Essentials of multiphase flow and transport in porous media [[electronic resource] /] / George F. Pinder, William G. Gray |
Autore | Pinder George Francis <1942-> |
Pubbl/distr/stampa | Hoboken, N.J., : Wiley, c2008 |
Descrizione fisica | 1 online resource (273 p.) |
Disciplina | 624.1/513 |
Altri autori (Persone) | GrayWilliam G <1948-> (William Guerin) |
Soggetto topico |
Porous materials - Fluid dynamics - Mathematical models
Multiphase flow - Mathematical models |
ISBN |
1-281-75203-7
9786611752033 0-470-38080-2 0-470-38079-9 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto |
ESSENTIALS OF MULTIPHASE FLOW AND TRANSPORT IN POROUS MEDIA; CONTENTS; Preface; Acknowledgments; 1 Setting the Stage; 1.1 Introduction; 1.2 Phases and Porous Media; 1.3 Grain and Pore Size Distributions; 1.4 The Concept of Saturation; 1.5 The Concept of Pressure; 1.6 Surface Tension Considerations; 1.7 Concept of Concentration; 1.8 Summary; 1.9 Exercises; Bibliography; 2 Mass Conservation Equations; 2.1 Introduction; 2.2 Microscale Mass Conservation; 2.3 Integral Forms of Mass Conservation; 2.4 Integral Theorems; 2.4.1 Divergence Theorem; 2.4.2 Transport Theorem
2.5 Point Forms of Mass Conservation2.6 The Macroscale Perspective; 2.6.1 The Representative Elementary Volume; 2.6.2 Global and Local Coordinate Systems; 2.6.3 Macroscopic Variables; 2.6.4 Definitions of Macroscale Quantities; 2.6.5 Summary of Macroscale Quantities; 2.7 The Averaging Theorems; 2.7.1 Spatial Averaging Theorem; 2.7.2 Temporal Averaging Theorem; 2.8 Macroscale Mass Conservation; 2.8.1 Macroscale Point Forms; 2.8.2 Integral Forms; 2.9 Applications; 2.9.1 Integral Analysis; 2.9.2 Point Analysis; 2.10 Summary; 2.11 Exercises; Bibliography; 3 Flow Equations; 3.1 Introduction 3.2 Darcy's Experiments3.3 Fluid Properties; 3.4 Equations of State for Fluids; 3.4.1 Mass Fraction; 3.4.2 Mass Density and Pressure; 3.4.3 Fluid Viscosity; 3.5 Hydraulic Potential; 3.5.1 Hydrostatic Force and Hydraulic Head; 3.5.2 Derivatives of Hydraulic Head; 3.6 Single-Phase Fluid Flow; 3.6.1 Darcy's Law; 3.6.2 Hydraulic Conductivity and Permeability; 3.6.3 Derivation of Groundwater Flow Equation; 3.6.4 Recapitulation of the Derivation; 3.6.5 Initial and Boundary Conditions; 3.6.6 Two-Dimensional Flow; 3.7 Two-Phase Immiscible Flow; 3.7.1 Derivation of Flow Equations 3.7.2 Observations on the p(c)-s(w) Relationship3.7.3 Formulas for the p(c)-s(w) Relationship; 3.7.4 Observations of the k(α)(rel)-s(w) Relationship; 3.7.5 Formulas for the k(α)(rel)-s(w) Relation; 3.7.6 Special Cases of Multiphase Flow; 3.8 The Buckley-Leverett Analysis; 3.8.1 Fractional Flow; 3.8.2 Derivation of the Buckley-Leverett Equation; 3.8.3 Solution of the Buckley-Leverett Equation; 3.9 Summary; 3.10 Exercises; Bibliography; 4 Mass Transport Equations; 4.1 Introduction; 4.2 Velocity in the Species Transport Equations; 4.2.1 Direct Approach; 4.2.2 Rigorous Approach 4.2.3 Distribution Approach4.2.4 Summary; 4.3 Closure Relations for the Dispersion Vector; 4.4 Chemical Reaction Rates; 4.5 Interphase