1 edition of Optimal Control of Soil Venting: Mathematical Modeling and Applications found in the catalog.
|Statement||by Horst H. Gerke, Youcef Kelanemer, Ulrich Hornung, Marián Slodička, Stephan Schumacher|
|Series||ISNM International Series of Numerical Mathematics -- 127, ISNM International Series of Numerical Mathematics -- 127.|
|Contributions||Kelanemer, Youcef, Hornung, Ulrich, Slodička, Marián, Schumacher, Stephan|
|The Physical Object|
|Format||[electronic resource] /|
|Pagination||1 online resource (168 pages).|
|Number of Pages||168|
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Angewandte Mathematik Erdwissenschaften Hydrologie Kriging digital elevation model numerical analysis optimization soil Authors and affiliations Horst H. Gerke. Optimal Control of Soil Venting: Mathematical Modeling and Applications.
Authors: Slodicka, M., Gerke, H.H., Hornung, U., Kelanemer, Y., Schumacher, S. Free PreviewBrand: Birkhäuser Basel. Get this from a library. Optimal control of soil venting: mathematical modeling and applications.
[Horst H Gerke;] -- "The task to develop a practicable simulation tool for optimal control of soil vapor extraction was attacked by an interdisciplinary group consisting of mathematicians, soil physicists, chemists and. Cite this chapter as: Gerke H.H., Kelanemer Y., Hornung U., Slodička M., Schumacher S.
() Modeling Soil Venting. In: Optimal Control of Soil Venting Author: Horst H. Gerke, Youcef Kelanemer, Ulrich Hornung, Marián Slodička, Stephan Schumacher.
Optimal Control of Soil Venting Mathematical Modeling And Applications by Marian Slodicka, Horst H. Gerke, Urs Hornung, Youcef Kelanemer, Stephan Schumacher. Get this from a library.
Optimal control of soil venting: mathematical modeling and applications. [Horst H Gerke;] -- The task to develop a practicable simulation tool for optimal control of soil vapor extraction was attacked by an interdisciplinary group consisting of mathematicians, soil physicists, chemists and.
Ulrich Hornung's 25 research works with 1, citations and reads, including: Optimal Control of Soil Venting: Mathematical Modeling and Applications. Optimal Control of Soil Venting: Mathematical Modeling and Applications de Horst H.
Gerke, Urs Hornung, Youcef Kelanemer - English books - commander la livre de la catégorie sans frais de port et bon marché - Ex Libris boutique en ligne. Detailed modeling of soil vapor extraction systems. mathematical modeling and applications. Basel: Optimal Control of Soil Venting: Mathematical Modeling and Applications.
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Optimal Control of Soil Venting: Mathematical Modeling and Applications. ISNMBirkhäuser,ISBNpages. ISNMBirkhäuser,ISBN 3. • EPA//R/ July REVIEW OF MATHEMATICAL MODELING FOR EVALUATING SOIL VAPOR EXTRACTION SYSTEMS by David L.
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This important book: Presents the current challenges of remediation practices Includes up-to-date information about the low-cost, risk-based, sustainable remediation practices, as well as institutional control and management Offers a balanced mix of the principles, practices, and sustainable concepts in soil and groundwater remediation Contains Author: Chunlong Zhang.
Foreword Hyperventilate is a software guidance system for vapor extraction (soil venting) applications. Initial development of this program occured under the Apple Macintosh HyperCard environment, due to its programming simplicity, ability to incorporate text and graphics, and interfacing with other Macintosh programs (such as FORTRAN codes, etc.).
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Key Features: NEW. Sectional and Radiographic Anatomy chapter 5/5(2). Optimal Control of Soil Venting: Mathematical Modeling and Applications Birkhäuser Basel February 1, A description of the latest and most appropriate mathematical and numerical methods for optimizing soil : Test automation consultant at.
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In our electronic library, you can also download or read online The interrupted wedding - scholar's choice edition book free of charge.Modeling of enhanced biodegradation. In situ bioremediation has been one of the most promising techniques for the remediation of petroleum-contaminated sites (Waddill and Widdowson, ).However, design of in situ bioremediation under specific on-site conditions may remain to be a challenging issue, mainly due to difficulties in gaining insight into the Cited by: The author incorporates important design calculations for commonly used in situ and ex situ soil and groundwater remediation technologies, such as soil venting, air sparging, air stripping, bioremediation, and chemical oxidation, and off-gas treatment technologies.
He also presents design calculations for capture zone and optimal well spacing.