Simulation and optimization technologies for petroleum waste management and remediation process control.
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G H Huang | X S Qin | L He | X. Qin | G. Huang | L. He | Gordon Huang | Xiaosheng Qin
[1] David E. Goldberg,et al. Risk‐based in situ bioremediation design using a noisy genetic algorithm , 2000 .
[2] K. Rathfelder,et al. Soil vapor extraction and bioventing: Applications, limitations, and future research directions , 1995 .
[3] G H Huang,et al. Simulation-based process optimization for surfactant-enhanced aquifer remediation at heterogeneous DNAPL-contaminated sites. , 2007, The Science of the total environment.
[4] Say Kee Ong,et al. Water-to-Air Mass Transfer of VOCs: Laboratory-Scale Air Sparging System , 1998 .
[5] Mark L. Brusseau,et al. Modeling solute transport influenced by multiprocess nonequilibrium and transformation reactions , 1992 .
[6] George F. Pinder,et al. Flexible time-varying optimization methodology for the solution of groundwater management problems , 2007, Eur. J. Oper. Res..
[7] F. Molz,et al. Simulation of Microbial Growth Dynamics Coupled to Nutrient and Oxygen Transport in Porous Media , 1986 .
[8] C. Shoemaker,et al. Optimal time-varying pumping rates for groundwater remediation: Application of a constrained optimal control algorithm , 1992 .
[9] V. J. Kremesec,et al. Modeling Free Product Migration and Recovery at Hydrocarbon Spill Sites , 1994 .
[10] Cesar Gomez-Lahoz,et al. GROUNDWATER CLEANUP BY IN-SITU SPARGING. VI: A SOLUTION/DISTRIBUTED DIFFUSION MODEL FOR NONAQUEOUS PHASE LIQUID REMOVAL , 1994 .
[11] Larry W. Lake,et al. Free‐Product Recovery of Petroleum Hydrocarbon Liquids , 2000 .
[12] Howard H. Chang,et al. Minimum energy as the general form of critical flow and maximum flow efficiency and for explaining variations in river channel pattern , 2004 .
[13] Weiqi Wang,et al. Optimal groundwater remediation with well location as a decision variable: Model development , 1994 .
[14] Guohe Huang,et al. Simulation‐based optimization of dual‐phase vacuum extraction to remove nonaqueous phase liquids in subsurface , 2008 .
[15] J. Guan,et al. Optimal remediation with well locations and pumping rates selected as continuous decision variables , 1999 .
[16] Linda M. Abriola,et al. VALOR code version 1.0: A PC code for simulating immiscible contaminant transport in subsurface systems. Final report , 1992 .
[17] Guohe Huang,et al. Grey Dynamic Programming for Waste‐Management Planning under Uncertainty , 1994 .
[18] M L Shuler,et al. Independent prediction of naphthalene transport and biodegradation in soil with a mathematical model. , 1999, Biotechnology and bioengineering.
[19] G H Huang,et al. IPCS: an integrated process control system for enhanced in-situ bioremediation. , 2008, Environmental pollution.
[20] Yuh-Ming Lee,et al. Comparison of Algorithms for Nonlinear Integer Optimization: Application to Monitoring Network Design , 1996 .
[21] Jack C. Parker,et al. A parametric model for constitutive properties governing multiphase flow in porous media , 1987 .
[22] S. Finsterle,et al. T2VOC user`s guide , 1995 .
[23] Emil O. Frind,et al. Nonequilibrium mass transfer between the vapor, aqueous, and solid phases in unsaturated soils during vapor extraction , 1994 .
[24] Heinz Hötzl,et al. Air Injection and Soil Air Extraction as a Combined Method for Cleaning Contaminated Sites — Observations from Test Sites in Sediments and Solid Rocks , 1990 .
[25] D. McKinney,et al. Approximate Mixed‐Integer Nonlinear Programming Methods for Optimal Aquifer Remediation Design , 1995 .
[26] Charles S. Sawyer,et al. Groundwater Remediation Design Using a Three‐Dimensional Simulation Model and Mixed‐Integer Programming , 1995 .
[27] J. Eheart,et al. Neural network-based screening for groundwater reclamation under uncertainty , 1993 .
[28] Farhad Nadim,et al. Detection and remediation of soil and aquifer systems contaminated with petroleum products: an overview , 2000 .
[29] Gary A. Pope,et al. Surfactant enhanced remediation of soil columns contaminated by residual tetrachloroethylene , 1994 .
[30] Li He,et al. Optimization of surfactant-enhanced aquifer remediation for a laboratory BTEX system under parameter uncertainty. , 2008, Environmental science & technology.
[31] P. Kitanidis,et al. Optimization of the pumping schedule in aquifer remediation under uncertainty , 1990 .
[32] B. Minsker,et al. Groundwater Remediation Design Using Multiscale Genetic Algorithms , 2006 .
[33] Ann N. Clarke,et al. Groundwater Cleanup by In-Situ Sparging. XIII. Random Air Channels for Sparging of Dissolved and Nonaqueous Phase Volatiles , 1997 .
