进口弯头对喷水推进泵旋转失速的影响

IF 6.2 3区 综合性期刊 Q1 Multidisciplinary Fundamental Research Pub Date : 2024-07-01 DOI:10.1016/j.fmre.2022.05.029
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引用次数: 0

摘要

为了研究弯头进水口对水喷射推进泵(WJPP)旋转失速特性的影响,对直管进水口和弯头进水口条件下 WJPP 的三维内部流场进行了数值模拟。通过比较两种入口条件下 WJPP 的水力性能,阐明了入口模式与泵内流动模式之间的内在关系。基于非稳态压力波动特性和小波分析,揭示了入口模式对旋转失速的影响,并分析了临界失速条件下的失速瞬态传播特性。在低流速条件下,入口通道几何形状的扰动效应消失,主要扰动由高速逆流引起,弯头入口下的流动模式优于直管入口下的流动模式。在直管入口下,WJPP 中的单滞流核暂时受到低频高振幅扰动,随后转变为具有高频圆周扰动的多滞流核模式。在弯头进水口下,旋转滞流始终保持高振幅低频扰动模式,这代表了单个滞流核在通道内沿圆周方向传播的瞬态特征。该研究结果对 WJPP 的结构设计优化具有参考价值。
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Effect of inlet elbow on rotation stall in waterjet propulsion pump

To study the influence of an elbow inlet on the rotating stall characteristics of a waterjet propulsion pump (WJPP), a three-dimensional internal flow field in a WJPP under a straight-pipe inlet and elbow inlet is numerically simulated. By comparing the hydraulic performance of WJPP under the two inlet conditions, the internal relationship between the inlet mode and the flow pattern in the pump is clarified. Based on unsteady pressure fluctuation characteristics and wavelet analysis, the influence of the inlet mode on the rotating stall is revealed, and the stall transient propagation characteristics under critical stall conditions are analyzed. The disturbance effects of the inlet channel geometry disappear under low flow rate conditions, the main disturbance is induced by the high-speed countercurrent, and the flow pattern under the elbow inlet is better than that under the straight-pipe inlet. Under the straight-pipe inlet, the single-stall nucleus in the WJPP temporarily experiences a low-frequency and high-amplitude disturbance, which subsequently transforms into a mode of multi-stall nuclei with high-frequency circumferential disturbance. Under the elbow inlet, the rotating stall always maintains a mode of high-amplitude and low-frequency disturbance, which represents the transient characteristics of a single stall core propagating in the circumferential direction inside the channel. The results of this study have a reference value for structural design optimization in a WJPP.

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来源期刊
Fundamental Research
Fundamental Research Multidisciplinary-Multidisciplinary
CiteScore
4.00
自引率
1.60%
发文量
294
审稿时长
79 days
期刊介绍:
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