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Valuable for consultants and regulators...Dream is a useful tool for basic field work, including the first-cut evaluation of remediation design.
- Geräte: PC
- ohne Kopierschutz
- eBook Hilfe
- Größe: 7.23MB
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Valuable for consultants and regulators...Dream is a useful tool for basic field work, including the first-cut evaluation of remediation design.
Dieser Download kann aus rechtlichen Gründen nur mit Rechnungsadresse in A, B, BG, CY, CZ, D, DK, EW, E, FIN, F, GR, HR, H, IRL, I, LT, L, LR, M, NL, PL, P, R, S, SLO, SK ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: Taylor & Francis eBooks
- Seitenzahl: 160
- Erscheinungstermin: 28. Oktober 2020
- Englisch
- ISBN-13: 9781000114911
- Artikelnr.: 60434705
- Verlag: Taylor & Francis eBooks
- Seitenzahl: 160
- Erscheinungstermin: 28. Oktober 2020
- Englisch
- ISBN-13: 9781000114911
- Artikelnr.: 60434705
- Herstellerkennzeichnung Die Herstellerinformationen sind derzeit nicht verfügbar.
Bemadine A. Bonn received a BS in chemistry and mathematics from the University of Portland in 1979 and an MAT from Lewis and Clark College in 1986. She is currently a PhD candidate in the Department of Environmental Science and Engineering at the Oregon Graduate Institute of Science and Technology. Ms. Bonn taught high school chemistry and mathematics for six years and is a Woodrow Wilson Fellowship Foundation Master Teacher. Her laboratory research, under the direction of Dr. William Fish, concerns the chemical and physical processes affecting inorganic contaminants in ground and surface waters. In addition, she is particularly interested in developing methods and materials to improve education in the environmental sciences. This commitment to improving teaching was a primary motivation in the development of DREAM. Stewart A. Rounds, a PhD candidate and NSF Graduate Fellow in the Department of Environmental Science and Engineering at the Oregon Graduate Institute of Science and Technology, received a RS in chemistry from the University of Illinois at Urbana in 1985. His research interests focus on the transport and transformations of organic chemicals in aqueous environments. Mr. Rounds' undergraduate research, conducted with Dr. Richard A. Larson, centered on the photochemistry of 1-naphthol in aqueous systems and in surface microlayers. Now working under the direction of Dr. James F. Pankow, Mr. Rounds' current research concerns the elucidation of the mechanisms controlling the rate-limited uptake and release of hydro-phobic organic compounds by soils and suspended sediments. This work will have important implications for models which predict the environmental fate of organic compounds. Mr. Rounds is also interested in the development of easy-to-use computer programs for environmental science applications. This, combined with his interest in hydrology and groundwater transport, was one of the driving forces for the creation of DREAM.
I. Installation
II. Program Requirements
III. Summary of Features
A. Overview of DREAM
R. Advantages of DREAM
IV. Theory
A. Drawdown and Water Level Elevation
R. Steady
state Velocity
C. Streamlines
D. References
V. Using DREAM
A. A brief overview
R. Getting started
C. Choosing the units
D. The Options page
E. Entering the well data
F. Specifying the grid
G. Running a routine
H. Output files
I. Finishing up
VI. Data Contouring
A. Contouring packages
R. Using SURFER(TM) with DREAM data files . C. Producing streamlines plots
VII. Selected Examples
A. The four basic plots
R. Time series plots
C. A pumping schedule
D. Close
up and expanded views
E. Capture zones
F. Flow nets
VIII. The GRIDIT Program
Appendix A. The Sample Problem
Output
Appendix R. Estimating the Run Time
II. Program Requirements
III. Summary of Features
A. Overview of DREAM
R. Advantages of DREAM
IV. Theory
A. Drawdown and Water Level Elevation
R. Steady
state Velocity
C. Streamlines
D. References
V. Using DREAM
A. A brief overview
R. Getting started
C. Choosing the units
D. The Options page
E. Entering the well data
F. Specifying the grid
G. Running a routine
H. Output files
I. Finishing up
VI. Data Contouring
A. Contouring packages
R. Using SURFER(TM) with DREAM data files . C. Producing streamlines plots
VII. Selected Examples
A. The four basic plots
R. Time series plots
C. A pumping schedule
D. Close
up and expanded views
E. Capture zones
F. Flow nets
VIII. The GRIDIT Program
Appendix A. The Sample Problem
Output
Appendix R. Estimating the Run Time
I. Installation
II. Program Requirements
III. Summary of Features
A. Overview of DREAM
R. Advantages of DREAM
IV. Theory
A. Drawdown and Water Level Elevation
R. Steady
state Velocity
C. Streamlines
D. References
V. Using DREAM
A. A brief overview
R. Getting started
C. Choosing the units
D. The Options page
E. Entering the well data
F. Specifying the grid
G. Running a routine
H. Output files
I. Finishing up
VI. Data Contouring
A. Contouring packages
R. Using SURFER(TM) with DREAM data files . C. Producing streamlines plots
VII. Selected Examples
A. The four basic plots
R. Time series plots
C. A pumping schedule
D. Close
up and expanded views
E. Capture zones
F. Flow nets
VIII. The GRIDIT Program
Appendix A. The Sample Problem
Output
Appendix R. Estimating the Run Time
II. Program Requirements
III. Summary of Features
A. Overview of DREAM
R. Advantages of DREAM
IV. Theory
A. Drawdown and Water Level Elevation
R. Steady
state Velocity
C. Streamlines
D. References
V. Using DREAM
A. A brief overview
R. Getting started
C. Choosing the units
D. The Options page
E. Entering the well data
F. Specifying the grid
G. Running a routine
H. Output files
I. Finishing up
VI. Data Contouring
A. Contouring packages
R. Using SURFER(TM) with DREAM data files . C. Producing streamlines plots
VII. Selected Examples
A. The four basic plots
R. Time series plots
C. A pumping schedule
D. Close
up and expanded views
E. Capture zones
F. Flow nets
VIII. The GRIDIT Program
Appendix A. The Sample Problem
Output
Appendix R. Estimating the Run Time