首页> 外文会议>International topical meeting on advances in thermal hydraulics >FLOW BEHAVIOR OBSERVATION OF SINGLE-PHASE AIR JET SIMULATING A NOZZLE OF TERRY TURBINE USING PIV
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FLOW BEHAVIOR OBSERVATION OF SINGLE-PHASE AIR JET SIMULATING A NOZZLE OF TERRY TURBINE USING PIV

机译:用PIV模拟单相空气喷射的流动行为观察毛涡轮机喷嘴

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Flow behavior of a jet issuing from a steam inlet nozzle of a Terry turbine, which is employed in the RCIC system of BWRs, was observed using PIV techniques. The nozzle has a complicated shape and sufficient data do not exist to predict flow phenomena including exhaust jet flow behavior. Single-phase air jet flow was applied for this experiment. The jet flows 10 mm from the nozzle then impinges on a flat wall which simulates the wall segment between buckets on a turbine wheel. The nozzle outlet pressure was set as 30 psi and 40 psi. Flow behavior and collision behavior was different between the two cases, which implies nozzle outlet pressure of Terry turbine also affects the flow behavior in the turbine. The flow behavior is very important to know how Terry turbine works in BDBE condition or to estimate actual life time of the RCIC system itself. This is the first trial to clarify the behavior and further work will be done in the future.
机译:使用PIV技术观察到从毛汽油机的蒸汽入口喷嘴发出的射流的流动性能,其在BWR的RCIC系统中使用PIV技术观察。喷嘴具有复杂的形状,并且不存在足够的数据来预测包括排气射流行为的流动现象。施加单相空气喷射流动对该实验。射流从喷嘴流动10mm然后撞击扁平壁,该横壁在涡轮机轮上模拟桶之间的壁段。喷嘴出口压力设定为30psi和40psi。在两个案例之间的流动行为和碰撞行为是不同的,这意味着特里涡轮机的喷嘴出口压力也影响了涡轮机中的流动行为。流动行为非常重要,可以知道特蕾特涡轮机如何在BDBE条件下工作或估计陆路系统本身的实际寿命。这是第一次澄清行为和进一步工作的审判将来将在未来完成。

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