M. B. Edwards, M. M. Dewoolkar, D. R. Huston, C. Creager | 2017 | Journal of Terramechanics
DOI 10.1016/j.jterra.2016.10.004Review state
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The paper discusses the development and application of a simulation model for analyzing the performance of a solar-powered desalination system in arid regions. The model incorporates various factors such as solar irradiance, temperature, and water demand to predict the system's efficiency and output. The study highlights the importance of optimizing the system's design and operation to maximize water production while minimizing energy consumption. The results indicate that the proposed model can effectively support decision-making in the deployment of solar desalination systems, contributing to sustainable water management in water-scarce areas. The provided text is a mix of metadata, references, and technical content related to a research paper on the mechanical behavior of lunar soils and vehicle mobility. It includes references to various authors, publications, and studies, as well as links to content such as PDFs and images. The paper appears to focus on the interaction between rigid wheels and simulated lunar soils, with an emphasis on experimental research and modeling for the purpose of studying vehicle mobility on extraterrestrial surfaces. The provided text contains a seri
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lunar regolith simulant
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File Type Identification
File Type
Image Metadata Extraction
Image
Pressure-sinkage tests
mechanical
Model parameter estimation
Analytical
Comparison with other soils and simulants
Comparative
Bevameter testing
pressure-sinkage
Bevameter testing
shear
Bekker model
pressure-sinkage
File Identifier
gr1
File Extension
jpg
Image Dimensions
21178 266 370
Resolution
High-Resolution
Relative Density
55%
Cohesion
Varies
Friction Angle
Varies
Model Parameters
Bekker and N2M models