Uncertainty quantification integrated to CFD modeling of synthetic jet actuators

被引:0
|
作者
Adya S. [1 ]
Han D. [1 ]
Hosder S. [1 ]
机构
[1] Missouri University of Science and Technology, Rolla
关键词
Actuators - Uncertainty analysis - Jets - Oscillating flow - Stochastic systems - Computational fluid dynamics;
D O I
10.1260/1756-8250.2.3.169
中图分类号
学科分类号
摘要
The Point-Collocation Non-intrusive Polynomial Chaos (NIPC) method has been applied to a stochastic synthetic jet actuator problem used as one of the test cases in the CFDVAL2004 workshop to demonstrate the integration of computationally efficient uncertainty quantification to the high-fidelity CFD modeling of synthetic jet actuators. The test case included the simulation of an actuator generating a synthetic jet issued into quiescent air. The Point-Collocation NIPC method is used to quantify the uncertainty in the long-time averaged u and v-velocities at several locations in the flow field due to the uniformly distributed uncertainty introduced in the amplitude and frequency of the oscillation of the piezo-electric membrane. Fifth-order NIPC expansions were used to obtain the uncertainty information, which showed that the variation in the v-velocity is high in the region directly above the jet slot and the variation in the u-velocity is maximum in the region immediately adjacent to the slot. Even with a ±5% variation in the amplitude and frequency, the long-time averaged u and v-velocity profiles could not match the experimental measurements at y=0.1 mm above the slot indicating that the discrepancy may be due to other uncertainty sources in CFD and/or due to the measurement errors.
引用
收藏
页码:169 / 181
页数:12
相关论文
共 50 条
  • [41] Bayesian Uncertainty Quantification with Synthetic Data
    Phan, Buu
    Khan, Samin
    Salay, Rick
    Czarnecki, Krzysztof
    COMPUTER SAFETY, RELIABILITY, AND SECURITY, SAFECOMP 2019, 2019, 11699 : 378 - 390
  • [42] A static compressible flow model of synthetic jet actuators
    Tang, H.
    Zhong, S.
    AERONAUTICAL JOURNAL, 2007, 111 (1121): : 421 - 431
  • [43] Experimental Study on Synthetic Jet Actuators for Separation Delay
    Kwon, O-Hyun
    Byun, Seon-Woo
    Roh, Jin-Ho
    JOURNAL OF THE KOREAN SOCIETY FOR AERONAUTICAL AND SPACE SCIENCES, 2018, 46 (01) : 10 - 17
  • [44] CHIP-SCALE ELECTRODYNAMIC SYNTHETIC JET ACTUATORS
    Sawant, Shashank G.
    Deem, Eric A.
    Agentis, Dominic J.
    Cattafesta, Louis N.
    Arnold, David P.
    2015 28TH IEEE INTERNATIONAL CONFERENCE ON MICRO ELECTRO MECHANICAL SYSTEMS (MEMS 2015), 2015, : 936 - 939
  • [45] Aerodynamic flow control using synthetic jet actuators
    Amitay, Michael
    Glezer, Ari
    CONTROL OF FLUID FLOW, 2006, 330 : 45 - 73
  • [46] Switching of a Bistable Diverter Valve with Synthetic Jet Actuators
    Martin, Nicholas D.
    Bottomley, Michael
    Packwood, Alan
    AIAA JOURNAL, 2014, 52 (07) : 1563 - 1567
  • [47] A static compressible flow model of synthetic jet actuators
    Tang, H.
    Zhong, S.
    Aeronautical Journal, 2007, 111 (1121): : 421 - 431
  • [48] Characteristics of Repetitive Discharges of Plasma Synthetic Jet Actuators
    Qiu, Jintao
    Zhang, Cheng
    Han, Lei
    Ren, Chengyan
    Shao, Tao
    2016 IEEE INTERNATIONAL POWER MODULATOR AND HIGH VOLTAGE CONFERENCE (IPMHVC), 2016, : 576 - 579
  • [49] Advances in Flow Control by Means of Synthetic Jet Actuators
    Chiatto, Matteo
    de Luca, Luigi
    ACTUATORS, 2023, 12 (01)
  • [50] Aerodynamic flow control using synthetic jet actuators
    Amitay, Michael
    Glezer, Ari
    Lecture Notes in Control and Information Sciences, 2006, 330 : 45 - 73