首页> 外文期刊>Processes >Numerical Analysis of Two-Phase Flow in the Cavitation Process of a Waterjet Propulsion Pump System
【24h】

Numerical Analysis of Two-Phase Flow in the Cavitation Process of a Waterjet Propulsion Pump System

机译:水射流推进泵系统空化过程中两相流的数值分析

获取原文
           

摘要

The waterjet propulsion system has been widely used in the military and civil fields because of its advantages of in terms of high efficiency and energy savings. In order to study the three-dimensional cavitation flow in the waterjet propulsion pump, the cavitation process of the waterjet propulsion pump was simulated numerically using the Zwart–Gerber–Belamri cavitation model and the RNG (Renormalization Group) k-ε model. The simulation results of cavitation on the waterjet propulsion pump and pump system show that, in the initial stage of cavitation, vapors first collect on the leading edge of the suction surface of the blade near the rim of the impeller. As the total pressure at the impeller inlet decreases, the cavitation region expands toward the trailing edge and the vapor fraction volume gradually increases. In order to simulate the cavitation state of the waterjet propulsion pump under the actual working conditions, a numerical simulation of the entire waterjet propulsion pump system with inlet passage was carried out. After assembling the inlet passage, the flow pattern at the impeller inlet becomes uneven, leading to irregular changes in the cavitation region of the impeller. The potential danger regions of cavitation are the lip of inlet passage and the upper and lower connecting curved section of the inlet passage. The performance of waterjet propulsion pump system changes greatly when the net positive suction head available (NPSHa ) value of the pump reaches the critical value.
机译:水喷射推进系统由于其在高效和节能方面的优势而被广泛用于军事和民用领域。为了研究水射流推进泵中的三维空化流,使用Zwart-Gerber-Belamri空化模型和RNG(归一化组)k-ε模型对水射流推进泵的空化过程进行了数值模拟。在水射流推进泵和泵系统上的气蚀模拟结果表明,在气蚀的初始阶段,蒸汽首先聚集在叶轮边缘附近的叶片吸力表面的前缘。随着叶轮入口处的总压力降低,空化区域向后缘扩展,并且蒸气馏分体积逐渐增加。为了模拟喷水推进泵在实际工况下的气蚀状态,对整个带有入口通道的喷水推进泵系统进行了数值模拟。组装进口通道后,叶轮进口处的流型变得不均匀,从而导致叶轮的气蚀区域发生不规则变化。空化的潜在危险区域是入口通道的边缘以及入口通道的上下连接弯曲部分。当水泵的净净正压头(NPSHa)达到临界值时,水射流推进泵系统的性能将发生很大变化。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号