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Archimedes screw generator powerplant assessment and field measurement campaign

作   者:
Scott C. SimmonsChris ElliottMike FordAdrian ClaytonWilliam David Lubitz
作者机构:
GuelphGreat Ayton Canada University of GuelphSchool of Engineering Mann Power Hydro Ltd. / TLS Renewable Consulting Ltd.Hydropower Engineer Malton ON N1G 2W1Newton Abbot North Yorkshire TS9 6HG Devon TQ13 7FA United Kingdom North Yorkshire YO17 6AU
关键词:
Hydrodynamic screwArchimedes screw generatormicro-hydropowerRun-of-riverReverse Archimedes screwOff-grid electrificationDiversion hydropower
期刊名称:
Energy for sustainable development
i s s n:
0973-0826
年卷期:
2021 年 65 卷 Dec. 期
页   码:
144-161
页   码:
摘   要:
The Archimedes screw generator (ASG) is a cost-effective, eco-friendly micro-hydropower technology that can operate effectively in low head and moderate flow rate environments. The technology is well suited for distributed micro-hydropower and off-grid energy schemes, and its simple, robust design allows for local manufacturing and installation in developing regions. There are many successful ASG powerplants installed on- and off-grid, particularly in Europe. Archimedes screw generators are largely designed by experience. As such, there is a need for an accurate performance model in the literature to optimize plant design. There is a lack of experimental data in the literature, particularly for large-scale, real-world screwplants. This study sought to gather both qualitative and quantitative data and introduce it to the literature. The authors surveyed and measured various Archimedes screw powerplants in the United Kingdom. The measurements were then added to a larger dataset to validate a CFD simulation across a range of screw sizes: from a small 15 cm diameter laboratory screw to a large 3.5 m diameter powerplant. The authors plan to use the CFD simulation's accurate approximations to further the literature's ASG performance data for a wide range of screw sizes, shapes, and operational parameter.
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