[34] David E. Dougherty,et al. Design Optimization for Multiple Management Period Groundwater Remediation , 1996 .
[35] R. Helmig. Multiphase Flow and Transport Processes in the Subsurface: A Contribution to the Modeling of Hydrosystems , 2011 .
[36] G H Huang,et al. Barriers to sustainable water-quality management. , 2001, Journal of environmental management.
[37] James R. Craig,et al. Pump-and-treat optimization using analytic element method flow models , 2006 .
[38] Goldberg,et al. Genetic algorithms , 1993, Robust Control Systems with Genetic Algorithms.
[39] Sang-Il Lee,et al. Optimal Estimation and Scheduling in Aquifer Remediation With Incomplete Information , 1991 .
[40] Neil J. Hutzler,et al. Three‐Dimensional Experimental Testing of a Two‐Phase Flow‐Modeling Approach for Air Sparging , 1997 .
[41] Ronald W. Falta,et al. Using Phase Diagrams to Predict the Performance of Cosolvent Floods for NAPL Remediation , 1998 .
[42] G. Karatzas,et al. The solution of groundwater quality management problems with a nonconvex feasible region using a cutting plane optimization technique , 1996 .
[43] Yong Liu,et al. Efficient Multiscale Methods for Optimal In Situ Bioremediation Design , 2002 .
[44] Miguel A. Mariño,et al. Optimal control of groundwater by the feedback method of control , 1989 .
[45] Donald H. Mohr,et al. Application of a 2D Air Flow Model to Soil Vapor Extraction and Bioventing Case Studies , 1995 .
[46] L. Alvarez-Cohen,et al. Model for the cometabolic biodegradation of chlorinated organics. , 1995, Environmental science & technology.
[47] Linda M. Abriola,et al. Modeling transport and biodegradation of benzene and toluene in sandy aquifer material: Comparisons With experimental measurements , 1992 .
[48] Makram T. Suidan,et al. VAPOR PHASE TREATMENT OF PCE IN A SOIL COLUMN BY LAB-SCALE ANAEROBIC BIOVENTING , 2000 .
[49] Richard C. Peralta,et al. Optimizing separate phase light hydrocarbon recovery from contaminated unconfined aquifers , 1998 .
[50] C. Zheng,et al. Applied contaminant transport modeling , 2002 .
[51] 주진철,et al. Applied Contaminant Transport Modeling, Second Edition , 2009 .
[52] Robert D. Norris,et al. Bioremediation With Oxygen-Releasing Solids: A Mathematical Model , 1999 .
[53] J. Massmann,et al. Estimating air conductivity and porosity from vadose-zone pumping tests , 1994 .
[54] C. Shoemaker,et al. Dynamic optimal control for groundwater remediation with flexible management periods , 1992 .
[55] C. Zheng,et al. GROUND WATER MANAGEMENT OPTIMIZATION USING GENETIC ALGORITHMS AND SIMULATED ANNEALING: FORMULATION AND COMPARISON 1 , 1998 .
[56] M. Huesemann,et al. Predictive model for estimating the extent of petroleum hydrocarbon biodegradation in contaminated soils. , 1995, Environmental science & technology.
[57] P. Lundegard,et al. Multiphase numerical simulation of air sparging performance , 1996 .
[58] L. Liu,et al. Modeling for Surfactant-Enhanced Groundwater Remediation Processes at DNAPLs-Contaminated Sites , 2005 .
[59] Guohe Huang,et al. Numerical Simulation of Dual-Phase Vacuum Extraction to Remove Nonaqueous Phase Liquids in Subsurface , 2003 .
[60] Peter A. Forsyth,et al. Mechanisms Controlling Vacuum Extraction Coupled With Air Sparging for Remediation of Heterogeneous Formations Contaminated by Dense Nonaqueous Phase Liquids , 1995 .
[61] Kathryn M. Hess,et al. Simulation of fluid distributions observed at a crude oil spill site incorporating hysteresis, oil entrapment, and spatial variability of hydraulic properties , 1993 .
[62] Cesar Gomez-Lahoz,et al. Groundwater Cleanup by In-Situ Sparging. VII. Volatile Organic Compounds Concentration Rebound Caused by Diffusion after Shutdown , 1994 .
[63] G H Huang,et al. IFRP: a hybrid interval-parameter fuzzy robust programming approach for waste management planning under uncertainty. , 2007, Journal of environmental management.
[64] Barbara S. Minsker,et al. Differentiating a Finite Element Biodegradation Simulation Model for Optimal Control , 1996 .
[65] David J. Wilson,et al. Soil Clean Up by in-situ Surfactant Flushing. I. Mathematical Modeling , 1989 .
[66] George E. Hoag,et al. Removing volatile contaminants from the unsaturated zone by inducing advective air-phase transport , 1989 .
[67] R. Mohtar,et al. Factors affecting air sparging remediation systems using field data and numerical simulations. , 2002, Journal of hazardous materials.
