首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing >Infrared extinction of the powder of brass 70Cu/30Zn calculated by the FDTD and turning bands methods [military smoke screening applications]
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Infrared extinction of the powder of brass 70Cu/30Zn calculated by the FDTD and turning bands methods [military smoke screening applications]

机译:通过FDTD和转向带方法计算的黄铜70Cu / 30Zn粉末的红外消光[军事烟气筛查应用]

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The finite-difference time-domain (FDTD) method is used to calculate the specific extinction cross section of the powder of brass 70Cu/30Zn with 10/sup 3/ to 2.16-10/sup 5/ cubical particles for cell sizes in the range of 0.025 to 0.5 /spl mu/m at infrared frequency. The digitized models with a random process using the turning bands method are simulated for the powder of brass 70Cu/30Zn. From theoretical calculations, the value of the specific extinction cross section of the powder of brass 70Cu/30Zn is between 0.1 to 4.6 m/sup 2//g. While from the experimental measurement, the value of the specific extinction cross section is between 0.58 to 3.78 m/sup 2//g. Most of the theoretical results make a good agreement with those obtained from the experimental measurements for the cell sizes of particles in the range of 0.925 to 0.5 /spl mu/m. From the numerical calculations, it is also found that there is a resonant extinction value occuring at the resonant particle size d/sub 0/ which is approximately 2.54-n/sub p//sup -0.293/ /spl mu/m determined by a least square curve fitting method, where n/sub p/ is the number of particles. The resonant value calculated by the numerical solution is larger than the maximum value obtained from the experimental measurement. The work has applications to military smoke screening.
机译:有限差分时域(FDTD)方法用于计算单元尺寸范围为10 / sup 3 /至2.16-10 / sup 5 /立方颗粒的70Cu / 30Zn黄铜粉末的比消光截面在红外频率下为0.025至0.5 / spl mu / m。针对黄铜70Cu / 30Zn粉末,模拟了使用车削带方法随机处理的数字化模型。根据理论计算,黄铜70Cu / 30Zn的粉末的比消光截面的值在0.1至4.6m / sup 2 // g之间。从实验测量中,比消光截面的值在0.58至3.78m / sup 2 // g之间。大多数理论结果与从实验测量获得的关于0.925至0.5 / spl mu / m范围内的颗粒孔尺寸的结果非常吻合。从数值计算还发现,在共振粒径d / sub 0 /处出现共振消光值,其约为2.54-n / sub p // sup -0.293 / / spl mu / m,由a确定。最小二乘曲线拟合方法,其中n / sub p /是粒子数。通过数值解计算的共振值大于从实验测量获得的最大值。这项工作已应用于军事烟雾筛查。

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