£96.89

CRC Press Energy Dissipation in Hydraulic Structures (IAHR Monographs)

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Last 611 days • 611 data points (No recent data available)

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£97.89 £81.92 £85.40 £88.89 £92.37 £95.86 £99.34 07 July 2024 06 December 2024 08 May 2025 07 October 2025 09 March 2026

Price Distribution

Price distribution over 611 days • 5 price ranges

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39 days 30 days 24 days 58 days 460 days · current 0 115 230 345 460 £83-86 £86-89 £89-92 £92-95 £95-98 Days at Price

Price Analysis

Most common range: £95-98 (460 days, 75.3%)

Price range: £83 - £98

Price levels: 5 price ranges over 611 days

Description

Recent advances in technology have permitted the construction of large dams, reservoirs and channels. This progress has necessitated the development of new design and construction techniques, particularly with the provision of adequate flood release facilities. Chutes and spillways are designed to spill large water discharges over a hydraulic structure (e.g. dam, weir) without major damage to the structure itself and to its environment. At the hydraulic structure, the flood waters rush as an open channel flow or free-falling jet, and it is essential to dissipate a very signifi cant part of the flow kinetic energy to avoid damage to the hydraulic structure and its surroundings. Energy dissipation may be realised by a wide range of design techniques. A number of modern developments have demonstrated that such energy dissipation may be achieved (a) along the chute, (b) in a downstream energy dissipator, or (c) a combination of both. The magnitude of turbulent energy that must be dissipated in hydraulic structures is enormous even in small rural and urban structures. For a small storm waterway discharging at a 4 m3/s mm high drop, the turbulent kinetic energy flux per unit time is 120 kW! At a large dam, the rate of energy dissipation can exceed tens to hundreds of gigawatts; that is, many times the energy production rate of nuclear power plants. Many engineers have never been exposed to the complexity of energy dissipator designs, to the physical processes taking place and to the structural challenges. Several energy dissipators, spillways and storm waterways failed because of poor engineering design. It is believed that a major issue affecting these failures was the lack of understanding of the basic turbulent dissipation processes and of the interactions between free-surface aeration and flow turbulence. In that context, an authoritative reference book on energy dissipation in hydraulic structures is proposed here. The book contents encompass a range of design techniques including block ramps, stepped spillways, hydraulic jump stilling basins, ski jumps and impact dissipators.

Product Specifications

Format
hardcover
Domain
Amazon UK
Release Date
12 May 2015
Listed Since
25 February 2015

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