Assessment of Backfill Hydraulic Conductivity in an Instrumented Soil-Bentonite Cutoff Wall
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Publisher
Springer Singapore
Link
http://link.springer.com/content/pdf/10.1007/978-981-13-2224-2_36
Reference10 articles.
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2. Malusis M, Evans J, Jacob R, Ruffing D, Barlow L, Marchiori A (2017) Construction and monitoring of an instrumented soil-bentonite cutoff wall: field research case study. In: Proceedings of 29th central Pennsylvania geotechnical conference
3. Ruffing D, Evans J, Malusis M (2010) Prediction of earth pressures in soil-bentonite cutoff walls. GeoFlorida 2010, ASCE, Reston, VA, pp 2416–2425
4. Malusis M, Barben E, Evans J (2009) Hydraulic conductivity and compressibility of a model soil-bentonite backfill amended with activated carbon. J Geotech Geoenviron Eng 135(5):664–672
5. Hvorslev M (1951) Time lag and soil permeability in groundwater observations. Bulletin No. 36, U.S. Army Corps of Engineers Vicksburg, MS
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1. Numerical analysis of consolidation behavior of soil-bentonite backfill in a full-scale slurry trench cutoff wall test;Soils and Foundations;2022-10
2. Diffusion through soil-bentonite backfill from a constructed vertical cutoff wall;Soils and Foundations;2021-04
3. Comparison of Laboratory and Field Measurements of Backfill Hydraulic Conductivity for a Large-Scale Soil-Bentonite Cutoff Wall;Journal of Geotechnical and Geoenvironmental Engineering;2020-08
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