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- W4385059309 abstract "Flow visualization including image processing and particle image velocimetry (PIV) measurements is used to evaluate the flow velocity field of the acrylic solar sphere that filled with oil. This convection flow is affected by the thickness of the sphere. The function of the acrylic sphere that is a modern technology of the concentrated photovoltaic is to gather the energy from the sun then concentrate it to a compact area like a focal spot. This focal spot is placed and put directly above a multi junction device that acts as a concentrator cell appliance. This appliance directly can generate an enormous rate of power that is utilized to generate more electricity rather than the power that the normal photovoltaic panels (PV) can produce. The acrylic sphere is used also for a lot of industrial applications. This research paper aims to explore the characteristics of the flow inside the sphere and investigate the sphere thickness effect on the flow velocity of the fluid motion in order to achieve greater efficiency for the power generation, therefore, improve its performance. The results showed that the sphere thickness significantly change the flow structure value. It is found that the velocity increase as the sphere thickness decreases. Hence, the efficiency of the sphere increases when using lower acrylic sphere thickness. The output power and efficiency of the solar sphere increases with lower sphere thickness. The thinner the thickness of the acrylic layer, the higher the sun light absorbed by the acrylic photons. Subsequently, the higher the output power, which results to get higher efficiency." @default.
- W4385059309 created "2023-07-23" @default.
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- W4385059309 date "2023-02-20" @default.
- W4385059309 modified "2023-09-25" @default.
- W4385059309 title "Exploring the Flow of Solar Sphere Using PIV" @default.
- W4385059309 doi "https://doi.org/10.1109/aset56582.2023.10180584" @default.
- W4385059309 hasPublicationYear "2023" @default.
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