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Finite Element Modeling of a Solar Box Cooker: Temperature and Fluid Velocity Distributions

机译:太阳能箱电磁炉的有限元模型:温度和流体速度分布

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摘要

We studied the temperature distribution and fluid velocity in a box-type solar cooker by using the Finite Element Method (FEM) in Ziguinchor southern of Senegal. Indeed, this is one of the sunniest countries in the world: more than 3000 hours of sunshine per year with an average temperature of around 30 ˚ C. This abundant and exploitable solar energy contributes to the development of more efficient, profitable and clean sources of energy. This will help to satisfy the increasing demand of energy. This numerical model was validated by comparing the numerical results with those of the experiment carried out on a single day. The relative error obtained is below 3%. The model results confirmed the performance of this cooker as its cooking temperature is available for more than seven hours. They have shown that the temperature and internal fluid velocity fields are not homogeneous. The results, although preliminary and encouraging, are a first step towards the complete simulation of a solar cooker integrated into a drying column.
机译:我们通过使用塞内加尔Ziguinchor南部的有限元法(FEM)研究了箱式太阳炊具中的温度分布和流体速度。事实上,这是世界上最阳光的国家之一:每年3000多小时的阳光,平均温度约为30˚ C.这种丰富和利用的太阳能有助于开发更有效,有利可图和清洁的能量。这将有助于满足越来越多的能量需求。通过将数值结果与在一天中进行的实验的实验结果进行比较来验证该数值模型。获得的相对误差低于3%。模型结果证实了该炊具的性能,因为它的烹饪温度可用于超过七个小时。他们表明温度和内部流体速度场不是均匀的。结果虽然初步和令人鼓舞,但是迈为集成在干燥柱中的太阳能炊具的完整模拟的第一步。

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