水力发电学报
            首 页   |   期刊介绍   |   编委会   |   投稿须知   |   下载中心   |   联系我们   |   学术规范   |   编辑部公告   |   English

水力发电学报 ›› 2021, Vol. 40 ›› Issue (3): 103-112.doi: 10.11660/slfdxb.20210310

• • 上一篇    下一篇

定常流和往复流下冲击式透平气动特性分析

  

  • 出版日期:2021-03-25 发布日期:2021-03-25

Aerodynamic characteristic analysis of impulse turbine in conditions of steady flow and reciprocating flow

  • Online:2021-03-25 Published:2021-03-25

摘要: 为充分利用振荡水柱式波能装置中的往复流能量,选取冲击式透平作为研究对象,以输入系数、扭矩系数和效率作为性能指标,对该透平在定常流和往复流下的性能进行三维模拟分析,通过文献对比验证了计算结果的准确性。结果表明:冲击式透平的几何参数中,外径间隙宜取1 mm左右,动叶片数量宜取30;在往复流下,冲击式透平的性能曲线因加、减速阶段性能不同出现迟滞环,其中输入系数曲线呈现顺时针滞回环,而效率曲线出现逆时针滞回环,这主要是由于加、减速阶段涡轮两端压降不同造成的,扭矩系数相比而言没有明显的迟滞现象。通过比较定常流和往复流结果发现,往复流流动频率越低,透平性能越接近定常流下的性能,从而证实了准静态分析方法的可行性。

关键词: 冲击式透平, 数值模拟, 定常流, 往复流, 迟滞现象, 准静态分析方法

Abstract: To make full use of the energy of reciprocating flow in the oscillating water column, this study numerically simulates and analyzes the performance of an impulse turbine in the conditions of steady air flows and reciprocating air flows, including analysis of the input coefficient, torque coefficient and efficiency. Accuracy of the numerical calculations is verified through comparison to previous studies in the literature. The results show that as important geometric parameters of the impulse turbine, the outer diameter clearance should be about 1 mm and the number of moving blades be 30. In reciprocating flow modes, the performance curve of an impulse turbine has a hysteresis loop due to its different performances in acceleration and deceleration stages. And because of different pressure drops in these two stages, the input coefficient curve has a clockwise hysteresis loop, while the efficiency curve has an anticlockwise hysteresis loop. In contrast, the torque coefficient shows no obvious hysteretic behavior. Comparison of the results of steady and reciprocating flows reveals the lower reciprocating flow frequency results in the turbine performance closer to that of the steady flow case.

Key words: impulse turbine, numerical simulation, steady flow, reciprocating flow, hysteresis, quasi-steady analysis

京ICP备13015787号-3
版权所有 © 2013《水力发电学报》编辑部
编辑部地址:中国北京清华大学水电工程系 邮政编码:100084 电话:010-62783813
本系统由北京玛格泰克科技发展有限公司设计开发  技术支持:support@magtech.com.cn