[68] P. Forsyth,et al. Considerations for Robust Compositional Simulations of Subsurface Nonaqueous Phase Liquid Contamination and Remediation , 1995 .
[69] Christine A. Shoemaker,et al. Comparison of Optimization Methods for Ground-Water Bioremediation , 1999 .
[70] Charles S. Sawyer,et al. Optimal flow rates and well locations for soil vapor extraction design , 1998 .
[71] John M. Mulvey,et al. Contaminated groundwater remediation design using simulation, optimization, and sensitivity theory: 1. Model development , 1988 .
[72] Charles S. Sawyer,et al. Mixed-Integer Chance-Constrained Models for Ground-Water Remediation , 1998 .
[73] M. Suidan,et al. Complete remediation of PCE contaminated unsaturated soils by sequential anaerobic-aerobic bioventing. , 2001, Water science and technology : a journal of the International Association on Water Pollution Research.
[74] C. Zheng,et al. An integrated global and local optimization approach for remediation system design , 1999 .
[75] Gary A. Pope,et al. An overview of surfactant enhanced aquifer remediation , 1998 .
[76] R. Samson,et al. Estimation of contaminant depletion in unsaturated soils using a reduced-order biodegradation model and carbon dioxide measurement , 2004, Applied Microbiology and Biotechnology.
[77] David E. Goldberg,et al. Genetic Algorithms in Search Optimization and Machine Learning , 1988 .
[78] E. A. Sudicky,et al. Simulation of biodegradable organic contaminants in groundwater: 2. Plume behavior in uniform and random flow fields , 1990 .
[79] Steven M. Gorelick,et al. Design and Cost Analysis of Rapid Aquifer Restoration Systems Using Flow Simulation and Quadratic Programming , 1986 .
[80] L. L. Rogers,et al. Optimization of groundwater remediation using artificial neural networks with parallel solute transport modeling , 1994 .
[81] Shigeaki Tsutsui,et al. Generalized Models for Prediction of Coastal Wave-Deformation , 2003 .
[82] Say Kee Ong,et al. Modeling of air sparging of VOC-contaminated soil columns , 2000 .
[83] William C. Anderson,et al. Innovative site remediation technology : design and application , 1998 .
[84] William W.-G. Yeh,et al. Experimental design for groundwater modeling and management , 2006 .
[85] R. Ryan Dupont,et al. Fundamentals of bioventing applied to fuel contaminated sites , 1993 .
[86] S. Ranjithan,et al. Using genetic algorithms to solve a multiple objective groundwater pollution containment problem , 1994 .
[87] Li He,et al. An integrated simulation, inference, and optimization method for identifying groundwater remediation strategies at petroleum-contaminated aquifers in western Canada. , 2008, Water research.
[88] W. Alley. Regression Approximations for Transport Model Constraint Sets in Combined Aquifer Simulation-Optimization Studies , 1986 .
[89] Richard C. Peralta,et al. Optimal design of aquifer cleanup systems under uncertainty using a neural network and a genetic algorithm , 1999 .
[90] Brian W. Baetz,et al. Expert Systems in Municipal Solid Waste Management Planning , 1990 .
[91] Frank A. Swartjes,et al. Risk-Based Assessment of Soil and Groundwater Quality in the Netherlands: Standards and Remediation Urgency , 1999, Risk analysis : an official publication of the Society for Risk Analysis.
[92] W. G. Rixey,et al. The dissolution of benzene, toluene, m-xylene and naphthalene from a residually trapped non-aqueous phase liquid under mass transfer limited conditions , 1999 .
[93] Robert C. Borden,et al. Evaluation of groundwater extraction for remediation of petroleum‐contaminated aquifers , 1992 .
[94] Michael G. Elliott,et al. Performance of selected in situ soil decontamination technologies: An Air Force perspective , 1990 .
[95] G. H. Huang,et al. A hybrid inexact-stochastic water management model , 1998, Eur. J. Oper. Res..
[96] L. Gelhar. Stochastic Subsurface Hydrology , 1992 .
[97] Neil J. Hutzler,et al. Modeling the movement of volatile organic chemicals in columns of unsaturated soil , 1990 .
[98] C. Shoemaker,et al. DYNAMIC OPTIMAL CONTROL OF IN-SITU BIOREMEDIATION OF GROUND WATER , 1998 .
[99] Yunwei Sun,et al. Optimization of pump-treat-inject (PTI) design for the remediation of a contaminated aquifer: multi-stage design with chance constraints , 1998 .
[100] G. H. Huang,et al. A fuzzy-stochastic robust programming model for regional air quality management under uncertainty , 2003 .
[101] R. Glass,et al. Bench-scale visualization of DNAPL remediation processes in analog heterogeneous aquifers: surfactant floods and in situ oxidation using permanganate. , 2002, Journal of contaminant hydrology.
[102] S. Hoeg,et al. Assessment of interfacial mass transfer in water-unsaturated soils during vapor extraction. , 2004, Journal of contaminant hydrology.
