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Measuring the fidelity of asteroid regolith and cobble simulants

机译:测量小行星重新旋转和鹅卵石模拟器的保真度

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NASA has developed a "Figure of Merit" method to grade the fidelity of lunar simulants for scientific and engineering purposes. Here we extend the method to grade asteroid simulants, both regolith and cobble variety, and we apply the method to the newly developed asteroid regolith and cobble simulant UCF/DSI-CI-2. The reference material that is used to evaluate this simulant for most asteroid properties is the Orgueil meteorite. Those properties are the mineralogical and elemental composition, grain density, bulk density of cobbles, magnetic susceptibility, mechanical strength of cobbles, and volatile release patterns. To evaluate the regolith simulant's particle sizing we use a reference model that was based upon the sample returned from Itokawa by Hayabusa, the boulder count on Hayabusa, and four cases of disrupted asteroids that indicate particle sizing of the subsurface material. Compared to these references, the simulant has high figures of merit, indicating it is a good choice for a wide range of scientific and engineering applications. We recommend this methodology to the wider asteroid community and in the near future will apply it to additional asteroid simulants currently under development.
机译:美国宇航局开发了一个“优点形态”方法,以评定月球模拟器的保真性,以获得科学和工程目的。在这里,我们将该方法扩展到级小行星模拟器,既有速度和鹅卵石种类,我们将该方法应用于新开发的小行星骨折和鹅卵石模拟UCF / DSI-CI-2。用于评估大多数小行星属性的参考材料是orgueil陨石。这些性质是矿物学和元素组成,晶粒密度,堆积的卵形密度,磁敏感,鹅卵石的机械强度和挥发性释放图案。为了评估概述模拟程序的粒度,我们使用基于Hayabusa的北川返回的样品的参考模型,巨石数在Hayabusa上的巨石数,以及4例中断的小行星,表明地下材料的颗粒尺寸。与这些参考文献相比,模拟器具有高的优点,表明它是各种科学和工程应用的良好选择。我们向更广泛的小行星群落建议这种方法,在不久的将来会将其应用于目前正在开发的其他小行星模拟器。

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