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Simulation-Guided Subsurface Drainage Detection
Case ID:
M25-143P^
Web Published:
11/21/2025
Invention Description
Subsurface drainage is an agricultural water management practice widely implemented in low-relief landscapes to regulate soil moisture, particularly in the root zone, and enable earlier planting. The benefits for agricultural production are countered by potential negative impacts on the environment and water quality, highlighting the importance of quantifying their effects and adopting best practices to minimize those negative impacts. However, comprehensive assessment has been challenging due to a lack of information on subsurface drainage spacing and layout. Further, existing methods to detect subsurface layouts are not applicable for large areas.
Researchers at Arizona State University has developed a novel method which combines imaging, computational modeling and AI to detect, analyze and map subsurface drainage systems in agricultural landscapes. It employs a soil moisture model to simulate moisture dynamics along with neural networks to recognize spatial moisture patterns and distinguish drainage features from natural variations. Verified through case studies in Utah and Ohio, this method provides precise insights into subsurface water flow and drainage network configurations.
This technology introduces a flexible and rapid approach for mapping of subsurface drainage networks and holds promise in agricultural land management.
Potential Applications
Precision agriculture monitoring & management
Water resource & drainage system optimization
Agricultural land surveying using UAV & remote sensing technologies
Environmental impact assessments involving soil moisture dynamics
Development of decision-support tools for agricultural water regulation
Benefits and Advantages
Accurate timing for remote sensing data collection to maximize detection of subsurface drains
Integration of soil properties and drainpipe spacing into moisture dynamics modeling
Enhanced efficiency and adaptability in planning ground surveys and image analysis
Potential for improving management of agricultural water drainage and minimizing environmental risks
Non-invasive and efficient detection of hidden drainage systems
Adaptable to various geographic and soil conditions
Patent Information:
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Direct Link:
https://canberra-ip.technologypublisher.com/tech/Simulation-Guided_Subsurface _Drainage_Detection
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For Information, Contact:
Physical Sciences Team
Skysong Innovations