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Heating within spheres of different size irradiated by an electromagnetic plane wave

机译:电磁平面波辐射的不同尺寸球体内的加热

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This paper presents the results obtained by multiphysics (electromagnetic and thermal) numerical simulations which show the influence of the size in two different spheres that are irradiated by an electromagnetic plane wave. Each sphere is constituted by a series of concentric layers that emulate the tissues in the head. A 10 mW/cm2 plane wave is used as source, and the frequency is setup to 1.8 GHz. The power absorbed per unit volume by the tissues (W/m3) is calculated by using the 3-D Finite Difference Time Domain (FDTD) method. Then, temperature inside the spheres is calculated by using a Finite Differences (FD) formulation of the heat diffusion equation. Two different ways of calculating the power-loss density are presented, and validated with analytical results. It is observed that the increase of temperature inside a 66 mm sphere is higher than inside a 100 mm sphere. However, the power absorbed per unit volume in the brain zone is six times higher in the 100 mm sphere.
机译:本文介绍了通过多物理场(电磁和热)数值模拟获得的结果,这些结果显示了电磁平面波辐照的两个不同球体中尺寸的影响。每个球体由一系列同心层组成,这些同心层模仿头部中的组织。使用10 mW / cm 2 平面波作为源,频率设置为1.8 GHz。使用3-D有限时域(FDTD)方法计算组织在单位体积中吸收的功率(W / m 3 )。然后,通过使用热扩散方程的有限差分(FD)公式计算球体内部的温度。提出了两种不同的功率损耗密度计算方法,并用分析结果进行了验证。可以观察到,在66毫米球体内部的温度升高高于100毫米球体内部的温度升高。但是,在100毫米球体中,大脑区域每单位体积吸收的功率是其六倍。

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