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NUMERICAL STUDY ON FLOW CHARACTERISTICS IN HIGH MULTI-STAGE PRESSURE REDUCING VALVE

机译:高多级减压阀内流动特性的数值研究

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In this paper, a new high multi-stage pressure reducing valve (HMSPRV) is proposed. The main advantages include reducing noise and vibration, reducing energy consumption and dealing with complex conditions. As a new high pressure reducing valve, its flow characteristics need to be investigated. For that the valve opening has a great effect on steam flow, pressure reduction and energy consumption, thus different valve openings are taken as the research points to investigate the flow characteristics. The analysis is conducted from four aspects: pressure, velocity, temperature fields and energy consumption. The results show that valve opening has a great effect on flow characteristics. No matter for pressure, velocity or temperature field, the changing gradient mainly reflects at those throttling components for all valve openings. For energy consumption, in the study of turbulent dissipation rate, it can be found that the larger of valve opening, the larger of energy consumption. It can be concluded that the new high multi-stage pressure reducing valve works well under complex conditions. This study can provide technological support for achieving pressure regulation, and benefit the further research work on energy saving and multi-stage design of pressure reducing devices.
机译:本文提出了一种新的高多级压力减压阀(HMSPRV)。主要优点包括降低噪音和振动,降低能量消耗并处理复杂的条件。作为一种新的高压还原阀,需要研究其流动特性。为阀门开口对蒸汽流动,减压和能量消耗具有很大的效果,因此采用不同的阀门开口作为研究流程特性。分析由四个方面进行:压力,速度,温度场和能量消耗。结果表明,阀门开口对流动特性具有很大的效果。无论压力,速度或温度场,变化的梯度主要反映所有阀门的节流部件。为了能源消耗,在湍流耗散率的研究中,可以发现阀门开度越大,能耗越大。可以得出结论,新的高级多级压力降低阀在复杂条件下运用良好。本研究可以为实现压力调节提供技术支持,并有利于减压装置节能和多级设计的进一步研究工作。

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