[103] L. Jones,et al. Optimal control of nonlinear groundwater hydraulics using differential dynamic programming , 1987 .
[104] Giorgio Guariso,et al. The Management of Lake Como: A Multiobjective Analysis , 1986 .
[105] Steven M. Gorelick,et al. The concept of in-situ vapor stripping for removing VOCs from groundwater , 1992 .
[106] Mark D. White,et al. Modeling surfactant-enhanced nonaqueous-phase liquid remediation of porous media , 1998 .
[107] Bill Provencher,et al. Approximating the optimal groundwater pumping policy in a multiaquifer stochastic conjunctive use setting , 1994 .
[108] Kamy Sepehrnoori,et al. Simulation of surfactant-enhanced aquifer remediation , 1994 .
[109] Paul C. Johnson,et al. An Overview of In Situ Air Sparging , 1993 .
[110] R. Peralta,et al. Comparison of a genetic algorithm and mathematical programming to the design of groundwater cleanup systems , 1999 .
[111] J. Eheart,et al. Monitoring network design to provide initial detection of groundwater contamination , 1994 .
[112] Dongxiao Zhang,et al. Stochastic analysis of solute transport in heterogeneous, dual‐permeability media , 2002 .
[113] Ann N. Clarke,et al. Soil Clean Up by in-situ Surfactant Flushing. IV. A Two-Component Mathematical Model , 1991 .
[114] Barbara A. Bekins,et al. BIOMOC, a multispecies solute-transport model with biodegradation , 1997 .
[115] F. Molz,et al. Head gradient control in aquifers used for fluid storage , 1977 .
[116] Fabrizio Pilo,et al. Automated Recurrent Neural Network Design of a Neural Controller in a Custom Power Device , 2001, J. Intell. Robotic Syst..
[117] Gary A. Pope,et al. Influence of Viscous and Buoyancy Forces on the Mobilization of Residual Tetrachloroethylene during Surfactant Flushing , 1996 .
[118] J. K. Lenstra,et al. Local Search in Combinatorial Optimisation. , 1997 .
[119] M. Yavuz Corapcioglu,et al. A compositional multiphase model for groundwater contamination by petroleum products: 2. Numerical solution , 1987 .
[120] Jason I. Gerhard,et al. Site‐Specific Design for Dual Phase Recovery and Stabilization of Pooled DNAPL , 2001 .
[121] C. Reeves. Modern heuristic techniques for combinatorial problems , 1993 .
[122] M. Yavuz Corapcioglu,et al. A compositional multiphase model for groundwater contamination by petroleum products: 1. Theoretical considerations , 1987 .
[123] V. Cvetkovic,et al. Evaluation of Risk from Contaminants Migrating by Groundwater , 1996 .
[124] D. Ahlfeld,et al. Laboratory Study of Air Sparging: Air Flow Visualization , 1993 .
[125] R. Willis. A planning model for the management of groundwater quality , 1979 .
[126] Jason Eugene Fabritz,et al. A Two Dimensional Numerical Model for Simulating the Movement and Biodegradation of Contaminants in a Saturated Aquifer , 1995 .
[127] Nathan Chan,et al. Partial Infeasibility Method for Chance‐Constrained Aquifer Management , 1994 .
[128] G. Pinder,et al. Contaminated groundwater remediation design using simulation, optimization, and sensitivity theory: 2. Analysis of a field site , 1988 .
[129] Ruey-Shiang Guh,et al. Integrating artificial intelligence into on‐line statistical process control , 2003 .
[130] Hai Huang,et al. Stochastic Analysis of Reactive Solute Transport in Heterogeneous, Fractured Porous Media: A Dual-Permeability Approach , 2002 .
[131] Yu-Shu Wu,et al. A composite numerical model for assessing subsurface transport of oily wastes and chemical constituents , 1997 .
[132] Roko Andričević,et al. A Real‐Time Approach to Management and Monitoring of Groundwater Hydraulics , 1990 .
[133] Yong Liu,et al. Full multiscale approach for optimal control of in situ bioremediation , 2004 .
[134] Neil J. Hutzler,et al. VAPOR TRANSPORT IN UNSATURATED SOIL COLUMNS : IMPLICATIONS FOR VAPOR EXTRACTION , 1992 .
[135] A. Roli. Artificial Neural Networks , 2012, Lecture Notes in Computer Science.
[136] E. Calabrese,et al. Petroleum Contaminated Soils , 2021 .
[137] M. Cunha. Groundwater cleanup: The optimization perspective (a literature review) , 2002 .
[138] James B. Rawlings,et al. Linear programming and model predictive control , 2000 .
[139] Hanadi S. Rifai,et al. Ground water contaminant modeling for bioremediation: A review , 1992 .
[140] George F. Pinder,et al. A multiperiod approach to the solution of groundwater management problems using an outer approximation method , 2004, Eur. J. Oper. Res..
[141] David P. Ahlfeld,et al. Two‐Stage Ground‐Water Remediation Design , 1990 .
[142] Paul C. Johnson,et al. Quantitative analysis for the cleanup of hydrocarbon-contaminated soils by in-situ soil venting , 1990 .