Transfer Terms; 4.5.1 Kinetic Formulation; 4.5.2 Equilibrium Formulation; 4.5.3 Summary: Kinetic vs. Equilibrium Formulations; 4.6 Initial and Boundary Conditions; 4.7 Conclusion; 4.8 Exercises; Bibliography; 5 Simulation; 5.1 1-D Simulation of Air-Water Flow; 5.1.1 Drainage in a Homogeneous Soil; 5.1.2 Drainage in a Heterogeneous Soil; 5.1.3 Imbibition in Homogeneous Soil; 5.2 1-D Simulation of DNAPL-Water Flow 5.2.1 Primary DNAPL Imbibition in Homogeneous Soil |
Record Nr. | UNINA-9910144135503321 |
Pinder George Francis <1942-> | ||
Hoboken, N.J., : Wiley, c2008 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|
Essentials of multiphase flow and transport in porous media / / George F. Pinder, William G. Gray |
Autore | Pinder George Francis <1942-> |
Edizione | [1st ed.] |
Pubbl/distr/stampa | Hoboken, N.J., : Wiley, c2008 |
Descrizione fisica | 1 online resource (273 p.) |
Disciplina | 624.1/513 |
Altri autori (Persone) | GrayWilliam G <1948-> (William Guerin) |
Soggetto topico |
Porous materials - Fluid dynamics - Mathematical models
Multiphase flow - Mathematical models |
ISBN |
1-281-75203-7
9786611752033 0-470-38080-2 0-470-38079-9 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto |
ESSENTIALS OF MULTIPHASE FLOW AND TRANSPORT IN POROUS MEDIA; CONTENTS; Preface; Acknowledgments; 1 Setting the Stage; 1.1 Introduction; 1.2 Phases and Porous Media; 1.3 Grain and Pore Size Distributions; 1.4 The Concept of Saturation; 1.5 The Concept of Pressure; 1.6 Surface Tension Considerations; 1.7 Concept of Concentration; 1.8 Summary; 1.9 Exercises; Bibliography; 2 Mass Conservation Equations; 2.1 Introduction; 2.2 Microscale Mass Conservation; 2.3 Integral Forms of Mass Conservation; 2.4 Integral Theorems; 2.4.1 Divergence Theorem; 2.4.2 Transport Theorem
2.5 Point Forms of Mass Conservation2.6 The Macroscale Perspective; 2.6.1 The Representative Elementary Volume; 2.6.2 Global and Local Coordinate Systems; 2.6.3 Macroscopic Variables; 2.6.4 Definitions of Macroscale Quantities; 2.6.5 Summary of Macroscale Quantities; 2.7 The Averaging Theorems; 2.7.1 Spatial Averaging Theorem; 2.7.2 Temporal Averaging Theorem; 2.8 Macroscale Mass Conservation; 2.8.1 Macroscale Point Forms; 2.8.2 Integral Forms; 2.9 Applications; 2.9.1 Integral Analysis; 2.9.2 Point Analysis; 2.10 Summary; 2.11 Exercises; Bibliography; 3 Flow Equations; 3.1 Introduction 3.2 Darcy's Experiments3.3 Fluid Properties; 3.4 Equations of State for Fluids; 3.4.1 Mass Fraction; 3.4.2 Mass Density and Pressure; 3.4.3 Fluid Viscosity; 3.5 Hydraulic Potential; 3.5.1 Hydrostatic Force and Hydraulic Head; 3.5.2 Derivatives of Hydraulic Head; 3.6 Single-Phase Fluid Flow; 3.6.1 Darcy's Law; 3.6.2 Hydraulic Conductivity and Permeability; 3.6.3 Derivation of Groundwater Flow Equation; 3.6.4 Recapitulation of the Derivation; 3.6.5 Initial and Boundary Conditions; 3.6.6 Two-Dimensional Flow; 3.7 Two-Phase Immiscible Flow; 3.7.1 Derivation of Flow Equations 3.7.2 Observations on the p(c)-s(w) Relationship3.7.3 Formulas for the p(c)-s(w) Relationship; 