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19 reviewsThe 2006 second edition of this well received and widely adopted textbook has been extensively revised to provide a more comprehensive treatment of hydromechanics (the coupling of groundwater flow and deformation), to incorporate findings from the substantial body of research published since the first edition, and to include three new chapters on compaction and diagenesis, metamorphism, and subsea hydrogeology. The opening section develops basic theory of groundwater motion, fluid-solid mechanical interaction, solute transport, and heat transport. The second section applies flow, hydromechanics, and transport theory in a generalized geologic context, and focuses on particular geologic processes and environments. A systematic presentation of theory and application coupled with problem sets to conclude each chapter make this text ideal for use by advanced undergraduate and graduate-level hydrogeologists and geologists. It also serves as an invaluable reference for professionals in the field.
The second edition of this well-received and widely adopted textbook has been revised extensively to provide a more comprehensive treatment of hydromechanics (the coupling of groundwater flow and deformation), to incorporate findings from the substantial body of research published since the first edition, and to include three new chapters on compaction and diagenesis, metamorphism, and subsea hydrogeology.A systematic presentation of theory and application, coupled with problem sets to conclude each chapter, makes this text ideal for use by advanced undergraduate- and graduate-level hydrogeologists and geologists. It also serves as an invaluable reference for professionals in the field. Solutions to the student exercises are available to lecturers online at www.cambridge.org/9780521603218. In 1856 the French engineer Henry Darcy published the results of a set of experiments aimed at developing design parameters for sand water filters.