[143] E. Sudicky,et al. Simulation of biodegradable organic contaminants in groundwater. 1. Numerical formulation in principal directions. , 1990 .
[144] Kamy Sepehrnoori,et al. A compositional simulator for modeling surfactant enhanced aquifer remediation, 1 Formulation , 1996 .
[145] J. Guan,et al. Optimal design of groundwater remediation systems using fuzzy set theory , 2004 .
[146] George F. Pinder,et al. On the Simulation of Nonaqueous Phase Organic Compounds in the Subsurface , 1986 .
[147] S. Gorelick,et al. Optimal dynamic management of groundwater pollutant sources , 1982 .
[148] K. Rathfelder,et al. Surfactant enhanced recovery of tetrachloroethylene from a porous medium containing low permeability lenses. 2. Numerical simulation. , 2001, Journal of contaminant hydrology.
[149] Christine A. Shoemaker,et al. Dynamic Optimal Ground-Water Reclamation with Treatment Capital Costs , 1998 .
[150] Guohe Huang,et al. Development of a forecasting system for supporting remediation design and process control based on NAPL‐biodegradation simulation and stepwise‐cluster analysis , 2006 .
[151] Liang-Cheng Chang,et al. Dynamic Optimal Groundwater Management with Inclusion of Fixed Costs , 2002 .
[152] Alan J. Rabideau,et al. Analytical Model for Contaminant Mass Removal by Air Sparging , 1998 .
[153] Barbara S. Minsker,et al. Computational Issues for Optimal In-Situ Bioremediation Design , 1998 .
[154] D. McKinney,et al. Genetic algorithm solution of groundwater management models , 1994 .
[155] S. Gorelick,et al. Optimal groundwater quality management under parameter uncertainty , 1987 .
[156] Ismael Herrera,et al. Contaminant transport and biodegradation: 1. A numerical model for reactive transport in porous media , 1989 .
[157] Rainer Helmig,et al. Multiphase flow in heterogeneous porous media: A classical finite element method versus an implicit pressure–explicit saturation‐based mixed finite element–finite volume approach , 1999 .
[158] Linda M Abriola,et al. Influence of surfactant-facilitated interfacial tension reduction on chlorinated solvent migration in porous media: observations and numerical simulation. , 2003, Journal of contaminant hydrology.
[159] Amy B. Chan Hilton,et al. Sensitivity of Optimal Groundwater Remediation Designs to Residual Water Quality Violations , 2001 .
[160] Feyzan Misirli,et al. Optimal Ground Water Pollution Plume Containment with Fixed Charges , 1997 .
[161] Arthur L. Baehr,et al. Evaluation of Unsaturated Zone Air Permeability Through Pneumatic Tests , 1991 .
[162] S. Gorelick. Subsurface Flow and Transport: Incorporating uncertainty into aquifer management models , 1997 .
[163] Robert E. Montgomery,et al. A mathematical model for removing volatile subsurface hydrocarbons by miscible displacement , 1987 .
[164] Manoutchehr Heidari,et al. Applications of Optimal Hydraulic Control to Ground-Water Systems , 1994 .
[165] Cass T. Miller,et al. Multiphase flow and transport modeling in heterogeneous porous media: challenges and approaches , 1998 .
[166] Virginia M. Johnson,et al. Location Analysis in Ground‐Water Remediation Using Neural Networks , 1995 .
[167] J. Bredehoeft,et al. Computer model of two-dimensional solute transport and dispersion in ground water , 1978 .
[168] Deborah L Thurston,et al. Constrained optimization for green engineering decision-making. , 2003, Environmental science & technology.
[169] C. Shoemaker,et al. Optimal remediation of unconfined aquifers: Numerical applications and derivative calculations , 1999 .
[170] Hamid R. Nemati,et al. Groundwater quality management under uncertainty: stochastic programming approaches and the value of information , 1992 .
[171] Makram T Suidan,et al. Numerical modeling of oxygen exclusion experiments of anaerobic bioventing. , 2002, Journal of contaminant hydrology.
[172] Yves Crama,et al. Local Search in Combinatorial Optimization , 2018, Artificial Neural Networks.
[173] Mark A. Widdowson,et al. Three-Dimensional Model for Subsurface Transport and Biodegradation , 1998 .
[174] Zohrab Samani,et al. In Situ Soil Remediation Using Vapor Extraction Wells, Development and Testing of a Three‐Dimensional Finite‐Difference Model , 1993 .
[175] Anthony N. Michel,et al. Design of optimal pump-and-treat strategies for contaminated groundwater remediation using the simulated annealing algorithm , 1992 .
[176] William C. Anderson,et al. Vacuum Vapor Extraction , 1995 .
[177] J. McCray,et al. Numerical Simulation of Air Sparging for Remediation of NAPL Contamination , 1997 .
[178] G. M. Zeng,et al. Integrated Fuzzy-Stochastic Modeling of Petroleum Contamination in Subsurface , 2003 .
