2015IEEE Transactions on Plasma ScienceOpen access

Dynamic Interplay Between Spacecraft Charging, Space Environment Interactions, and Evolving Materials

JR Dennison

Open full text 34 citations

Abstract

While the effects on spacecraft charging from varying environmental conditions and from the selection of different construction materials have been extensively studied, modification of material properties by exposure to the space plasma environment can also have profound effects on spacecraft charging. Given the increasingly demanding nature of space missions, there is a clear need to extend our understanding of the dynamic nature of material properties that affect spacecraft charging and to expand our knowledgebase of materials' responses to specific environmental conditions so that we can more reliably predict the long-term response of spacecraft to their environment. This paper focuses on the effects of environment-induced material modifications of physical properties relevant to spacecraft charging simulations. It also reviews several specific examples in which environment-induced material modifications have a significant impact on predicted spacecraft charging.

Open-access reader

About this research paper

What this paper is about

While the effects on spacecraft charging from varying environmental conditions and from the selection of different construction materials have been extensively studied, modification of material properties by exposure to the space plasma environment can also have profound effects on spacecraft charging. Given the increasingly demanding nature of space missions, there is a clear need to extend our understanding of the dynamic nature of material properties that affect spacecraft charging and to expand our knowledgebase of materials' responses to specific environmental conditions so that we can more reliably predict the long-term response of spacecraft to their environment. This paper focuses on the effects of environment-induced material modifications of physical properties relevant to spacecraft charging simulations. It also reviews several specific examples in which environment-induced material modifications have a significant impact on predicted spacecraft charging.

Why it matters

OpenAlex reports 34 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

While the effects on spacecraft charging from varying environmental conditions and from the selection of different construction materials have been extensively studied, modification of material properties by exposure to the space plasma environment can also have profound effects on spacecraft charging. Given the increasingly demanding nature of space missions, there is a clear need to extend our understanding of the dynamic nature of material properties that affect spacecraft charging and to expand our knowledgebase of materials' responses to specific environmental conditions so that we can more reliably predict the long-term response of spacecraft to their environment. This paper focuses on the effects of environment-induced material modifications of physical properties relevant to spacecraft charging simulations. It also reviews several specific examples in which environment-induced material modifications have a significant impact on predicted spacecraft charging.

Key concepts: Spacecraft, Spacecraft charging, Space environment, Aerospace engineering, Computer science, Space (punctuation), Space exploration, Spacecraft design

Related papers

Back to paper searchBrowse research topicsOriginal source
Dynamic Interplay Between Spacecraft Charging, Space Environment Interactions, and Evolving Materials — Research Paper | ScholarLens