关注
Dr. Himanshu Tyagi, PhD
Dr. Himanshu Tyagi, PhD
Mechanical Engineering, Indian Institute of Technology Ropar
在 asu.edu 的电子邮件经过验证 - 首页
标题
引用次数
引用次数
年份
Small particles, big impacts: A review of the diverse applications of nanofluids
R Taylor, S Coulombe, T Otanicar, P Phelan, A Gunawan, W Lv, ...
Journal of Applied Physics 113, 2013
9982013
Predicted efficiency of a low-temperature nanofluid-based direct absorption solar collector
H Tyagi, P Phelan, R Prasher
8722009
Increased hot-plate ignition probability for nanoparticle-laden diesel fuel
H Tyagi, PE Phelan, R Prasher, R Peck, T Lee, JR Pacheco, P Arentzen
Nano letters 8 (5), 2008
4272008
Solar energy harvesting using nanofluids-based concentrating solar collector
V Khullar, H Tyagi, PE Phelan, TP Otanicar, H Singh, RA Taylor
Journal of Nanotechnology in Engineering and Medicine 3 (3), 031003, 2012
3212012
Harvesting solar thermal energy through nanofluid-based volumetric absorption systems
V Khullar, H Tyagi, N Hordy, TP Otanicar, Y Hewakuruppu, P Modi, ...
International Journal of Heat and Mass Transfer 77, 2014
1622014
An integrated, solar-driven membrane distillation system for water purification and energy generation
Q Li, LJ Beier, J Tan, C Brown, B Lian, W Zhong, Y Wang, C Ji, P Dai, T Li, ...
Applied Energy 237, 534-548, 2019
1542019
Trends and opportunities in direct-absorption solar thermal collectors
P Phelan, T Otanicar, R Taylor, H Tyagi
Journal of Thermal Science and Engineering Applications 5 (2), 021003, 2013
1232013
Theoretical analysis and testing of nanofluids-based solar photovoltaic/thermal hybrid collector
S Saroha, T Mittal, PJ Modi, V Bhalla, V Khullar, H Tyagi, RA Taylor, ...
Journal of Heat Transfer 137 (9), 091015, 2015
952015
Predicted efficiency of a nanofluid-based direct absorption solar receiver
H Tyagi, P Phelan, R Prasher
Energy Sustainability 47977, 729-736, 2007
952007
Envisioning advanced solar electricity generation: Parametric studies of CPV/T systems with spectral filtering and high temperature PV
TP Otanicar, S Theisen, T Norman, H Tyagi, RA Taylor
Applied Energy 140, 224-233, 2015
932015
Experimental investigation of photo-thermal analysis of blended nanoparticles (Al2O3/Co3O4) for direct absorption solar thermal collector
V Bhalla, V Khullar, H Tyagi
Renewable Energy 123, 2018
902018
Investigation on nanoparticle distribution for thermal ablation of a tumour subjected to nanoparticle assisted thermal therapy
S Soni, H Tyagi, RA Taylor, A Kumar
Journal of thermal biology 43, 70-80, 2014
792014
Role of optical coefficients and healthy tissue-sparing characteristics in gold nanorod-assisted thermal therapy
S Soni, H Tyagi, RA Taylor, A Kumar
International Journal of Hyperthermia 29, 2013
722013
A study on environmental impact of nanofluid-based concentrating solar water heating system
V Khullar, H Tyagi
International Journal of Environmental Studies 69, 2012
702012
Limits of selectivity of direct volumetric solar absorption
YL Hewakuruppu, RA Taylor, H Tyagi, V Khullar, T Otanicar, S Coulombe, ...
Solar Energy 114, 2015
662015
Parameters influencing the performance of nanoparticles-laden fluid-based solar thermal collectors: a review on optical properties
V Bhalla, H Tyagi
Renewable and Sustainable Energy Reviews 84, 2018
652018
Spatially varying extinction coefficient for direct absorption solar thermal collector optimization
TP Otanicar, PE Phelan, RA Taylor, H Tyagi
Journal of Solar Energy Engineering 133 (2), 2011
612011
Solar energy harvesting by cobalt oxide nanoparticles, a nanofluid absorption based system
V Bhalla, H Tyagi
Sustainable Energy Technologies and Assessments 24, 2017
602017
Potential heat transfer fluids (nanofluids) for direct volumetric absorption-based solar thermal systems
V Khullar, V Bhalla, H Tyagi
Journal of Thermal Science and Engineering Applications 10 (1), 011009, 2018
592018
Application of nanofluids as the working fluid in concentrating parabolic solar collectors
V Khullar, H Tyagi
Proceedings of the 37th national & 4th international conferences on fluid …, 2010
572010
系统目前无法执行此操作,请稍后再试。
文章 1–20