Isothermal Dual-Phase Flow Modeling to Assess the Impact of Gas Collection on Geotechnical and Hydraulic Performance of Landfills

Author:

Jain Pradeep1,Kanneganti Abhimanyu2,Townsend Timothy3,Krause Max4ORCID,Tolaymat Thabet5

Affiliation:

1. President, Innovative Waste Consulting Services, LLC, 3720 NW 43rd St., Suite 103, Gainesville, FL 32606.

2. Project Engineer, Innovative Waste Consulting Services, LLC, 3720 NW 43rd St., Suite 103, Gainesville, FL 32606.

3. Professor, Dept. of Environmental Engineering Sciences, Univ. of Florida, P.O. Box 116450, Gainesville, FL 32611-6450.

4. Engineer, Center for Environmental Solutions and Emergency Response, United States Environmental Protection Agency, 26 W. Martin Luther King St., Cincinnati, OH 45268. ORCID:

5. Research Engineer, Center for Environmental Solutions and Emergency Response, United States Environmental Protection Agency, 26 W. Martin Luther King St., Cincinnati, OH 45268 (corresponding author).

Publisher

American Society of Civil Engineers (ASCE)

Subject

Geotechnical Engineering and Engineering Geology,General Environmental Science

Reference47 articles.

1. Performance of North American Bioreactor Landfills. II: Chemical and Biological Characteristics

2. Evaluation of a final cover slide at a landfill with recirculating leachate

3. Slope failures in municipal solid waste dumps and landfills: a review

4. Effect of Changing Unit Weight and Decomposition on Unsaturated Hydraulics of Municipal Solid Waste in Bioreactor Landfills

5. Byrne, J. R., J. Kendall, and S. Brown. 1992. “Cause and mechanism of failure of Kettleman hills landfill B19, Phase lA.” In Vol. 2 of Geotechnical special technical publication No. 31, stability and performance of slopes and embankments—II, edited by R. B. Seed and R. W. Boulanger, 1188–1215. Reston, VA: ASCE.

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