Measurement-based model for water content estimation in sustainable granular materials using an IoT custom device
Papini, Nicola and Scorzoni, Andrea and Placidi, Pisana and Cecconi, Manuela and Villani Delle Vergini, Carmine and Tarantino, Alessandro (2024) Measurement-based model for water content estimation in sustainable granular materials using an IoT custom device. IEEE Transactions on Instrumentation and Measurement. ISSN 1557-9662 (In Press)
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Abstract
Soil water content has a primary importance in several scientific fields involving the geotechnical, hydrological agronomic, ecological, and biological properties of the soil mass. In recent years, several techniques for determining soil water content in the laboratory and situ have been proposed and developed. Applying these techniques and adopted measurement systems to different soil types is widely discussed in the literature, thus highlighting a nontrivial issue deserving further experimental research. This paper presents the results of applying a capacitive sensor originally developed for soil water content measurement to sustainable granular materials. In particular, the application regards coffee ground samples with two grain size distributions prepared dry and at increasing Gravimetric Water Content (GWC), at different initial voids ratios. This paper presents a measurement-based analytical model for estimating the water content using low-cost low-frequency IoT sensors. The proposed model estimates the water content exploiting both capacitance and conductance measurements of the parallel electrical model. The obtained results show that including conductance measurements improves the water content estimation, with respect to using capacitance measurements only.
ORCID iDs
Papini, Nicola, Scorzoni, Andrea, Placidi, Pisana, Cecconi, Manuela, Villani Delle Vergini, Carmine and Tarantino, Alessandro
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Item type: Article ID code: 92089 Dates: DateEvent27 December 2024Published27 December 2024AcceptedSubjects: Technology > Engineering (General). Civil engineering (General) Department: Faculty of Engineering > Civil and Environmental Engineering Depositing user: Pure Administrator Date deposited: 18 Feb 2025 12:01 Last modified: 18 Feb 2025 12:01 URI: https://strathprints.strath.ac.uk/id/eprint/92089