国际空间站空间碎片回收与能量转换系统的理论研究

IF 1.8 Q3 COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS
Amrith Mariappan, V. R. Sanal Kumar, Stephen J. Weddell, Vishnu Anand Muruganandan, In-Seuck Jeung
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引用次数: 8

摘要

微重力环境下的空间碎片管理和减缓是当代感兴趣的一个动态研究主题。在此,我们提供了一个有利可图的能量转换系统概念的理论证明,该系统能够在国际空间站(ISS)将空间碎片转化为有用的粉末,用于各种投标。一把专门设计的扫帚被用来收集各种大小的太空碎片。提出了一种利用人工引力场实现国际空间站碎片分离的光学分选方法。这可以通过使用帧拖动效应或重磁性来实现。感应炉有助于将分离的金属废料转化为液态金属。提出了一种燃料电池辅助水雾化方法,将液体碎片转化为金属粉末。从空间碎片中获得的高能金属粉末可用于生产有用的航空航天应用的推进剂,获得的硅粉可用于制造土壤,以培养未来空间实验室中的药用植物群,旨在发现用于高耐久性医疗保健管理的稀缺药物。拟议的能量转换系统是通过国际合作减轻空间碎片及其在轨道实验室的实际应用以造福人类的一种可能的替代方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Theoretical studies on space debris recycling and energy conversion system in the International Space Station

Theoretical studies on space debris recycling and energy conversion system in the International Space Station

The space debris management and alleviation in the microgravity environment is a dynamic research theme of contemporary interest. Herein, we provide a theoretical proof of the concept of a lucrative energy conversion system that is capable of changing the space debris into useful powders in the International Space Station (ISS) for various bids. A specially designed broom is adapted to collect the space debris of various sizes. An optical sorting method is proposed for the debris segregation in the ISS by creating an artificial gravitational field. It could be done by using the frame-dragging effect or gravitomagnetism. An induction furnace is facilitated for converting the segregated metal-scrap into liquid metal. A fuel-cell aided water atomization method is proposed for transforming the liquid debris into metal powder. The high-energetic metal powders obtained from the space debris could be employed for producing propellants for useful aerospace applications, and the silicon powder obtained could be used for making soil for fostering the pharmaceutical-flora in the space lab in the future aiming for the scarce-drug discoveries for high-endurance health care management. The proposed energy conversion system is a possible alternative for the space debris extenuation and its real applications in orbiting laboratories through the international collaboration for the benefits to humanity.

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CiteScore
5.10
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