空间碎片轨道利用的评估前景

Pub Date : 2021-07-01 DOI:10.15407/KNIT2021.03.003
A. Alpatov, Yu.M. Goldshtein
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引用次数: 1

摘要

各种大小的空间碎片碎片对近地空间的技术性污染严重限制了开展空间活动的可能性,并对地球上的物体构成极大的危险。高度高达2000公里的低轨道尤其严重堵塞。机构间空间碎片协调委员会建议从工作轨道区域清除空间碎片碎片。目前,有希望的空间碎片清除方法是:下降到地球大气层,重新安置到寿命小于25年的轨道,重新安置到利用轨道和轨道处置。轨道利用将空间碎片视为轨道工业的一种资源。本文的目的是评估空间碎片轨道利用的前景,并制定一种在近地低轨道领域选择安全回收轨道的数量和位置的方法。本文分析了空间碎片轨道利用的前景,并评估了利用轨道储存和随后再利用拆除的空间物体、仪器和材料的可能性。制定和解决了空间碎片轨道利用规划和组织的若干问题。在近地低轨道区域确定空间碎片利用安全轨道的一种基于所制定的标准系统的方法。利用开发的方法和软件包,确定了近地低轨道区域空间碎片利用的可能轨道。估算了空间物体在利用轨道上的寿命、利用轨道在长时间间隔内的稳定性以及空间物体从工作轨道转移到利用轨道所需的能量消耗。所获得结果的新颖性在于开发了利用空间碎片物体轨道的聚类技术,以及开发了近地低轨道区域空间碎片利用的可能轨道选择技术。所得结果可用于空间碎片轨道利用的规划和组织。
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Assessment perspectives for the orbital utilization of space debris
Technogenic pollution of the near-Earth space by fragments of space debris of various sizes significantly limits the possibilities for implementing space activities and represents a great danger to objects on Earth. Low orbits with heights up to 2000 km are particularly heavily clogged. The Inter-Agency Space Debris Coordination Committee recommends removing fragments of space debris from the area of working orbits. Currently, promising ways of space debris removing are considered: descent into the Earth’s atmosphere, relocation to an orbit with a lifetime less than twenty-five years, relocation to an utilization orbit, and orbital disposal. Orbital utilization considers space debris as a resource for the industry in orbit. The objectives of the article are to assess the perspectives for the orbital utilization of space debris and to develop a method for choosing the number and placement of safe recycling orbits in the area of low near-Earth orbits. The paper analyses the prospects for the use of orbital utilization of space debris and the assessment of the possibilities of using orbital storage and subsequent reuse of dismantled space objects, instruments and materials. A number of problems of planning and organizing the orbital utilization of space debris are formulated and solved. A method for determining safe orbits of space debris utilization in the area of low near-Earth orbits based on a criteria system developed. Using the developed method and software package, the possible orbits of space debris utilization in the area of low near-Earth orbits are determined. The lifetime of a space object in the utilization orbit, the stability of the orbit of the utilization at a long time interval, and the energy consumptions for transferring the space object from the working orbit to the utilization orbit are estimated. The novelty of the obtained results consists in the development of a clustering technique for the orbits of utilized space debris objects and the development of a technique for selecting a possible orbit for the utilization of space debris in the area of low near-Earth orbits. The results obtained can be used in the planning and organization of the orbital utilization of space debris.
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