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This volume contains the Kurobane lecture and proceedings of the Tenth International Symposium on Tubular Structures - ISTS10, held in Madrid, Spain, 18-20 September 2003. The ISTS10 provides a platform for the presentation and discussion of seventy-three lectures covering themes including: bridges; roofs; design aspects and case studies; static joint behaviour; fatigue; members; beam-column connections; finite element methods; concrete filled tubes; trusses and frames; cast nodes; and behaviour of tubular structures under fire. This book provides a useful reference work for architects, civil and mechanical engineers, designers, manufacturers and contractors involved with tubular structures.
'The consensus on global warming and its effects are now almost unanimous. Even those politicians with serious denial issues are converting. That said, the question becomes: How well does this book deal with urban sprawl and climate change? Professor Ruth is a master at organizing thought (and of creative thought... but an editor most needs the former). He has pulled together a very impressive list of experts from good institutions and organized their contributions to this subject in a meaningful, useful way. I think the coverage of the issue is both very competent and complete.' - Bruce Hannon, University of Illinois, Urbana, US This innovative volume systematically brings together two strands of applied research that, to date, have been carried out separately - 'smart growth' research and climate change adaptability research. By providing theory, models, and case studies from North America, Oceania and Europe, the book creates synergies between the two strands, reconciles differences, and provides insights for decision-makers at national and local levels.
Maintaining bridges in good condition has extended service life and proven to be more cost effective than allowing degradation to advance, necessitating costlier bridge rehabilitation or replacement projects. Preventive maintenance is therefore an important tool to retard deterioration and sustain the safe operation of bridges. This includes a continuous effort of periodic inspections, condition evaluations and prioritizing repairs accordingly. The above measures define the framework for asset management of bridges. On August 21-22, 2017, bridge engineering experts from around the world convened at the 9th New York City Bridge Conference to discuss issues of construction, design, inspection, monitoring, preservation and rehabilitation of bridge structures. This volume documents their contributions to the safe operation of bridge assets.
Land subsidence (LS) is a gradual settling or sudden sinking of the Earth's surface owing to subsurface movement of earth materials. More than 80% of the identified LS in the nation is due to our exploitation of underground water (UW). This report illustrates the 3 basic mechanisms by which human influence on UW causes land subsidence: compaction of aquifer systems, dewatering of organic soils, and mass wasting through dissolution and collapse of susceptible earth materials. Also examines the role that water-management groups play in mitigating subsidence damages. Color and B&W photos, maps, and drawings.
This book is a firsthand investigation into water management in a fast-growing region of the arid American West. It presents three states that have adopted the conjunctive management of groundwater and surface water to make resources go further in serving people and the environment. Yet conjunctive management has followed a different history, been practiced differently, and produced different outcomes in each state. The authors question why different results have emerged from neighbors trying to solve similar problems with the same policy reform. Common Waters, Diverging Streams makes several important contributions to policy literature and policymaking. The first book on conjunctive water management, it describes how the policy came into existence, how it is practiced, what it does and does not accomplish, and how institutional arrangements affect its application. A second contribution is the book's clear and persuasive links between institutions and policy outcomes. Scholars often declare that institutions matter, but few articles or books provide an explicit case study of how policy linkages work in actual practice. In contrast, Blomquist, Schlager, and Heikkila show how diverging courses in conjunctive water management can be explained by state laws and regulations, legal doctrines, the organizations governing and managing water supplies, and the division of authority between state and local government. Not only do these institutional structures make conjunctive management easier or harder to achieve, but they influence the kinds of problems people try to solve and the purposes for which they attempt conjunctive management.
Bring the tools of hydraulics and pneumatics to bear on key environmental challenges Hydraulics and pneumatics are essential tools in environmental engineering. Any area of engineering which deals with harnessing, managing, and controlling fluid and flow will find hydraulics and pneumatics indispensable, and environmental engineering is no exception. These two subjects, however, are rarely integrated in standard teaching and research resources, and there exists an urgent need for a work which brings them together. Hydraulics and Pneumatics in Environmental Engineering meets this need with a thorough, accessible overview of this vital subject. Written for advanced environmental engineering students and assuming a sound undergraduate background in fluid mechanics, this book otherwise provides everything needed to bring hydraulic and pneumatic tools and principles to bear on environmental engineering problems. With civil and environmental engineering only becoming more essential as communities grow and the challenges of climate change mount, the next generation of engineers will be amply served by this text. Hydraulics and Pneumatics in Environmental Engineering readers will also find: An emphasis on practical applications, often under-valued in civil engineering courses Detailed discussion of topics including Navier-Stokes, G-Value, incompressible flow, and many more Diagrams and figures throughout to illustrate key points Hydraulics and Pneumatics in Environmental Engineering is ideal for graduate and advanced undergraduate students in civil and environmental engineering, as well as for researchers and practicing engineers in need of a reference.