Heat transfer in micropolar hybrid nanofluid flow past a vertical plate in the presence of thermal radiation and suction/injection effects
Author:
Publisher
Elsevier BV
Subject
Ocean Engineering
Reference57 articles.
1. Enhancing thermal conductivity of fluids with nanoparticles;Choi;Am Soc Mech Eng Fluids Eng Div FED,1995
2. Heat transfer enhancement of nanofluids;Xuan;Int J Heat Fluid Flow,2000
3. Numerical study of thermal radiation and suction effects on copper and silver water nanofluids past a vertical riga plate;Rawat;Multidiscip Model Mater Struct,2019
4. Energy transfer in mixed convection MHD flow of nanofluid containing different shapes of nanoparticles in a channel filled with saturated porous medium;Aaiza;Nanoscale Res Lett,2015
5. Cattaneo–christov heat flux model in flow of copper water nanofluid through a stretching/shrinking sheet on stagnation point in presence of heat generation/absorption and activation energy;Rawat;Int J Appl Comput Math,2020
Cited by 54 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献
1. Magnetized Casson hybrid nanofluid flow under the influence of surface-catalyzed reactions over a porous moving wedge;AIP Advances;2024-08-01
2. Entropy generation and heat transfer analysis of unsteady micropolar magnetized hybrid-nanofluid flow over a radially stretchable permeable rotating disk with viscous and joule dissipation effects;International Journal of Thermofluids;2024-08
3. Investigation of the flow behavior of a water-based hybrid nanofluid containing silver and titanium oxide nanomaterials between two angular rotating disks: A numerical approach;Modern Physics Letters B;2024-07-27
4. Impact of Thermal Radiation on Water-Based Hybrid Nanofluid ($$\hbox {Cu}$$–$$\hbox {Al}_2\hbox {O}_3$$–$$\hbox {H}_2\hbox {O}$$) Flow Over a Forward/Backward Moving Vertical Porous Plate;Arabian Journal for Science and Engineering;2024-05-20
5. Numerical Study on the Influence of heat generation and absorption on an incompressible hybrid nanofluid's magnetohydrodynamic (MHD) flow in a thermal system;2024-05-06
1.学者识别学者识别
2.学术分析学术分析
3.人才评估人才评估
"同舟云学术"是以全球学者为主线,采集、加工和组织学术论文而形成的新型学术文献查询和分析系统,可以对全球学者进行文献检索和人才价值评估。用户可以通过关注某些学科领域的顶尖人物而持续追踪该领域的学科进展和研究前沿。经过近期的数据扩容,当前同舟云学术共收录了国内外主流学术期刊6万余种,收集的期刊论文及会议论文总量共计约1.5亿篇,并以每天添加12000余篇中外论文的速度递增。我们也可以为用户提供个性化、定制化的学者数据。欢迎来电咨询!咨询电话:010-8811{复制后删除}0370
www.globalauthorid.com
TOP
Copyright © 2019-2024 北京同舟云网络信息技术有限公司 京公网安备11010802033243号 京ICP备18003416号-3