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S. Harikrishnan

Researcher at Anna University

Publications -  55
Citations -  1599

S. Harikrishnan is an academic researcher from Anna University. The author has contributed to research in topics: Nanofluid & Phase-change material. The author has an hindex of 17, co-authored 32 publications receiving 1146 citations. Previous affiliations of S. Harikrishnan include Canterbury Hospital & Rajiv Gandhi College of Engineering.

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Sustainable thermal energy storage technologies for buildings: A review

TL;DR: In this paper, the potential research studies pertaining to a variety of latent heat energy storage and cool thermal energy storage (CTES) systems solely dedicated for building heating, cooling and air conditioning (A/C) applications are reviewed.
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Preparation and thermal characteristics of CuO–oleic acid nanofluids as a phase change material

TL;DR: In this article, an experimental investigation of CuO-oleic acid nanofluids as a new phase change material for the thermal energy storage of cooling systems is presented. And the authors also present the preparation of nanoparticles with sizes ranging from 1 to 80nm dispersed in oleic acid.
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Cognitive behavioural therapy for adults with dissociative seizures (CODES): a pragmatic, multicentre, randomised controlled trial

Laura H. Goldstein, +184 more
TL;DR: This pragmatic, parallel-arm, multicentre randomised controlled trial aimed to compare the effectiveness of cognitive behavioural therapy (CBT) plus standardisedmedical care with standardised medical care alone for the reduction of dissociative seizure frequency.
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Preparation and thermal energy storage behaviour of stearic acid-TiO2 nanofluids as a phase change material for solar heating systems

TL;DR: In this article, the phase change behavior of newly prepared stearic acid-TiO2 nanofluids as composite phase change materials (PCMs) was investigated, and the complete melting and solidification times were reduced by 7.03, 12.56, 19.62, 13.57, 20.53, 26.82, 34.17, 43.64, 35.39% for 0.
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Analytical and experimental investigations of nanoparticles embedded phase change materials for cooling application in modern buildings

TL;DR: In this paper, the phase change heat transfer characteristics and thermodynamic behavior of spherically enclosed phase change material (PCM) with dispersion of nanoparticles for latent thermal energy storage (LTES) system in buildings were investigated.