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Hydroelectric power generation --- Penstocks --- Pumped storage
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Prepared by the Task Committee for the updating of MOP 79 of the Pipeline Division of the American Society of Civil Engineers. Steel Penstocks stands as a complete guide to the design, installation, and maintenance of the closed conduits between a free water surface and hydroelectric power stations. This new, thoroughly updated edition provides recommendations and technical guidance for all aspects of steel penstocks, including tunnel liners, wyes, and branch outlets. It also provides practical, comprehensive information regarding the economic, safety, and environmental aspects of designing and implementing steel penstocks at hydropower stations. Chapters offer both background commentary and specific requirements, and a final chapter contains 10 worked examples of design problems. Topics include: design considerations, including economic diameter, shutoff systems, and seismic loads; materials, design criteria, and allowable stresses; exposed and buried penstocks; steel tunnel liners; wye branches and outlets; anchor blocks; appurtenances, bends, and transitions; corrosion prevention and control; welding; manufacture, installation, and inspection; startup; documentation and certification; and maintenance. Hydroelectric engineers, designers, and facility managers use MOP 79 as the go-to reference for steel penstocks.
Penstocks. --- Steel, Structural. --- Conduits --- Steel pipes --- Steel --- Hydro power --- Maintenance and operation --- Power plants --- Tunnels --- Linings
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Hydropower is an essential part of the renewable energy sector. High efficiency, immediate availability, and safe operation of hydroelectric power plants are the three key issues in recent developments in the hydropower sector. This book brings together the latest achievements addressing these key factors. In addition, one contribution deals with the alternative harvesting of hydro energy from pivoted cylinders by generating flow-induced vibrations, which are unwanted phenomena in classical pump–turbine units.
Technology: general issues --- Environmental science, engineering & technology --- annular seal --- CFD --- dynamic coefficients --- fluid forces --- nonlinear dynamic model --- static eccentricity --- reversible hydraulic machines --- penstocks --- pressure pipelines --- performance tests --- flow rate measurements --- volumetric gauging method --- pressure-time method --- water-hammer --- pump-turbine --- flow patterns --- pressure pulsations --- similarities --- differences --- S-shaped characteristics --- runaway transient process --- VIV --- FIV --- renewable energy --- pivoted cylinder --- cross section --- geometry --- pump as turbine (PAT) --- Francis turbine --- calculation model --- efficiency --- hydropower --- computational fluid dynamics --- hydraulic efficiency --- Gibson method --- manifolds --- turbine --- thermodynamic method --- air cushion surge tank (ACST) --- air friction model --- flexible hydro power plants --- mechanistic model --- OpenHPL
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Hydropower is an essential part of the renewable energy sector. High efficiency, immediate availability, and safe operation of hydroelectric power plants are the three key issues in recent developments in the hydropower sector. This book brings together the latest achievements addressing these key factors. In addition, one contribution deals with the alternative harvesting of hydro energy from pivoted cylinders by generating flow-induced vibrations, which are unwanted phenomena in classical pump–turbine units.
annular seal --- CFD --- dynamic coefficients --- fluid forces --- nonlinear dynamic model --- static eccentricity --- reversible hydraulic machines --- penstocks --- pressure pipelines --- performance tests --- flow rate measurements --- volumetric gauging method --- pressure-time method --- water-hammer --- pump-turbine --- flow patterns --- pressure pulsations --- similarities --- differences --- S-shaped characteristics --- runaway transient process --- VIV --- FIV --- renewable energy --- pivoted cylinder --- cross section --- geometry --- pump as turbine (PAT) --- Francis turbine --- calculation model --- efficiency --- hydropower --- computational fluid dynamics --- hydraulic efficiency --- Gibson method --- manifolds --- turbine --- thermodynamic method --- air cushion surge tank (ACST) --- air friction model --- flexible hydro power plants --- mechanistic model --- OpenHPL
Choose an application
Hydropower is an essential part of the renewable energy sector. High efficiency, immediate availability, and safe operation of hydroelectric power plants are the three key issues in recent developments in the hydropower sector. This book brings together the latest achievements addressing these key factors. In addition, one contribution deals with the alternative harvesting of hydro energy from pivoted cylinders by generating flow-induced vibrations, which are unwanted phenomena in classical pump–turbine units.
Technology: general issues --- Environmental science, engineering & technology --- annular seal --- CFD --- dynamic coefficients --- fluid forces --- nonlinear dynamic model --- static eccentricity --- reversible hydraulic machines --- penstocks --- pressure pipelines --- performance tests --- flow rate measurements --- volumetric gauging method --- pressure-time method --- water-hammer --- pump-turbine --- flow patterns --- pressure pulsations --- similarities --- differences --- S-shaped characteristics --- runaway transient process --- VIV --- FIV --- renewable energy --- pivoted cylinder --- cross section --- geometry --- pump as turbine (PAT) --- Francis turbine --- calculation model --- efficiency --- hydropower --- computational fluid dynamics --- hydraulic efficiency --- Gibson method --- manifolds --- turbine --- thermodynamic method --- air cushion surge tank (ACST) --- air friction model --- flexible hydro power plants --- mechanistic model --- OpenHPL
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