Thermal performance analysis of a low volume fraction Al2O3 and deionized water nanofluid on solar parabolic trough collector
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Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s10973-020-10313-w.pdf
Reference39 articles.
1. Kalogirou SA, Lloyd S. Use of solar parabolic trough collectors for hot water production in Cyprus—a feasibility study. Renew Energy. 1992;12:117–24.
2. Nithyanandam K, Pitchumani R. Optimization of an encapsulated phase change material Thermal energy storage system. Sol Energy. 2014;107:770–88.
3. Sheikholeslami M, Jafaryar M, Shafee A, Babazzadeh H. Acceleration of discharge process of clean energy storage unit with insertion of porous form considering nanoparticle enhanced paraffin. J Clean Prod. 2020;261:121206.
4. Vijayan G, Karunakaran R. Investigation of heat transfer performance of nanofluids on conical solar collector under dynamic condition. Adv Mater Res. 2014;985:1125–31.
5. Vijayan G, Karunakaran R. Experimental investigation on PTSC hot water generation system. J Adv Chem. 2017;13:6054–8.
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