3.7.4 Observations of the k(α)(rel)-s(w) Relationship; 3.7.5 Formulas for the k(α)(rel)-s(w) Relation; 3.7.6 Special Cases of Multiphase Flow; 3.8 The Buckley-Leverett Analysis; 3.8.1 Fractional Flow; 3.8.2 Derivation of the Buckley-Leverett Equation; 3.8.3 Solution of the Buckley-Leverett Equation; 3.9 Summary; 3.10 Exercises; Bibliography; 4 Mass Transport Equations; 4.1 Introduction; 4.2 Velocity in the Species Transport Equations; 4.2.1 Direct Approach; 4.2.2 Rigorous Approach 4.2.3 Distribution Approach4.2.4 Summary; 4.3 Closure Relations for the Dispersion Vector; 4.4 Chemical Reaction Rates; 4.5 Interphase Transfer Terms; 4.5.1 Kinetic Formulation; 4.5.2 Equilibrium Formulation; 4.5.3 Summary: Kinetic vs. Equilibrium Formulations; 4.6 Initial and Boundary Conditions; 4.7 Conclusion; 4.8 Exercises; Bibliography; 5 Simulation; 5.1 1-D Simulation of Air-Water Flow; 5.1.1 Drainage in a Homogeneous Soil; 5.1.2 Drainage in a Heterogeneous Soil; 5.1.3 Imbibition in Homogeneous Soil; 5.2 1-D Simulation of DNAPL-Water Flow 5.2.1 Primary DNAPL Imbibition in Homogeneous Soil |
Record Nr. | UNINA-9910814701803321 |
Pinder George Francis <1942-> | ||
Hoboken, N.J., : Wiley, c2008 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|
Subsurface hydrology [[electronic resource] /] / George F. Pinder, Michael A. Celia |
Autore | Pinder George Francis <1942-> |
Edizione | [1st ed.] |
Pubbl/distr/stampa | Hoboken, N.J., : Wiley-Interscience, c2006 |
Descrizione fisica | 1 online resource (484 p.) |
Disciplina | 551.49 |
Altri autori (Persone) | CeliaMichael Anthony |
Soggetto topico |
Groundwater
Groundwater - Pollution |
Soggetto genere / forma | Electronic books. |
ISBN |
1-280-64900-3
9786610649006 0-470-04420-9 1-60119-842-6 0-470-04419-5 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto |
SUBSURFACE HYDROLOGY; CONTENTS; PREFACE; 1 WATER AND THE SUBSURFACE ENVIRONMENT; 1.1 Groundwater Hydrology; 1.2 Groundwater and the Hydrologic Cycle; 1.3 Groundwater as a Resource; 1.4 Groundwater and the Subsurface; 1.5 The Near-Surface Environment; 1.5.1 Soil; 1.6 Porosity; 1.6.1 Primary Porosity; 1.6.2 Secondary Porosity; 1.7 Soil Water; 1.8 Groundwater Contamination; 1.8.1 Naturally Occurring Groundwater Contaminants; 1.8.2 Anthropogenic Contaminants; 1.8.3 Superfund; 1.9 Quantitative Analysis of Groundwater Problems; 1.9.1 Governing Equations; 1.9.2 Field Data
1.9.3 Behavior of Groundwater Systems1.10 Summary; 1.11 Problems; Bibliography; 2 FLUID FLOW AND MASS TRANSPORT; 2.1 Fluid Pressure; 2.2 Hydraulic Head; 2.3 Fluid Potential; 2.4 Concept of Saturation; 2.5 The Darcy Experiment; 2.5.1 Extended Forms of Darcy's Law; 2.5.2 Example of a Groundwater Flow Velocity Calculation in Two Dimensions; 2.5.3 Additional Concepts of Fluid Potential; 2.6 Fluid Flow and Mass and Energy Fluxes; 2.6.1 Convection, Diffusion, and Dispersion; 2.6.2 The Phenomena of Adsorption and Retardation; 2.7 Summary; 2.8 Problems; Bibliography; 3 THE GEOLOGIC SETTING 3.1 Unconsolidated Deposits3.1.1 Clastic Sedimentary Environment; 