
Xuan Y(2014)Improving the cooling performance of automobile radiator with Al Int Commun Heat Mass Trans 54 48-157
[8]  
Li Q(2013)O Appl Energy 112 274-106
[9]  
Ali FM(1988)/water nanofluid Exp Therm Fluid Sci 1 147-1150
[10]  
Yunus WMM(1989)Performance investigation of an automotive car radiator operated with nanofluid as a coolant Exp Therm Fluid Sci 2 100-544