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Comparison between Numerical and Experimental for UVP Measurement in Double Bent Pipe with Out-of-Plane Angle
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作者 Nobuyoshi Tsuzuki Treenuson Weerachon Hiroshige Kikura 《Journal of Flow Control, Measurement & Visualization》 2014年第4期154-164,共11页
Twin vortices flow behavior with out-of-plane angle effect in double bent pipe system is studied numerically and experimentally. Double bent pipe system generates very complicated flow behavior including twin vortices... Twin vortices flow behavior with out-of-plane angle effect in double bent pipe system is studied numerically and experimentally. Double bent pipe system generates very complicated flow behavior including twin vortices in the downstream of the double bent. Moreover, angle from the plane of the double bent forms more complicated flow behavior due to the flow twist by out-of-plane angle. In this study, numerical analysis is examined for this double bent system using three-dimensional CFD code, FLUENT, to reproduce those complicated flow behaviors with twin vortices. Numerical results are compared with experimental results obtained by Ultrasonic Velocity Profiler (UVP). Discrepancy between numerical and experimental result is discussed changing out-of- plane angle, α. Velocity profiles obtained by numerical results are converted into UVP profiles, and they are compared with the experimental results by UVP. Consequently, velocity behavior especially around the pipe wall obtained by numerical results is agreed with experimental results. 展开更多
关键词 double bent pipe Twin Vortices Vorticity COMPARISON EXPERIMENTAL NUMERICAL CFD
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工艺参数对水辅注塑弯管弯曲段偏心率影响的数值分析
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作者 叶海鹏 柳和生 +2 位作者 张伟 刘林海 江青松 《工程塑料应用》 CAS CSCD 北大核心 2023年第10期92-99,共8页
基于水辅注塑(WAIM)工艺,通过数值分析研究工艺参数对双弯头弯管弯曲段偏心率的影响。研究发现,熔体温度对弯管件弯曲段平均偏心率影响明显,随着熔体温度的升高,弯曲段平均偏心率逐渐减少,但熔体温度变化对弯管件第二弯曲段中心截面处... 基于水辅注塑(WAIM)工艺,通过数值分析研究工艺参数对双弯头弯管弯曲段偏心率的影响。研究发现,熔体温度对弯管件弯曲段平均偏心率影响明显,随着熔体温度的升高,弯曲段平均偏心率逐渐减少,但熔体温度变化对弯管件第二弯曲段中心截面处偏心率无明显影响;注水压力对弯管件弯曲段平均偏心率的影响显著,随着注水压力的增加,弯曲段平均偏心率逐渐减少,但第二弯曲段中心截面处偏心率仅当注水压力升至14 MPa时才出现较明显的下降;注水延迟时间对弯管件弯曲段平均偏心率的影响较大,随着注水延迟时间的增加,弯曲段平均偏心率明显增大,但注水延迟时间增加到2 s后,两弯曲段中心截面处偏心率趋于稳定。正交试验结果表明,注水压力对弯管件平均偏心率影响程度最大,其次为熔体温度,而注水延迟时间对平均偏心率影响程度最小。在熔体温度为250℃、注水压力为8 MPa、注水延迟时间为2 s时,弯管件平均偏心率最低,表明该工艺参数组合为最优组合。 展开更多
关键词 水辅注塑 双弯头弯管 偏心率 工艺参数 数值分析
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