3.1.2 Precipitate Sedimentary Environment; 3.1.3 Glacial Environments; 3.2 Consolidated Rocks; 3.3 Metamorphic Rocks; 3.4 Igneous Rocks; 3.5 Geologic Time; 3.5.1 The Hadean Era; 3.5.2 The Archaean Era; 3.5.3 Proterozoic Era; 3.5.4 Paleozoic Era; 3.5.5 Mesozoic Era; 3.5.6 Cenozoic Era; 3.6 Field Investigation; 3.6.1 Near-Surface Investigation; 3.6.2 Deep Subsurface Investigation; 3.7 The Hydrogeological Record; 3.7.1 The Cross Section; 3.7.2 The Contour Map; 3.8 The Measurement of State Variables; 3.8.1 Water-Level Measurements 3.8.2 Solute Concentration Measurements3.9 Summary; 3.10 Problems; Bibliography; 4 WATER MOVEMENT IN GEOLOGICAL FORMATIONS; 4.1 Conservation of Fluid Mass; 4.2 Conservation of Fluid Mass in a Porous Medium; 4.3 Groundwater Flow Equations; 4.3.1 The Governing Equation; 4.3.2 Parameter Estimates; 4.3.3 Boundary Conditions; 4.3.4 Initial Conditions; 4.3.5 Sources and Sinks; 4.4 The Free-Surface Condition; 4.5 Reduction in Dimensionality; 4.5.1 Physical Dimensions of the Model; 4.5.2 Vertical Integration of the Flow Equation; 4.5.3 The Free-Surface Condition in the Areal Model 4.6 Salt-Water Intrusion4.7 One-Dimensional Formulation; 4.8 Cylindrical Coordinates; 4.9 Summary; 4.10 Problems; Bibliography; 5 ANALYTICAL SOLUTIONS FOR FLOW PROBLEMS; 5.1 One-dimensional Flow Problems; 5.1.1 Darcy Column Experiments; 5.1.2 One-Dimensional Regional Flow; 5.1.3 Flow in Radial Coordinates; 5.2 Two-dimensional Flow Problems; 5.2.1 Graphical Solutions; 5.2.2 Analytical Solutions in Two Dimensions; 5.3 Summary; 5.4 Problems; Bibliography; 6 WELL HYDRAULICS; 6.1 The Slug Test; 6.1.1 Hvorslev Method; 6.1.2 Cooper-Bredehoeft-Papadopulos Approach; 6.2 Pumping Tests 6.2.1 Thiem Method |
Record Nr. | UNINA-9910143417003321 |
Pinder George Francis <1942-> | ||
Hoboken, N.J., : Wiley-Interscience, c2006 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|
Subsurface hydrology [[electronic resource] /] / George F. Pinder, Michael A. Celia |
Autore | Pinder George Francis <1942-> |
Edizione | [1st ed.] |
Pubbl/distr/stampa | Hoboken, N.J., : Wiley-Interscience, c2006 |
Descrizione fisica | 1 online resource (484 p.) |
Disciplina | 551.49 |
Altri autori (Persone) | CeliaMichael Anthony |
Soggetto topico |
Groundwater
Groundwater - Pollution |
ISBN |
1-280-64900-3
9786610649006 0-470-04420-9 1-60119-842-6 0-470-04419-5 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto |
SUBSURFACE HYDROLOGY; CONTENTS; PREFACE; 1 WATER AND THE SUBSURFACE ENVIRONMENT; 1.1 Groundwater Hydrology; 1.2 Groundwater and the Hydrologic Cycle; 1.3 Groundwater as a Resource; 1.4 Groundwater and the Subsurface; 1.5 The Near-Surface Environment; 1.5.1 Soil; 1.6 Porosity; 1.6.1 Primary Porosity; 1.6.2 Secondary Porosity; 1.7 Soil Water; 1.8 Groundwater Contamination; 1.8.1 Naturally Occurring Groundwater Contaminants; 1.8.2 Anthropogenic Contaminants; 1.8.3 Superfund; 1.9 Quantitative Analysis of Groundwater Problems; 1.9.1 Governing Equations; 1.9.2 Field Data
