4.7 Article

Effects of impeller diameter and rotational speed on performance of pump running in turbine mode

期刊

ENERGY CONVERSION AND MANAGEMENT
卷 89, 期 -, 页码 808-824

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.enconman.2014.10.036

关键词

Impeller diameter; Part load; Pump running in turbine mode; Rotational speed

资金

  1. Gujarat Council on Science and technology (GUJCOST), Gandhinagar, Gujarat, India [GUJCOST/MRP/201574/10-11/3718]

向作者/读者索取更多资源

The major limitations of mini/micro hydropower schemes is the higher cost of small capacity hydro turbines. Also, it is very cumbersome, time consuming and expensive to develop the site specific turbines corresponding to local site conditions in mini/micro hydro range. In such plants, small centrifugal pumps can be used in turbine mode by running in the reverse direction. The efficiency of pump as turbines (PATS) is usually lower than the conventional hydro turbines; however, there may be substantial decrease in the capital cost of the plant. Hydropower plants usually runs at part load for several months in a year due to insufficient water availability for the power generation. The application range of PAT can be widened if its part load and/ or maximum efficiency can be improved. In the present study, experimental investigations are carried out on centrifugal pump running in turbine mode to optimize its geometric and operational parameters e.g. impeller diameter and rotational speed. The experiments were performed in the wide range of rotational speeds varying from 900 to 1500 rpm with original (empty set 250 mm), 10% trimmed (empty set 225 mm) and 20% trimmed (empty set 200 mm) impellers. Impeller trimming led to improvement in efficiency at part load operating conditions. The performance of PAT was found better at the lower speeds than that at the rated speed. The effects of blade rounding were studied in all the cases and it led to 3-4% rise in efficiency at rated speed with the original impeller. The empirical correlation is also developed for prediction of efficiency in terms of impeller diameter and rotational speed in non-dimensional form. (C) 2014 Elsevier Ltd. All rights reserved.

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