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首页> 外文期刊>International journal of RF and microwave computer-aided engineering >Extinction of Carbon-Fiber Powder Calculated by the FDTD and Turning Bands Methods at 35 GHz
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Extinction of Carbon-Fiber Powder Calculated by the FDTD and Turning Bands Methods at 35 GHz

机译:FDTD和转带法计算的35 GHz碳纤维粉末的消光

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The finite-difference time-domain (FDTD) method is used to calculate the specific extinction cross-section (SECS) of the carbon-fiber powder at 35 GHz. The digitized models with a random process using the turning bands method are simulated for the carbon-fiber powder. The digitized models of the carbon-fiber powder having 12,500-5,832,000 cubical particles with cell sizes in the range of 7-100 μm. It is found that the numerical result of SECS obtained by using the diameter of a cylindrical carbon-fiber particle as the cubical cell size for simulations makes good agreement with the measurement data. It is also found that the SECS is directly proportional to the particle number at 35 GHz. It is also found that the maximum extinction occurs at a resonant particle size. Using curve fitting technique together with Newton's Iteration method, the resonant particle size may be expressed by δ_0 = 3408 × n_p~(-0.344) μm, where n_p is the number of particles.
机译:时域有限差分(FDTD)方法用于计算碳纤维粉末在35 GHz时的比消光截面(SECS)。模拟了使用车削带方法的随机过程的数字化模型,用于碳纤维粉末。碳纤维粉末的数字化模型,具有12,500-5,832,000立方颗粒,单元尺寸在7-100μm范围内。结果发现,通过使用圆柱状碳纤维颗粒的直径作为立方单元尺寸进行模拟而获得的SECS的数值结果与测量数据吻合良好。还发现SECS与35 GHz处的粒子数成正比。还发现最大消光发生在共振粒径上。使用曲线拟合技术和牛顿迭代法,共振粒径可以表示为δ_0= 3408×n_p〜(-0.344)μm,其中n_p是粒子数。

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