Energy performance of an evacuated tube solar collector using single walled carbon nanotubes nanofluids

Conductivity Coefficient Hot-Water System In-Glass 621 02 engineering and technology 7. Clean energy 6. Clean water High-Temperature 0202 electrical engineering, electronic engineering, information engineering Flow-Rate Heat-Pipe Fluid Thermal Performance Stability
DOI: 10.1016/j.enconman.2015.09.009 Publication Date: 2015-09-19T04:47:16Z
ABSTRACT
An experimental study was performed to determine the thermal efficiency of an Evacuated Tube Solar Collector (ETSC) using water based Single Walled Carbon Nanotubes (SWCNTs) nanofluids. Experiments were carried out using SWCNTs nanofluids having volume concentrations of 0.05, 0.1, and 0.2 vol.%. The performance of the collector was compared with SWCNTs nanofluid and water using the flow rates of 0.008, 0.017, and 0.025 kg/s. The experiments were undertaken according to ASHRAE standard 93-2003. The results show that, the collector efficiency improved with SWCNTs nanofluids compared to water as a working fluid. The maximum efficiency found to be 93.43% for 0.2 vol.% SWCNTs nanofluids at a mass flow rate of 0.025 kg/s. The collector efficiency shows greater enhancement with the increasing volume fractions of SWCNT nanoparticles and flow rate. In conclusions, results suggest that SWCNTs nanofluids can be used as the working fluids in an ETSC to absorb heat from solar radiation and to convert solar energy into thermal energy efficiently.
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