[179] James W. Mercer,et al. Simulation of Biodegradation and Sorption Processes in Ground Water , 1988 .
[180] Michael A. Gallo,et al. Exposure and Risk Assessment with Respect to Contaminated Soil: Significance of Biomarkers and Bioavailability , 1997 .
[181] S. Gorelick,et al. Simulating physical processes and economic behavior in saline, irrigated agriculture: model development , 1990 .
[182] Joel Massmann,et al. Effects of Vapor Extraction on Contaminant Flux to Atmosphere and Ground Water , 1996 .
[183] G. Pinder,et al. Enhancement of the outer approximation method for the solution of concentration‐constrained optimal‐design groundwater‐remediation problems , 2003 .
[184] P. Bedient,et al. Transport of dissolved hydrocarbons influenced by oxygen-limited biodegradation , 1986 .
[185] Robert A. Marryott,et al. Optimal Groundwater Management: 1. Simulated Annealing , 1991 .
[186] P. Bayer,et al. Evolutionary algorithms for the optimization of advective control of contaminated aquifer zones , 2004 .
[187] Guohe Huang,et al. A fuzzy process controller for in situ groundwater bioremediation , 2003 .
[188] G. Pinder,et al. Groundwater management using numerical simulation and the outer approximation method for global optimization , 1993 .
[189] F. Owen Hoffman,et al. Uncertainty Is Part of Making Decisions , 1999 .
[190] David B. McWhorter,et al. Unsteady radial flow of gas in the vadose zone , 1990 .
[191] D. Rolston,et al. Transport and transformation of methyl bromide in soils. , 1980 .
[192] C. H. Ward,et al. Bioventing of petroleum hydrocarbons. , 1994 .
[193] Stefan Finsterle,et al. Demonstration of optimization techniques for groundwater plume remediation using iTOUGH2 , 2000, Environ. Model. Softw..
[194] James W. Mercer,et al. A review of immiscible fluids in the subsurface: properties, models, characterization and remediation , 1990 .
[195] Linda M. Abriola,et al. A numerical model (MISER) for the simulation of coupled physical, chemical and biological processes in soil vapor extraction and bioventing systems , 2000 .
[196] Stanley Reitsma,et al. Compositional Modeling Study of Alcohol Flooding for Recovery of DNAPL , 1996 .
[197] M. Marley,et al. The Application of In Situ Air Sparging as an Innovative Soils and Ground Water Remediation Technology , 1992 .
[198] J E McCray,et al. Mathematical modeling of air sparging for subsurface remediation: state of the art. , 2000, Journal of hazardous materials.
[199] Jack C. Parker,et al. A Semianalytical Model to Predict Recovery of Light, Nonaqueous Phase Liquids from Unconfined Aquifers , 1997 .
[200] Daene C. McKinney,et al. (Journal of Water Resources Planning and Management, ASCE, 122(2):128-136)Pump-and-treat groundwater remediation system optimization , 1996 .
[201] Alan J. Rabideau,et al. Field Performance of Air-Sparging System for Removing TCE from Groundwater , 1999 .
[202] R. D. Mutch,et al. Groundwater cleanup by in-situ sparging. I. Mathematical modeling , 1992 .
[203] G Georgiou,et al. Transport of bacteria in porous media: II. A model for convective Transport and growth , 1994, Biotechnology and bioengineering.
[204] Lewis Semprini,et al. Comparison Between Model Simulations and Field Results for In‐Situ Biorestoration of Chlorinated Aliphatics: Part 2. Cometabolic Transformations , 1992 .
[205] Marvin Kirshner,et al. In Situ Remediation of Jet A in Soil and Ground Water by High Vacuum, Dual Phase Extraction , 1996 .
[206] J. Eheart,et al. Aquifer remediation design under uncertainty using a new chance constrained programming technique , 1993 .
[207] S. Yakowitz,et al. Constrained differential dynamic programming and its application to multireservoir control , 1979 .
[208] Dennis J. Paustenbach. A Methodology for Evaluating the Environmental and Public Health Risks of Contaminated Soil , 1989 .
[209] W. Yeh,et al. Mathematical simulation of soil vapor extraction systems: Model development and numerical examples , 1991 .
[210] Aydin Akgerman,et al. Modeling of soil vapor extraction (SVE) systems — Part II. Biodegradation aspects of soil vapor extraction , 1995 .
[211] T. F. Russell,et al. Modeling of multiphase multicontaminant transport in the subsurface , 1995 .
[212] J. Massmann. Applying groundwater flow models in vapor extraction system design , 1989 .
[213] John A. Meech,et al. Application of Fuzzy Logic in Environmental Risk Assessment: some Thoughts on Fuzzy Sets , 2000, Cybern. Syst..
[214] N. Chang,et al. Bioslurping Model for Assessing Light Hydrocarbon Recovery in Contaminated Unconfined Aquifer. I: Simulation Analysis , 2003 .
[215] Daene C. McKinney,et al. Design methodology for efficient aquifer remediation using pump and treat systems , 1992 .
