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Relationship between material parameters and target strength of fluid-filled spherical shells in water: calculations and observations

机译:填充流体的球形壳在水中的材料参数与目标强度之间的关系:计算和观察

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摘要

Thin fluid-filled spherical shells have been used as passive sonar targets for many years. They possess a large target strength which is highly dependent on the sound-speed mismatch between the fluid contained within the shell and the exterior fluid surrounding the shell. In the past, to obtain the appropriate mismatch, the interior fluid mixture contained chlorofluorocarbons (CFCs). Due to a recent production ban on CFCs, it is necessary to choose alternative fluids. The present research analyzes the backscattering target strength of a fluid-filled spherical shell as a function of several material parameters as a guide to choosing alternative fluids and shell materials. Calculations over a broad range of material values display the target strength dependence on the interior fluid parameters as well as the parameters defining the metallic shell. The range of material values presented here is far larger than any previous study addressing the focusing effects of fluid-filled spherical shells. The results should aid in determining liquid fillers and shell materials which yield the maximum possible backscattered returns. Also, several experiments were conducted with stainless steel shells containing a hydrochlorofluorocarbon (HCFC), dichlorofluoroethane. The results are compared with results found from calculations as well as from other experiments involving shells containing a previously used CFC mixture.
机译:薄薄的充满流体的球形壳体已被用作被动声纳目标多年。它们具有很大的目标强度,高度取决于外壳内所含流体与外壳周围的外部流体之间的声速失配。过去,为了获得适当的失配,内部流体混合物中包含氯氟烃(CFC)。由于最近禁止生产CFC,因此有必要选择其他流体。本研究分析了填充流体的球形壳的反向散射目标强度,该强度是几种材料参数的函数,可作为选择其他流体和壳材料的指南。在广泛的材料值范围内进行的计算显示目标强度取决于内部流体参数以及定义金属壳的参数。这里介绍的材料值的范围远远大于以前任何有关流体填充球形壳的聚焦效应的研究。结果应有助于确定产生最大可能反向散射收益的液体填充物和壳材料。另外,对包含氢氯氟烃(HCFC),二氯氟乙烷的不锈钢外壳进行了一些实验。将该结果与从计算以及从包含先前使用过的CFC混合物的外壳的其他实验中获得的结果进行比较。

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