首页> 外文会议>American Society of Mechanical Engineers Power Conference >EXPERIMENTAL STUDY TO TEST AN AXIAL FLOW PUMP AS A TURBINE AND DEVELOPMENT OF PERFORMANCE CHARACTERISTICS FOR MICRO-HYDRO POWER PLANT
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EXPERIMENTAL STUDY TO TEST AN AXIAL FLOW PUMP AS A TURBINE AND DEVELOPMENT OF PERFORMANCE CHARACTERISTICS FOR MICRO-HYDRO POWER PLANT

机译:试验研究,以轴流泵作为微水力发电厂性能特征的涡轮机和发展

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Standard centrifugal pumps are manufactured in a large number of sizes in order to cover a wide range of heads and flow rates. Conventional turbines, however, are not mass produced since they are custom designed and manufactured. Therefore, pumps are available in the market at comparatively lower cost and shorter delivery periods. In this paper an experimental study is presented in which the use of pumps as turbine (PAT) is explored for micro-hydro power generation. The objective of the study is to explore cheap alternate sources of energy production in remote locations of Pakistan. Extensive research has been carried out by Williams in the field of using pumps as turbines. Only centrifugal pumps were studied to explore their use as turbines in that work. Since then quite a bit of advancement in this sector of technology has taken place. However, to the best of our knowledge, axial flow pumps have never been tested as turbines. The site conditions for micro-hydro power station usually find axial flow pumps to be more appropriate compared cross flow and pelton turbines. A commercially available axial flow pump was selected and test rig was designed and constructed in order to determine the performance characteristics of using the pump as a turbine. The test bed has a provision of simulating various head and flow rate conditions and dynamometer to measure the power output in order to determine the performance of the turbine. The simulated head and flow rates were varied for various typical conditions. Some minor modifications in the basic pump unit were made to accomplish these tests. The experimental study resulted in generating data for which head was varied from 4 to 12 m and flow rate from 700 to 900 m~3/hr. For these conditions power developed ranged from 5-20 kW with a maximum efficiency of 70% corresponding to a head of 6.8 m and a flow rate of 800 m~3/hr. Pump affinity laws and the data collected in this experimental study were then used to select a Kaplan turbine. This information was then used to choose a commercially available pump for typical low head and high flow rate conditions in Pakistan to generate about 100 kW of electric power, when running in turbine mode. This paper discusses the design and construction of the test rig to carry out experiments for testing pumps as turbines. Details of experimental procedure and results to determine performance characteristics are also presented. Finally selection procedure of a pump for a specific head and flow condition are also discussed in this paper.
机译:标准离心泵以大量尺寸制造,以覆盖各种头部和流速。然而,传统的涡轮机不是批量生产,因为它们是定制和制造的。因此,在市场上提供泵的价格较低,成本较短,交货期更短。在本文中,提出了一种实验研究,其中探讨了用于微水力发电的泵作为涡轮机(PAT)。该研究的目的是探讨巴基斯坦偏远地区的便宜备用能源生产来源。广泛的研究是由威廉姆斯在使用泵作为涡轮机领域进行的。仅研究了离心泵,探索其用作该工作中的涡轮机。从那时起,这项技术部门的进步已经发生。然而,据我们所知,轴向流量泵从未被测试为涡轮机。微水力电站的现场条件通常会找到轴流泵,更合适地比较交叉流量和佩尔顿涡轮机。选择和构造市售的轴流泵,并设计并构造了试验台,以确定使用泵作为涡轮机的性能特性。试验床具有仿真各种头部和流量条件和测功机,以测量功率输出,以便确定涡轮机的性能。对于各种典型条件,模拟的头部和流速变化。制作基本泵单元中的一些微小修改以实现这些测试。实验研究导致发电数据从4至12μm变化,流速从700到900 m〜3 / hr。对于这些条件,发电量为5-20kW,最大效率为70%,对应6.8米的头部,流速为800米〜3 / hr。然后,使用泵亲和力法律和该实验研究中收集的数据选择Kaplan涡轮机。然后,在涡轮模式下运行时,该信息用于为巴基斯坦的典型低头和高流量条件选择市售泵,以产生大约100kW的电力。本文讨论了试验台的设计和构造,用于测试泵作为涡轮机的实验。还提出了实验程序的细节和确定性能特征的结果。最后,本文还讨论了用于特定头部和流动条件的泵的选择步骤。

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