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The feasibility of using an L1 positioned dust cloud as a method of space-based geoengineering

Authors :
Joan Pau Sánchez
Colin R. McInnes
Russell Bewick
Source :
Advances in Space Research
Publication Year :
2012
Publisher :
Elsevier BV, 2012.

Abstract

In this paper a method of geoengineering is proposed involving clouds of dust placed in the vicinity of the L1 point as an alternative to the use of thin film reflectors. The aim of this scheme is to reduce the manufacturing requirement for space-based geoengineering. It has been concluded that the mass requirement for a cloud placed at the classical L1 point, to create an average solar insolation reduction of 1.7%, is 7.60 × 1010 kg yr−1 whilst a cloud placed at a displaced equilibrium point created by the inclusion of the effect of solar radiation pressure is 1.87 × 1010 kg yr−1. These mass ejection rates are considerably less than the mass required in other unprocessed dust cloud methods proposed and are comparable to thin film reflector geoengineering requirements. Importantly, unprocessed dust sourced in-situ is seen as an attractive scheme compared to highly engineered thin film reflectors. It is envisaged that the required mass of dust can be extracted from captured near Earth asteroids, whilst stabilised in the required position using the impulse provided by solar collectors or mass drivers used to eject material from the asteroid surface.

Details

ISSN :
02731177
Volume :
49
Database :
OpenAIRE
Journal :
Advances in Space Research
Accession number :
edsair.doi.dedup.....ed6c4f3da190ddab47490b5a812316e5
Full Text :
https://doi.org/10.1016/j.asr.2012.01.010