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Hydraulic parameter identification generalized interpretation method for single and multiple pumping tests Libro electrónico autor: Luc C. Lebbe

Tipo de material: Libro
 en línea Libro en línea Idioma: Inglés Detalles de publicación: New York, New York, United States Springer c1999Descripción: xvi, 359 páginas ilustraciones 25 centímetrosISBN:
  • 3540656030
  • 9783642642647 (Print)
  • 9783642601170 (Online)
Tema(s): Recursos en línea: Formatos físicos adicionales disponibles:
  • Disponible en línea
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Resumen:
Inglés

Hydraulic parameter identification is a crucial step in hydrogeological investigations. The book proposes a unique and generalized interpretation method for single and multiple pumping tests made in groundwater reservoirs with layered heterogeneity and with or without lateral anisotropy. This method eliminates the drawbacks of the numerous and frequently applied interpretation methods. The book also presents an introduction to inverse modeling, resulting in optimal parameter values with their joint confidence region and the corresponding residuals. Cross sections through this multidimensional region elucidate the relation between the shape of this region and some statistical parameters describing the reliability of the identified parameters. This method is demonstrated by means of five pumping or recharge tests.

Número de sistema: 55971
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Incluye bibliografía e índice: páginas 355-359

1. Introduction.. 2. Hydraulic parameters.. 3. Evolution of analytical models of pumping tests and their interpretation methods.. 4. Numerical model of pumping tests in a layered groundwater reservoir.. 5. Further developments of pumping test model.. 6. Inverse model as tool for pumping test interpretation.. 7. Example of performance and interpretation of pumping tests.. Index

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Hydraulic parameter identification is a crucial step in hydrogeological investigations. The book proposes a unique and generalized interpretation method for single and multiple pumping tests made in groundwater reservoirs with layered heterogeneity and with or without lateral anisotropy. This method eliminates the drawbacks of the numerous and frequently applied interpretation methods. The book also presents an introduction to inverse modeling, resulting in optimal parameter values with their joint confidence region and the corresponding residuals. Cross sections through this multidimensional region elucidate the relation between the shape of this region and some statistical parameters describing the reliability of the identified parameters. This method is demonstrated by means of five pumping or recharge tests. Inglés

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