[216] Christine A. Shoemaker,et al. Utilizing Sparsity in Time-Varying Optimal Control of Aquifer Cleanup , 1998 .
[217] Gedeon Dagan,et al. Subsurface flow and transport : a stochastic approach , 1997 .
[218] J. Cherry,et al. Transport of organic contaminants in groundwater. , 1985, Environmental science & technology.
[219] Guohe Huang,et al. Combining Simulation with Evolutionary Algorithms for Optimal Planning Under Uncertainty: An Application to Municipal Solid Waste Management Planning in the Reginonal Municipality of Hamilton-Wentworth , 2003 .
[220] Robert D. Norris,et al. Groundwater Cleanup by In-Situ Sparging. XI. Engineered Bioremediation with Aeration Curtains , 1997 .
[221] B. Yegnanarayana,et al. Artificial Neural Networks , 2004 .
[222] S. Gorelick,et al. Reliable aquifer remediation in the presence of spatially variable hydraulic conductivity: From data to design , 1989 .
[223] M Van Dijke. Multi-phase flow modeling of air sparging , 1996 .
[224] P. Bedient,et al. Transport of dissolved hydrocarbons influenced by oxygen‐limited biodegradation: 1. Theoretical development , 1986 .
[225] I. Phillips,et al. Assessment of a heavy metals‐contaminated site using sequential extraction, TCLP, and risk assessment techniques , 1995 .
[226] T. Culver,et al. Constraint Handling for Genetic Algorithms in Optimal Remediation Design , 2000 .
[227] Manoutchehr Heidari,et al. Identification of AN Optimal Groundwater Management Strategy in a Contaminated Aquifer , 1984 .
[228] P. Gill,et al. Aquifer Reclamation Design: The Use of Contaminant Transport Simulation Combined With Nonlinear Programing , 1984 .
[229] G. M. Shook,et al. Multi-purpose simulation , 1993 .
[230] Howard W Reeves,et al. Axi-symmetric simulation of soil vapor extraction influenced by soil fracturing. , 2002, Journal of contaminant hydrology.
[231] Jae Kyu Lee,et al. UNIK-PMA: A unifier of optimization model with rule-based systems by the post-model analysis , 1996, Ann. Oper. Res..
[232] Guohe Huang,et al. A Stepwise-Inference-Based Optimization System for Supporting Remediation of Petroleum-Contaminated Sites , 2007 .
[233] David J. Wilson,et al. Groundwater Cleanup by in-situ Sparging. IV. Removal of Dense Nonaqueous Phase Liquid by Sparging Pipes , 1993 .
[234] Guohe Huang,et al. Optimization of Remediation Operations at Petroleum-Contaminated Sites through a Simulation-based Stochastic-MCDA Approach , 2008 .
[235] R. Andricevic,et al. Radionuclide migration using a travel time transport approach and its application in risk analysis , 1994 .
[236] R. Mohtar,et al. Field and numerical analysis of in-situ air sparging: a case study. , 2000, Journal of hazardous materials.
[237] David E. Dougherty,et al. Optimal groundwater management: 2. Application of simulated annealing to a field-scale contamination site , 1993 .
[238] Chiu-On Ng,et al. A model for flow induced by steady air venting and air sparging , 2002 .
[239] R. Willis. Optimal groundwater quality management: Well injection of waste waters , 1976 .
[240] Barbara S. Minsker,et al. Optimal groundwater remediation design using an Adaptive Neural Network Genetic Algorithm , 2006 .
[241] Bernard H. Kueper,et al. Numerical Simulation of Surfactant-Enhanced Solubilization of Pooled DNAPL , 1996 .
[242] C. Voss,et al. SUTRA (Saturated-Unsaturated Transport). A Finite-Element Simulation Model for Saturated-Unsaturated, Fluid-Density-Dependent Ground-Water Flow with Energy Transport or Chemically-Reactive Single-Species Solute Transport. , 1984 .
[243] Gordon H. Huang,et al. Model predictive control for in situ bioremediation system , 2006, Adv. Eng. Softw..
[244] Gianmarco Manzini,et al. A fully coupled numerical model for two-phase flow with contaminant transport and biodegradation kinetics , 2001 .
[245] John F. McBride,et al. Dense Chlorinated Solvents in Porous and Fractured Media: Model Experiments , 1990 .
[246] Christos Christodoulatos,et al. Generalized models for prediction of pentachlorophenol adsorption by natural soils , 1996 .
[247] Guohe Huang,et al. Inexact Multiphase Modeling System for the Management of Subsurface Contamination under Uncertainty , 2003 .
[248] Peter A. Forsyth,et al. Numerical simulation of gas venting for NAPL site remediation , 1991 .
[249] Rob M. C. Theelen. Concepts in the Netherlands of Risk Assessment of Soil Contamination , 1997 .
[250] Helmut Kobus,et al. The Role of Large-Scale Experiments in Groundwater and Subsurface Remediation Research: The VEGAS Concept and Approach , 1996 .
