2023
DOI: 10.1016/j.csite.2023.103258
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Investigation of molten salts incorporated with anodic aluminum oxide as thermal energy storage fluid on heat transfer efficiency

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Cited by 3 publications
(2 citation statements)
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“…Various types of models have been developed to investigate different aspects of THS. In the recent literature, software tools employed for numerical studies on THS include Ansys CFX [8], Ansys Fluent [27,46,47], Aspen Hysys [144], COMSOL [79], COMSOL Multiphysics [49,70,127], TRNSYS [42,147], NEST [19], EBSILON [72], and Star-CCM+ [47].…”
Section: Optimization Of Thermocline Heat Storage System Numerical Modelmentioning
confidence: 99%
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“…Various types of models have been developed to investigate different aspects of THS. In the recent literature, software tools employed for numerical studies on THS include Ansys CFX [8], Ansys Fluent [27,46,47], Aspen Hysys [144], COMSOL [79], COMSOL Multiphysics [49,70,127], TRNSYS [42,147], NEST [19], EBSILON [72], and Star-CCM+ [47].…”
Section: Optimization Of Thermocline Heat Storage System Numerical Modelmentioning
confidence: 99%
“…Lincu et al increased the total heat capacity of a novel aluminum silicate by 36% through aluminum doping [78]. Nualsing et al doped anodic aluminum into molten salt and observed that the charging time of the THS system containing 0.5 wt% anodic aluminum oxide was reduced from 3.75 h to 3.5 h [79]. Wang and Huang improved the thermal performance of steel slag through Na 2 CO 3 activation [68].…”
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confidence: 99%