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气态场动态监测与ESPI连续拍摄存储系统 被引量:1
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作者 陈爱文 宋建明 是度芳 《华中理工大学学报》 CSCD 北大核心 1999年第7期106-108,共3页
为了实现气态流场的动态监测,开发设计了一套电子散斑干涉(ESPI)连续拍摄存储系统.这一系统由双光束激光散斑干涉光路、计算机摄像系统和相应软件组成.应用这一系统对酒精灯火焰作了动态监测和温度场处理,图像采集速度达10... 为了实现气态流场的动态监测,开发设计了一套电子散斑干涉(ESPI)连续拍摄存储系统.这一系统由双光束激光散斑干涉光路、计算机摄像系统和相应软件组成.应用这一系统对酒精灯火焰作了动态监测和温度场处理,图像采集速度达10帧/s. 展开更多
关键词 气态流场 动态监测 ESPI 连续拍摄 存储系统
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Scale-resolving simulations and investigations of the flow in a hydraulic retarder considering cavitation 被引量:3
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作者 Xue-song LI Qing-tao WU +2 位作者 Li-ying MIAO Yu-ying YAN Chun-bao LIU 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2020年第10期817-833,共17页
Cavitation has a significant influence on the accurate control of the liquid filling rate and braking performance of a hydraulic retarder;however,previous studies of the flow field in hydraulic retarders have provided... Cavitation has a significant influence on the accurate control of the liquid filling rate and braking performance of a hydraulic retarder;however,previous studies of the flow field in hydraulic retarders have provided insufficient information in terms of considering cavitation.Here,the volume of fluid(VOF)method and a scale-resolving simulation(SRS)were employed to numerically and more comprehensively calculate and analyze the flow field in a retarder considering the cavitation phenomenon.The numerical models included the improved delayed detached eddy simulation(IDDES)model,stress-blended eddy simulation(SBES)model,dynamic large eddy simulation(DLES)model,and shear stress transport(SST)model in the Reynolds-averaged Navier-Stokes(RANS)model.All the calculations were typically validated by the brake torque in the impeller rather than the internal flow.The unsteady flow field indicated that the SBES and DLES models could better capture unsteady flow phenomena,such as the chord vortex.The SBES and DLES models could also better capture bubbles than the SST and IDDES models.Since the braking torque error of the SBES model was the smallest,the transient variation of the bubble volume fraction over time on a typical flow surface was analyzed in detail with the SBES model.It was found that bubbles mainly appeared in the center area of the blade suction surface,which coincided with the experiments.The accumulation of bubbles resulted in a larger bubble volume fraction in the center of the blade over time.In addition,the temperature variations of the pressure blade caused by heat transfer were further analyzed.More bubbles precipitated in the center of the blade,leading to a lower temperature in this area. 展开更多
关键词 Scale-resolving simulation(SRS) Hydraulic retarder CAVITATION Unsteady flow
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