[251] Jeffrey Horn,et al. Multi-objective optimal design of groundwater remediation systems: application of the niched Pareto genetic algorithm (NPGA) , 2002 .
[252] Brent E. Sleep,et al. Simulation of Bioventing for Soil and Ground-Water Remediation , 1996 .
[253] A. Mayer,et al. Pump‐and‐treat optimization using well locations and pumping rates as decision variables , 1997 .
[254] Jonathan F. Sykes,et al. Modeling the transport of volatile organics in variably saturated media , 1989 .
[255] Ronald W. Falta,et al. Analytical solutions for steady state gas flow to a soil vapor extraction well , 1992 .
[256] Aaron A. Jennings,et al. Feasibility modeling of passive soil vapor extraction , 2002 .
[257] Mark L. Brusseau,et al. Transport of Organic Chemicals by Gas Advection in Structured or Heterogeneous Porous Media: Development of a Model and Application to Column Experiments , 1991 .
[258] Jack C. Parker,et al. Simulated Recovery of Light, Nonaqueous Phase Liquid from Unconfined Heterogeneous Aquifers , 1997 .
[259] R. Peralta,et al. Modeling for Optimal Management of Agricultural and Domestic Wastewater Loading to Streams , 1995 .
[260] Thomas F. Russell. Mathematical modeling in water resources , 1992 .
[261] Parson,et al. Dual-phase vacuum extraction technology for soil and ground-water remediation: A case study , 1996 .
[262] William A. Jury,et al. Enhanced removal of trapped non-aqueous phase liquids from saturated soil using surfactant solutions , 1997 .
[263] Cesar Gomez-Lahoz,et al. Groundwater Cleanup by In-Situ Sparging. VIII. Effect of Air Channeling on Dissolved Volatile Organic Compounds Removal Efficiency , 1994 .
[264] T. A. Wang,et al. A Risk Based Decision Model to Optimize Remediation Choices at a Superfund Site , 1998 .
[265] S. Gorelick,et al. Hydraulic gradient control for groundwater contaminant removal , 1985 .
[266] G. Huang,et al. An integrated numerical and physical modeling system for an enhanced in situ bioremediation process. , 2006, Environmental pollution.
[267] David J. Wilson,et al. Groundwater Cleanup by in-situ Sparging. II. Modeling of Dissolved Volatile Organic Compound Removal , 1992 .
[268] David J. Wilson,et al. Groundwater Cleanup by in-situ Sparging. III. Modeling of Dense Nonaqueous Phase Liquid Droplet Removal , 1993 .
[269] Fred J. Molz,et al. A numerical transport model for oxygen‐ and nitrate‐based respiration linked to substrate and nutrient availability in porous media , 1988 .
[270] Kurt D. Pennell,et al. Surfactant-enhanced solubilization of residual dodecane in soil columns. 2. Mathematical modeling , 1993 .
[271] Timothy J Kneafsey,et al. Non-aqueous phase liquid spreading during soil vapor extraction. , 2004, Journal of contaminant hydrology.
[272] Amy B. Chan Hilton,et al. Groundwater Remediation Design under Uncertainty Using Genetic Algorithms , 2005 .
[273] R. Mohtar,et al. Application of multiphase transport models to field remediation by air sparging and soil vapor extraction. , 2007, Journal of hazardous materials.
[274] Guohe Huang,et al. Integrated Simulation-Optimization Approach for Real-Time Dynamic Modeling and Process Control of Surfactant-Enhanced Remediation at Petroleum-Contaminated Sites , 2003 .
[275] Lewis Semprini,et al. Comparison Between Model Simulations and Field Results for In‐Situ Biorestoration of Chlorinated Aliphatics: Part 1. Biostimulation of Methanotrophic Bacteria , 1991 .
[276] L. Abriola,et al. Modeling multiphase migration of organic chemicals in groundwater systems--a review and assessment. , 1989, Environmental health perspectives.
[277] Gary A. Pope,et al. Phase Relationships in Chemical Flooding , 1978 .
[278] David P. Ahlfeld,et al. A conceptual model of field behavior of air sparging and its implications for application. [Remediation of volatile contaminants in the saturated zone] , 1994 .
[279] S. Gorelick. A review of distributed parameter groundwater management modeling methods , 1983 .
[280] C. Tiedeman,et al. Analysis of uncertainty in optimal groundwater contaminant capture design , 1993 .
[281] Helmut Kobus,et al. Groundwater and Subsurface Remediation , 1996 .
[282] Virginia M. Johnson,et al. Accuracy of Neural Network Approximators in Simulation-Optimization , 2000 .
[283] Chunmiao Zheng,et al. A Field Demonstration of the Simulation Optimization Approach for Remediation System Design , 2002, Ground water.
[284] Edwin K L Tam,et al. Remediation of contaminated lands: a decision methodology for site owners. , 2002, Journal of environmental management.
[285] M. Wang,et al. Optimal Remediation Policy Selection under General Conditions , 1997 .
[286] C. H. Ward,et al. Handbook of Bioremediation , 1993 .