1.9.3 Behavior of Groundwater Systems1.10 Summary; 1.11 Problems; Bibliography; 2 FLUID FLOW AND MASS TRANSPORT; 2.1 Fluid Pressure; 2.2 Hydraulic Head; 2.3 Fluid Potential; 2.4 Concept of Saturation; 2.5 The Darcy Experiment; 2.5.1 Extended Forms of Darcy's Law; 2.5.2 Example of a Groundwater Flow Velocity Calculation in Two Dimensions; 2.5.3 Additional Concepts of Fluid Potential; 2.6 Fluid Flow and Mass and Energy Fluxes; 2.6.1 Convection, Diffusion, and Dispersion; 2.6.2 The Phenomena of Adsorption and Retardation; 2.7 Summary; 2.8 Problems; Bibliography; 3 THE GEOLOGIC SETTING 3.1 Unconsolidated Deposits3.1.1 Clastic Sedimentary Environment; 3.1.2 Precipitate Sedimentary Environment; 3.1.3 Glacial Environments; 3.2 Consolidated Rocks; 3.3 Metamorphic Rocks; 3.4 Igneous Rocks; 3.5 Geologic Time; 3.5.1 The Hadean Era; 3.5.2 The Archaean Era; 3.5.3 Proterozoic Era; 3.5.4 Paleozoic Era; 3.5.5 Mesozoic Era; 3.5.6 Cenozoic Era; 3.6 Field Investigation; 3.6.1 Near-Surface Investigation; 3.6.2 Deep Subsurface Investigation; 3.7 The Hydrogeological Record; 3.7.1 The Cross Section; 3.7.2 The Contour Map; 3.8 The Measurement of State Variables; 3.8.1 Water-Level Measurements 3.8.2 Solute Concentration Measurements3.9 Summary; 3.10 Problems; Bibliography; 4 WATER MOVEMENT IN GEOLOGICAL FORMATIONS; 4.1 Conservation of Fluid Mass; 4.2 Conservation of Fluid Mass in a Porous Medium; 4.3 Groundwater Flow Equations; 4.3.1 The Governing Equation; 4.3.2 Parameter Estimates; 4.3.3 Boundary Conditions; 4.3.4 Initial Conditions; 4.3.5 Sources and Sinks; 4.4 The Free-Surface Condition; 4.5 Reduction in Dimensionality; 4.5.1 Physical Dimensions of the Model; 4.5.2 Vertical Integration of the Flow Equation; 4.5.3 The Free-Surface Condition in the Areal Model 4.6 Salt-Water Intrusion4.7 One-Dimensional Formulation; 4.8 Cylindrical Coordinates; 4.9 Summary; 4.10 Problems; Bibliography; 5 ANALYTICAL SOLUTIONS FOR FLOW PROBLEMS; 5.1 One-dimensional Flow Problems; 5.1.1 Darcy Column Experiments; 5.1.2 One-Dimensional Regional Flow; 5.1.3 Flow in Radial Coordinates; 5.2 Two-dimensional Flow Problems; 5.2.1 Graphical Solutions; 5.2.2 Analytical Solutions in Two Dimensions; 5.3 Summary; 5.4 Problems; Bibliography; 6 WELL HYDRAULICS; 6.1 The Slug Test; 6.1.1 Hvorslev Method; 6.1.2 Cooper-Bredehoeft-Papadopulos Approach; 6.2 Pumping Tests 6.2.1 Thiem Method |
Record Nr. | UNINA-9910830970103321 |
Pinder George Francis <1942-> | ||
Hoboken, N.J., : Wiley-Interscience, c2006 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|
Subsurface hydrology / / George F. Pinder, Michael A. Celia |
Autore | Pinder George Francis <1942-> |
Edizione | [1st ed.] |
Pubbl/distr/stampa | Hoboken, N.J., : Wiley-Interscience, c2006 |
Descrizione fisica | 1 online resource (484 p.) |
Disciplina | 551.49 |
Altri autori (Persone) | CeliaMichael Anthony |
Soggetto topico |
Groundwater
Groundwater - Pollution |
ISBN |
1-280-64900-3
9786610649006 0-470-04420-9 1-60119-842-6 0-470-04419-5 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto |
