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Study of the rheological properties of water and Martian soil simulant mixtures for engineering applications on the red planet
Authors:Lewis Taylor  Federico Alberini  Antonio Sullo  Marit E Meyer  Alessio Alexiadis
Institution:1. School of Chemical Engineering, University of Birmingham, Birmingham B15 2TT, United Kingdom;2. Diageo, Dunmow Rd, Birchanger, Bishop''s Stortford CM23 5RG, United Kingdom;3. NASA Glenn Research Center, Cleveland, OH 44135, USA
Abstract:The rheological properties of mixtures of water and the Martian soil simulant JSC-Mars-1A are investigated by preparing and testing samples at various solids concentrations. The results indicate that the dispersion is viscoelastic and, at small timescales (~0.1?s), reacts to sudden strain as an elastic solid. At longer timescales the dispersion behaves like a Bingham fluid and exhibits a yield stress. Hysteresis loops show that rapid step-changes (2?s duration) of shear-rate result in thixotropic behaviour, but slower changes (>10?s duration) can result in rheopexy. These observations are explained with the breakdown and recovery of the packing structure under stress. The rheological information is used to generate practical tools, such as the system curve and the Moody chart that can be used for designing piping systems, and calculating pump sizes and pressure requirements.
Keywords:Rheology  Thixotropy  Solid dispersion  Martian regolith simulant  In situ resource utilization (ISRU)
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