Valan Arasu
Valan Arasu
Professor in Mechanical Engineering, Thiagarajar College of Engineering
Verified email at tce.edu - Homepage
Title
Cited by
Cited by
Year
A review on preparation, characterization, properties and applications of nanofluids
DK Devendiran, VA Amirtham
Renewable and Sustainable Energy Reviews 60, 21-40, 2016
2912016
Numerical study on melting of paraffin wax with Al2O3 in a square enclosure
AV Arasu, AS Mujumdar
International Communications in Heat and Mass Transfer 39 (1), 8-16, 2012
1592012
Design, manufacture and testing of fiber glass reinforced plastic parabola troughs for parabolic trough solar collectors
TS A Valan Arasu
Solar Energy 81, 1273–1279, 2007
1402007
A comprehensive review of preparation, characterization, properties and stability of hybrid nanofluids
DD Kumar, AV Arasu
Renewable and Sustainable Energy Reviews 81, 1669-1689, 2018
682018
A review on thermal conductivity enhancement of paraffinwax as latent heat energy storage material
P Bose, VA Amirtham
Renewable and Sustainable Energy Reviews 65, 81-100, 2016
632016
Prediction of solar radiation for solar systems by using ANN models with different back propagation algorithms
N Premalatha, A Valan Arasu
Journal of applied research and technology 14 (3), 206-214, 2016
612016
Numerical performance study of paraffin wax dispersed with alumina in a concentric pipe latent heat storage system
AA Valan, AP Sasmito, AS Mujumdar
Thermal science 17 (2), 419-430, 2013
582013
Performance characteristics of the solar parabolic trough collector with hot water generation system
AA Valan, ST Sornakumar
Thermal science 10 (2), 167-174, 2006
442006
Performance Characteristics of ParabolicTrough Solar Collector System forHot Water Generation
AV Arasu, T Sornakumar
International Energy Journal 7 (2), 2006
432006
Thermal performance enhancement of paraffin wax with Al2O3 and CuO nanoparticles–a numerical study
A Arasu, A Sasmito, A Mujumdar
Frontiers in Heat and Mass Transfer (FHMT) 2 (4), 2012
412012
Heat loss characteristics study of a trapezoidal cavity absorber with and without plate for a linear Fresnel reflector solar concentrator system
R Manikumar, AV Arasu
Renewable energy 63, 98-108, 2014
222014
Life cycle cost analysis of new FRP based solar parabolic trough collector hot water generation system
AV Arasu, T Sornakumar
Journal of Zhejiang University-SCIENCE A 9 (3), 416-422, 2008
212008
A comprehensive review on latent heat and thermal conductivity of nanoparticle dispersed phase change material for low-temperature applications
BE Jebasingh, AV Arasu
Energy Storage Materials 24, 52-74, 2020
192020
Characterisation and thermophysical properties of graphene nanoparticles dispersed erythritol PCM for medium temperature thermal energy storage applications
M Vivekananthan, VA Amirtham
Thermochimica Acta 676, 94-103, 2019
182019
Theoretical analysis and experimental verification of Parabolic trough solar collector with hot water Generation system
A Valan-Arasu, TS Sornakumar
Thermal science 11 (1), 119-126, 2007
172007
Effect of gasoline-ethanol blends on performance and emission characteristics of a single cylinder air cooled motor bike SI engine
AS Raja, AV Arasu, T Sornakumar
Journal of Engineering Science and Technology 10 (12), 3, 2015
142015
Numerical simulation of a trapezoidal cavity absorber in the linear Fresnel reflector solar concentrator system
R Manikumar, A Valan Arasu, S Jayaraj
International Journal of Green Energy 11 (4), 344-363, 2014
132014
Heat transfer analysis of an elevated linear absorber with trapezoidal cavity in the linear Fresnel reflector solar concentrator system
R Manikumar, R Palanichamy, AV Arasu
Journal of Thermal Science 24 (1), 90-98, 2015
122015
Design and simulation analysis of a parabolic trough solar collector hot water generation system
AV Arasu, T Sornakumar
International Energy Journal 6 (2), 2005
122005
A review of influence of nanoparticle synthesis and geometrical parameters on thermophysical properties and stability of nanofluids
AI Khan, AV Arasu
Thermal Science and Engineering Progress 11, 334-364, 2019
102019
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