Science Inventory

STEADY-FATE FIELD-SCALE GAS PERMEABILITY ESTIMATION AND PORE-GAS VELOCITY CALCULATION IN A DOMAIN OPEN TO THE ATMOSPHERE

Citation:

DiGiulio*, D C. AND V. Ravi. STEADY-FATE FIELD-SCALE GAS PERMEABILITY ESTIMATION AND PORE-GAS VELOCITY CALCULATION IN A DOMAIN OPEN TO THE ATMOSPHERE. Remediation Journal 10(4):13-25, (2000).

Description:

Field-scale estimation of gas permeability and subsequent computation of pore-gas velocity profiles are critical elements of sound soil venting design. It has been our experience however in U.S. EPA's technical assistance program, provided by the Office of Research and Development to support EPA regional offices, that many venting practitioners are unaware of equations and data interpretation methods appropriate for gas permeability estimation and pore-gas velocity computation. To ameliorate this situation, we use data collected at a U.S. Coast Guard Station in Traverse City, Michigan, to demonstrate gas permeability estimation and pore-gas velocity calculation for steady-state, axisymmetric, two-dimensional gas flow in a domain open to the atmosphere. For gas permeability estimation, we use random guesses constrained with decreasing intervals of radial and vertical permeability and analysis of root mean square errors to ensure attainment of a global versus local minimum. We demonstrate confidence in permeability estimation by providing plots of observed versus simulated pressure response. Finally, we illustrate how plots of pore-gas velocity as a function of distance and flow rate can be helpful in venting design.

Record Details:

Record Type:DOCUMENT( JOURNAL/ PEER REVIEWED JOURNAL)
Product Published Date:08/01/2000
Record Last Revised:12/22/2005
Record ID: 64902