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The Department of Civil and Environmental Engineering at the National University of Singapore invites applications for a Research Assistant position in Geotechnical Engineering. The project focuses on investigating active dilution of seawater using pumping systems and rainfall replenishment in sand-filled reclaimed land, combining 1-g physical model testing with analytical and numerical modeling.
Responsibilities include constructing a 1-g physical model box, data collection with sensors,
The National University of Singapore is the national research university of Singapore. Founded in 1905 as the Straits Settlements and the Federated Malay States Government Medical School, NUS is the oldest higher education institution in Singapore
The Department of Civil and Environmental Engineering of NUS invite applications for a Research Assistant position in Geotechnical Engineering.
Singapore, as a densely populated island nation, faces significant challenges in freshwater scarcity and land limitation. Despite its abundant rainfall, there are insufficient natural reservoirs and aquifers for rainwater capture and storage due to its limited land and geological formation. The reclaimed lands, typically filled with sandy soils, are prone to seawater intrusion and erosion due to seepage, intensified by alarming sea level rise. In this context, we propose to construct seepage cut-off walls enclosing the coastal regions, which can provide dual benefits: creating extensive underground reservoirs in the reclaimed sand layer for freshwater storage and protecting reclaimed land from seawater intrusion.
We are seeking a highly motivated candidate to join our team as a Research Assistant. This project focuses on investigating the active dilution of seawater using pumping systems coupled with rainfall replenishment in sand-filled reclaimed land. The research will combine 1-g physical model testing with analytical and numerical modeling to design optimal dilution strategies for underground freshwater reservoirs.
Key Responsibilities:
The findings will offer hydrological, geotechnical, and environmental insights into the entire implementation process and substantiate the feasibility of using seepage cut-off walls for underground reservoir establishment and coastal protection. This work will advance geomechanics and hydrogeology understanding, underground space development, coastal protection infrastructure multi-utilization, and sustainable urban planning.
Qualifications & Skills:
Location: Kent Ridge Campus
Organization: Engineering
Department : Civil And Environmental Engineering
Employee Referral Eligible: No