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Low Head Hydropower for Local Energy Solutions: IHE Delft PhD Thesis Series

Autor Pradeep Narrain
en Limba Engleză Paperback – 14 noi 2017
The role of small hydropower is becoming increasingly important on a global level. Increasing energy demand and environmental awareness has further triggered research and development into sustainable low-cost technologies. In developing countries, particularly in rural areas, the possibility of local power generation could considerably improve living conditions. With this in mind, the development of a next generation low-head hydropower machines was subject of investigation in the EU-project HYLOW. Being part of the research lines of that project, this thesis presents a numerical modelling approach to improve the design of machines like water wheels for increased hydraulic efficiency. Nowadays, Computational Fluid Dynamics (CFD) enables numerical models to be quite accurate and incorporate physical complexities like free surfaces and rotating machines. The results of the CFD simulations carried out in this research show that a change in blade geometry can result in higher torque levels, thereby increasing performance. Numerical simulations also enabled to determine the optimal wheel-width to channel-width ratio and further improve performance by modifying the channel bed conditions upstream and downstream of the water wheel. With a power rating in the low kilowatt range, low-head hydropower machines like optimised water wheels seem to have a clear potential for small-scale energy generation, thereby contributing to achieving the Sustainable Development Goals by providing local energy solutions.
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Specificații

ISBN-13: 9780815396123
ISBN-10: 0815396120
Pagini: 244
Dimensiuni: 174 x 246 x 20 mm
Greutate: 0.48 kg
Ediția:1
Editura: CRC Press
Colecția CRC Press
Seria IHE Delft PhD Thesis Series


Public țintă

Postgraduate

Cuprins

1 Introduction
2 The water-Energy nexus
3 Hydropower take-off mechanisms
4 Computational Fluid Dynamics
5 Application of 2D CFD modelling
6 Application of 3D CFD modelling
7 Discussion
8 Conclusions and recommendations

Descriere

Small hydropower is increasingly important on a global level, and the possibility of local power generation could considerably improve living conditions in rural areas in developing countries. This thesis presents a numerical modelling approach to improve the design of low-cost machines like water wheels for increased hydraulic efficiency. Using a Computational Fluid Dynamics (CFD) approach, it explores effects of blade geometry, optimal wheel-width to channel-width ratio and channel bed conditions upstream and downstream to improve performance. With a power rating in the low kilowatt range, low-head hydropower machines seem to have a clear potential for small-scale energy generation.