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High-accuracy adaptive simulations of a Petri dish exposed to electromagnetic radiation

机译:暴露于电磁辐射下的培养皿的高精度自适应仿真

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摘要

This paper analyses numerically the electric field distribution of a liquid contained in a Petri dish when exposed to electromagnetic waves excited in a rectangular waveguide. Solutions exhibit high-gradients due to the presence of the dielectric liquid contained in the dish. Furthermore, electromagnetic fields within the dielectric have a dramatically lower value than on the remaining part of the domain, which difficults its simulation. Additionally, various singularities of different intensity appear along the boundary of the Petri dish. To properly reproduce and numerically study those effects, we employ a highly-accurate hp-adaptive finite element method. Results of this study demonstrate that the electric field generated within the circular Petri dish is non-homogeneous, and thus, a better shape, size, or location of the dish is needed to achieve an equally distributed radiation enabling the uniform growth of cell cultives.
机译:本文数值分析了培养皿中所含液体在矩形波导中激发的电磁波时的电场分布。由于碟中包含电介质液体,溶液显示出高梯度。此外,电介质内的电磁场的值比域的其余部分低得多,这使其仿真变得困难。另外,沿着培养皿的边界出现不同强度的各种奇异点。为了正确再现和数值研究这些效果,我们采用了高精度的hp自适应有限元方法。这项研究的结果表明,在圆形陪替氏培养皿中产生的电场是不均匀的,因此需要一个更好的培养皿形状,大小或位置,以实现均匀分布的辐射,从而使细胞培养物能够均匀生长。

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