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Buried pipes are a highly efficient, yet complex, method of transport. They produce little contamination, reduce loss and damage, and eliminate atmospheric evaporation, making them the most environment-friendly medium used today. Structural Mechanics of Buried Pipes provides a compendium of knowledge for the designers of these structures, based on experimentation, experience and, most importantly, principles. It helps them delve through the complexities to build optimal pipes in any situation. TOC:Introduction.- Preliminary Ring Design.- Ring Deformations.- Soil Mechanics.- Pipe Mechanics.-…mehr

Produktbeschreibung
Buried pipes are a highly efficient, yet complex, method of transport. They produce little contamination, reduce loss and damage, and eliminate atmospheric evaporation, making them the most environment-friendly medium used today. Structural Mechanics of Buried Pipes provides a compendium of knowledge for the designers of these structures, based on experimentation, experience and, most importantly, principles. It helps them delve through the complexities to build optimal pipes in any situation. TOC:Introduction.- Preliminary Ring Design.- Ring Deformations.- Soil Mechanics.- Pipe Mechanics.- Ring Stresses.- Ring Deflection.- Ring Stiffness.- Non-circular Cross Sections.- Ring Stability.- Encased Flexible Pipes.- Rigid Pipes.- Minimum Soil Cover.- Longitudinal Mechanics.- Thrust Restraints.- Embedment.- Parallel Pipes and Trenches.- Special Sections.- Stress Analysis.- Plastic Pipes.- External Hydrostatics.- Buried Tanks and Silos.- Leaks in Buried Pipes and Tanks.- Long-Span Structures.- Economics of Buried Tanks.- Non-circular Linings and Coatings.- Risers.- Analysis of Buried Structures by Finite Element Method.- Application of Finite Element Analysis to a Buried Pipe.- Economics of Buried Pipes and Tanks.- Appendices.- Index.

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Autorenporträt
Reynold King Watkins, Loren Runar Anderson both Utah State University, Logan, Utah, USA.