Soils are complex materials: they have a particulate structure and fluids can seep through pores, mechanically interacting with the solid skeleton. Moreover, at a microscopic level, the behaviour of the solid skeleton is highly unstable. External loadings are in fact taken by grain chains which are continuously destroyed and rebuilt. Many issues of modeling, even of the physical details of the phenomena, remain open, even obscure; de Gennes listed them not long ago in a critical review. However, despite physical complexities, soil mechanics has developed on the assumption that a soil can be seen as a continuum, or better yet as a medium obtained by the superposition of two and sometimes three con and the other fluids, which occupy the same portion of tinua, one solid space. Furthermore, relatively simple and robust constitutive laws were adopted to describe the stress-strain behaviour and the interaction between the solid and the fluid continua. The contrast between the intrinsic nature of soil and the simplistic engi neering approach is self-evident. When trying to describe more and more sophisticated phenomena (static liquefaction, strain localisation, cyclic mo bility, effects of diagenesis and weathering, ..... ), the nalve description of soil must be abandoned or, at least, improved. Higher order continua, incrementally non-linear laws, micromechanical considerations must be taken into account. A new world was opened, where basic mathematical questions (such as the choice of the best tools to model phenomena and the proof of the well-posedness of the consequent problems) could be addressed.
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Anbieter: Zubal-Books, Since 1961, Cleveland, OH, USA
Zustand: Fine. *Price HAS BEEN REDUCED by 10% until Monday, Oct. 12 (SALE item)* 382 pp., hardcover, new. - If you are reading this, this item is actually (physically) in our stock and ready for shipment once ordered. We are not bookjackers. Buyer is responsible for any additional duties, taxes, or fees required by recipient's country. Artikel-Nr. ZB1349481
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Anbieter: Salish Sea Books, Bellingham, WA, USA
Hardcover. Zustand: Very Good. 0817642412 Very Good++; Hardcover; 2002, Birkhuser Boston Publishing; Very light wear to covers with "straight" edge-corners; Pages clean & unmarked; Tight binding with straight spine; Gray and light blue covers with title in white lettering; 384 pages; "Modeling and Mechanics of Granular and Porous Material," by Gianfranco Capriz, et al. Artikel-Nr. SKU-F9523509261
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Anbieter: Ria Christie Collections, Uxbridge, Vereinigtes Königreich
Zustand: New. In English. Artikel-Nr. ria9780817642419_new
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Anbieter: moluna, Greven, Deutschland
Gebunden. Zustand: New. Soils are complex materials: they have a particulate structure and fluids can seep through pores, mechanically interacting with the solid skeleton. Moreover, at a microscopic level, the behaviour of the solid skeleton is highly unstable. External loadings a. Artikel-Nr. 5975732
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Anbieter: Kennys Bookstore, Olney, MD, USA
Zustand: New. The modeling of granular and porous materials affects a variety of problems that arise from the need to describe the behavior of materials that exist naturally in our surroundings. This work covers various major topics in modeling soil behavior, including transport phenomena. Series: Modeling and Simulation in Science, Engineering and Technology. Num Pages: 382 pages, biography. BIC Classification: TGB; TGMD. Category: (P) Professional & Vocational; (UP) Postgraduate, Research & Scholarly. Dimension: 242 x 166 x 30. Weight in Grams: 732. . 2002. Hardback. . . . . Books ship from the US and Ireland. Artikel-Nr. V9780817642419
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Anbieter: AHA-BUCH GmbH, Einbeck, Deutschland
Buch. Zustand: Neu. Neuware - Soils are complex materials: they have a particulate structure and fluids can seep through pores, mechanically interacting with the solid skeleton. Moreover, at a microscopic level, the behaviour of the solid skeleton is highly unstable. External loadings are in fact taken by grain chains which are continuously destroyed and rebuilt. Many issues of modeling, even of the physical details of the phenomena, remain open, even obscure; de Gennes listed them not long ago in a critical review. However, despite physical complexities, soil mechanics has developed on the assumption that a soil can be seen as a continuum, or better yet as a medium obtained by the superposition of two and sometimes three con and the other fluids, which occupy the same portion of tinua, one solid space. Furthermore, relatively simple and robust constitutive laws were adopted to describe the stress-strain behaviour and the interaction between the solid and the fluid continua. The contrast between the intrinsic nature of soil and the simplistic engi neering approach is self-evident. When trying to describe more and more sophisticated phenomena (static liquefaction, strain localisation, cyclic mo bility, effects of diagenesis and weathering, . ), the nalve description of soil must be abandoned or, at least, improved. Higher order continua, incrementally non-linear laws, micromechanical considerations must be taken into account. A new world was opened, where basic mathematical questions (such as the choice of the best tools to model phenomena and the proof of the well-posedness of the consequent problems) could be addressed. Artikel-Nr. 9780817642419
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