首页> 外文会议>Proceedings of the Twenty-Fourth International Symposium on Space Technology and Science: Selected Papers >PARTICLE FLUX COMPARISONS BETWEEN SUN- AND APEX-FACING SURFACESOF THE SPACE FLYER UNIT
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PARTICLE FLUX COMPARISONS BETWEEN SUN- AND APEX-FACING SURFACESOF THE SPACE FLYER UNIT

机译:面向空间单元的面向日面和顶面的粒子通量比较

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We present the results of a hypervelocity impact surveyof the sun-facing radiator surface of the Exposed FacilityFlyer Unit (EFFU) of the Space Flyer Unit (SFU), andcompare this with data derived from the radiator surfacesof Payload Units (PLU) 1 and 4, which were nominallyApex-facing. As expected by micrometeoroid and debrismodels, their flux curves are almost identical within thestatistically significant range of the data. These modelsalso predict that the particle flux consists almost entirelyof micrometeoroids, and so by assuming this is correct,we examine relationships between crater diameter Dcversus particle diameter Dp.
机译:我们介绍了超高速影响调查的结果 设施的朝阳散热器表面 太空飞行器单元(SFU)的飞行器单元(EFFU),以及 将此与散热器表面得出的数据进行比较 有效载荷单位(PLU)1和4的名义上 面向Apex。如微流星体和碎片所预期的那样 模型,它们的通量曲线在 数据具有统计意义的范围。这些型号 还预测粒子通量几乎全部由 的微流星体,因此假设这是正确的, 我们检查了陨石坑直径Dc之间的关系 对粒径Dp。

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