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- W3015842952 abstract "Nanofluids based direct absorption solar collectors (DASCs) are considered as the important alternative for further improve the utilization of solar energy. However the low-quality energy and aggregation of nanoparticles obstructs their large-scale application. In this work, a new method of using magnetic nanofluids in DASCs is proposed. By this method, not only high-quality energy is got as well as the problems of blockage and corrosion in heat exchanger are well avoided. The result shows that the maximum temperature can reach 98 °C under 3 solar irradiations and the photothermal conversion efficiency can be further increased by 12.8% when the concentration is 500 ppm after adding an external rotating magnetic field. The highest viscosity of working fluid reduced by 21% when the concentration is 500 ppm at 95 °C after separating the Fe 3 O 4 @C nanoparticles from the nanofluids via magnetic separation technology. Meanwhile, the obtained pure base liquids with high temperature flow to heat exchanger, which also reduces the flow resistance in pipeline and avoids the problems such as blockage and corrosion in heat exchanger. This research promotes a new way for the efficient utilization of solar energy. A new method of using magnetic nanofluids as the working fluids of DASCs is proposed. By this method, not only high-quality energy is got as well as the problems of blockage and corrosion in heat exchanger are well avoided." @default.
- W3015842952 created "2020-04-17" @default.
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- W3015842952 date "2021-04-01" @default.
- W3015842952 modified "2023-10-16" @default.
- W3015842952 title "Highly efficient energy harvest via external rotating magnetic field for oil based nanofluid direct absorption solar collector" @default.
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- W3015842952 doi "https://doi.org/10.1016/j.gee.2020.03.014" @default.
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