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Titlebook: Design of Francis Turbine and OpenFOAM Methods; Zhiwei Guo,Sailesh Chitrakar,Bhola Thapa Book 2024 The Editor(s) (if applicable) and The A

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发表于 2025-3-21 17:41:54 | 显示全部楼层 |阅读模式
书目名称Design of Francis Turbine and OpenFOAM Methods
编辑Zhiwei Guo,Sailesh Chitrakar,Bhola Thapa
视频video
概述States clearly the process of designing a Francis Turbine and helps researcher to understand the structure.Introduces the computing cycle for single-phase and multi-phase flows with the relationship b
图书封面Titlebook: Design of Francis Turbine and OpenFOAM Methods;  Zhiwei Guo,Sailesh Chitrakar,Bhola Thapa Book 2024 The Editor(s) (if applicable) and The A
描述.This book provides a comprehensive guide for academics and industry professionals on designing and optimizing hydraulic turbines, with a particular focus on Francis turbines. The book covers the main dimensions of Francis turbines, including runners, guide vanes, and distributors. The authors have selected OpenFOAM, a free, open-source CFD software, for readers to perform simulations. While there is some existing literature on the topic, this book distinguishes itself by going into detail on the three phases of CFD methods. The authors also describe, step-by-step, how to create a new solver for hydraulic machines to account for sediment erosion. The content is presented in an easy-to-understand manner to help readers quickly grasp the material. The book is accessible to specialists in relevant fields, as well as undergraduate and graduate students, researchers, and other professionals interested in designing a suitable Francis turbine or simulating multiphase flow fields for rotating machines. .
出版日期Book 2024
关键词Energy Optimization; Turbine Design; Erosion Prediction; Gas-solid-water Flow; Solver Revised
版次1
doihttps://doi.org/10.1007/978-981-99-8381-0
isbn_softcover978-981-99-8383-4
isbn_ebook978-981-99-8381-0
copyrightThe Editor(s) (if applicable) and The Author(s), under exclusive license to Springer Nature Singapor
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Equations, Codes, and Case Study for Three Phases,a single kinematic particle cloud including the effect of the volume fraction of particles on the continuous phase, is adopted. This solver is developed by both volume of fluid (VOF) method and multiphase particle-in-cell (MPPIC) method, and it is based on the Eulerian–Lagrangian scheme. The solid–l
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Erosion Calculation in Francis Turbine,, but other versions can also be chosen. The solver adopted for steady calculation of erosion is a revised one by incorporating discrete phase model (DPM) into SRFSimpleFoam. The steady calculation is conducted in two stages: one is operated with clear water, and the other is operated with both part
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Design of the Distributors,t of absolute velocity at the outlet of the guide vane, ., by using free vortex theory. Inside the vaneless space between guide vanes and runner, the swirl component of the flow is driven only by the diameter of the turbine; hence, . relation can be followed.
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Erosion Calculation in Francis Turbine,DPM) into SRFSimpleFoam. The steady calculation is conducted in two stages: one is operated with clear water, and the other is operated with both particles and water. The main aim of this chapter is to present a way to calculate erosion and how to make a new solver step by step, where the main settings and codes are also shown.
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