A Numerical Investigation of Time Resolved Flows Around Turbine Blades

A Numerical Investigation of Time Resolved Flows Around Turbine Blades
Title A Numerical Investigation of Time Resolved Flows Around Turbine Blades PDF eBook
Author Edward J. Brooksbank
Publisher
Pages 0
Release 2001
Genre Fluid dynamics
ISBN

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Numerical Investigation of a Low Reynolds Number Flow Field in a Turbine Blade Row

Numerical Investigation of a Low Reynolds Number Flow Field in a Turbine Blade Row
Title Numerical Investigation of a Low Reynolds Number Flow Field in a Turbine Blade Row PDF eBook
Author Shunji Enomoto
Publisher
Pages
Release 2001
Genre
ISBN

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Experimental and Numerical Investigation of Time Varying Wakes Behind Turbine Blades

Experimental and Numerical Investigation of Time Varying Wakes Behind Turbine Blades
Title Experimental and Numerical Investigation of Time Varying Wakes Behind Turbine Blades PDF eBook
Author
Publisher Friedr Vieweg & Sohn Verlagsgesellschaft
Pages 268
Release 1999
Genre Technology & Engineering
ISBN

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Experimental and Numerical Investigation of Losses in Low-Pressure Turbine Blade Rows

Experimental and Numerical Investigation of Losses in Low-Pressure Turbine Blade Rows
Title Experimental and Numerical Investigation of Losses in Low-Pressure Turbine Blade Rows PDF eBook
Author Daniel J. Dorney
Publisher
Pages 20
Release 2000
Genre
ISBN

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Scientific and Technical Aerospace Reports

Scientific and Technical Aerospace Reports
Title Scientific and Technical Aerospace Reports PDF eBook
Author
Publisher
Pages 704
Release 1995
Genre Aeronautics
ISBN

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Numerical Investigation and Performance Characteristic Mapping of an Archimedean Screw Hydroturbine

Numerical Investigation and Performance Characteristic Mapping of an Archimedean Screw Hydroturbine
Title Numerical Investigation and Performance Characteristic Mapping of an Archimedean Screw Hydroturbine PDF eBook
Author W. Chris Schleicher
Publisher
Pages 84
Release 2012
Genre
ISBN 9781267876072

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Computational Fluid Dynamics (CFD) is a crucial tool in the design and analysis of hydraulic machinery, especially in the design of a micro hydro turbine. The micro hydro turbine in question is for a low head (less than 60 meters), low volumetric flow rate (0.005 m3/s to 0.5 m 3/s) application with rotation rates varying from 200 RPM to 1500 RPM. The design of the runner geometry is discussed, specifically a non-uniform Archimedean Spiral with an outer diameter of 6 inches and length of 19.5 inches. The transient simulation method, making use of a frame of reference change and a rotating mesh between time-steps, is explained as well as the corresponding boundary conditions. Both simulation methods are compared and are determined to produce similar results. The rotating frame of reference method was determined to be the most suitable method for the mapping of performance characteristic such as required head, torque, power, and efficiency. Results of simulations for a non-uniform Archimedean Spiral are then presented. First, a spectral and temporal convergence study is conducted to make sure that the results are independent of time-step and mesh selection. Performance characteristics of a non-uniform pitched blade turbine are determined for a wide range of volumetric flow rates and rotation rates. The maximum efficiency of the turbine is calculated around 72% for the design of the turbine blade considered in the present study.

Impingement Jet Cooling in Gas Turbines

Impingement Jet Cooling in Gas Turbines
Title Impingement Jet Cooling in Gas Turbines PDF eBook
Author R.S. Amano
Publisher WIT Press
Pages 253
Release 2014-05-28
Genre Science
ISBN 1845649060

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Due to the requirement for enhanced cooling technologies on modern gas turbine engines, advanced research and development has had to take place in field of thermal engineering. Among the gas turbine cooling technologies, impingement jet cooling is one of the most effective in terms of cooling effectiveness, manufacturability and cost. The chapters contained in this book describe research on state-of-the-art and advanced cooling technologies that have been developed, or that are being researched, with a variety of approaches from theoretical, experimental, and CFD studies. The authors of the chapters have been selected from some of the most active researchers and scientists on the subject. This is the first to book published on the topics of gas turbines and heat transfer to focus on impingement cooling alone.