SUBSURFACE HYDROLOGY; CONTENTS; PREFACE; 1 WATER AND THE SUBSURFACE ENVIRONMENT; 1.1 Groundwater Hydrology; 1.2 Groundwater and the Hydrologic Cycle; 1.3 Groundwater as a Resource; 1.4 Groundwater and the Subsurface; 1.5 The Near-Surface Environment; 1.5.1 Soil; 1.6 Porosity; 1.6.1 Primary Porosity; 1.6.2 Secondary Porosity; 1.7 Soil Water; 1.8 Groundwater Contamination; 1.8.1 Naturally Occurring Groundwater Contaminants; 1.8.2 Anthropogenic Contaminants; 1.8.3 Superfund; 1.9 Quantitative Analysis of Groundwater Problems; 1.9.1 Governing Equations; 1.9.2 Field Data
1.9.3 Behavior of Groundwater Systems1.10 Summary; 1.11 Problems; Bibliography; 2 FLUID FLOW AND MASS TRANSPORT; 2.1 Fluid Pressure; 2.2 Hydraulic Head; 2.3 Fluid Potential; 2.4 Concept of Saturation; 2.5 The Darcy Experiment; 2.5.1 Extended Forms of Darcy's Law; 2.5.2 Example of a Groundwater Flow Velocity Calculation in Two Dimensions; 2.5.3 Additional Concepts of Fluid Potential; 2.6 Fluid Flow and Mass and Energy Fluxes; 2.6.1 Convection, Diffusion, and Dispersion; 2.6.2 The Phenomena of Adsorption and Retardation; 2.7 Summary; 2.8 Problems; Bibliography; 3 THE GEOLOGIC SETTING 3.1 Unconsolidated Deposits3.1.1 Clastic Sedimentary Environment; 3.1.2 Precipitate Sedimentary Environment; 3.1.3 Glacial Environments; 3.2 Consolidated Rocks; 3.3 Metamorphic Rocks; 3.4 Igneous Rocks; 3.5 Geologic Time; 3.5.1 The Hadean Era; 3.5.2 The Archaean Era; 3.5.3 Proterozoic Era; 3.5.4 Paleozoic Era; 3.5.5 Mesozoic Era; 3.5.6 Cenozoic Era; 3.6 Field Investigation; 3.6.1 Near-Surface Investigation; 3.6.2 Deep Subsurface Investigation; 3.7 The Hydrogeological Record; 3.7.1 The Cross Section; 3.7.2 The Contour Map; 3.8 The Measurement of State Variables; 3.8.1 Water-Level Measurements 3.8.2 Solute Concentration Measurements3.9 Summary; 3.10 Problems; Bibliography; 4 WATER MOVEMENT IN GEOLOGICAL FORMATIONS; 4.1 Conservation of Fluid Mass; 4.2 Conservation of Fluid Mass in a Porous Medium; 4.3 Groundwater Flow Equations; 4.3.1 The Governing Equation; 4.3.2 Parameter Estimates; 4.3.3 Boundary Conditions; 4.3.4 Initial Conditions; 4.3.5 Sources and Sinks; 4.4 The Free-Surface Condition; 4.5 Reduction in Dimensionality; 4.5.1 Physical Dimensions of the Model; 4.5.2 Vertical Integration of the Flow Equation; 4.5.3 The Free-Surface Condition in the Areal Model 4.6 Salt-Water Intrusion4.7 One-Dimensional Formulation; 4.8 Cylindrical Coordinates; 4.9 Summary; 4.10 Problems; Bibliography; 5 ANALYTICAL SOLUTIONS FOR FLOW PROBLEMS; 5.1 One-dimensional Flow Problems; 5.1.1 Darcy Column Experiments; 5.1.2 One-Dimensional Regional Flow; 5.1.3 Flow in Radial Coordinates; 5.2 Two-dimensional Flow Problems; 5.2.1 Graphical Solutions; 5.2.2 Analytical Solutions in Two Dimensions; 5.3 Summary; 5.4 Problems; Bibliography; 6 WELL HYDRAULICS; 6.1 The Slug Test; 6.1.1 Hvorslev Method; 6.1.2 Cooper-Bredehoeft-Papadopulos Approach; 6.2 Pumping Tests 6.2.1 Thiem Method |
Record Nr. | UNINA-9910877601703321 |
Pinder George Francis <1942-> | ||
Hoboken, N.J., : Wiley-Interscience, c2006 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|