声呐导流罩边界层壁面脉动压力研究进展
详细信息    查看全文 | 推荐本文 |
  • 英文篇名:Research progress in sonar dome turbulent boundary layer wall fluctuating pressure
  • 作者:徐嘉启 ; 梅志远
  • 英文作者:XU Jiaqi;MEI Zhiyuan;College of Naval Architecture and Ocean Engineering,Naval University of Engineering;
  • 关键词:声呐导流罩 ; 壁面脉动压力 ; 尺度效应问题 ; 脉动压力功率谱尺度律 ; 人工转捩
  • 英文关键词:sonar dome;;wall fluctuating pressure;;scale effect problem;;scaling law of wall fluctuating pressure power spectrum;;artificial transition
  • 中文刊名:JCZG
  • 英文刊名:Chinese Journal of Ship Research
  • 机构:海军工程大学舰船与海洋学院;
  • 出版日期:2018-07-17 11:12
  • 出版单位:中国舰船研究
  • 年:2018
  • 期:v.13;No.75
  • 基金:国家自然科学基金资助项目(51479205)
  • 语种:中文;
  • 页:JCZG201804008
  • 页数:13
  • CN:04
  • ISSN:42-1755/TJ
  • 分类号:59-71
摘要
舰艇中、高速航行时,声呐导流罩外边界层的壁面受脉动压力激励,引起罩壳结构振动,并向罩壳内辐射噪声。该噪声是声呐平台区自噪声的主要成分。准确描述罩壳外边界层壁面脉动压力特征,是开展声呐导流罩内场自噪声影响评价以及导流罩壳减振降噪设计的基础和依据。首先,介绍壁面脉动压力功率谱的壁压试验法、半经验模型法、数值模拟法的相关进展;针对边界层转捩区的脉动压力功率谱特征,引出缩尺模型试验研究的尺度效应问题。其次,针对壁面脉动压力的尺度效应问题,概述脉动压力功率谱尺度律及其由模型试验到实船应用的发展,并介绍与缩尺模型试验载荷相似的重要手段——人工转捩方法的研究概况。最后,对人工转捩方法在声呐导流罩边界层壁面脉动压力载荷相似性研究中的应用进行展望。
        A sonar dome structure mounted on the bulb of a high-speed ship vibrates under TurbulentBoundary Layer(TBL) wall pressure fluctuation and radiates noise inward. As this is the main componentof sonar self-noise, the accurate description of TBL wall pressure fluctuation is the basis for sonar domeself-noise impact assessment, sonar dome vibration attenuation and noise reduction design. First, theprogress of the wall pressure experiment method, semi-experiment models and numerical simulationmethods for the fluctuating wall pressure power spectrum are introduced; concerning the characteristics ofthe fluctuating wall pressure power spectrum in transitional regions, the scale problem of the scale modeltest is introduced.Second, aiming at the scale problem of wall pressure fluctuation, the scaling law of wallpressure fluctuation and its development from model scale test to full scale application is summarized, andthe general conditions for research into the artificial transition method are introduced(the crucial methodfor load similarity in scale model tests).Finally, the outlook for the application of the artificial transitionmethod in similar sonar dome TBL fluctuating wall pressure load research is obtained.
引文
[1]CAIAZZO A A.Sonar dome:US7638085B2[P].2009-12-29.
    [2]费国强,沈文苗.国外大舰导流罩概述[J].声学与电子工程,2012(2):1-5.FEI G Q,SHEN W M.Overview on the sonar dome of foreign large naval ships[J].Acoustics and Electronics Engineering,2012(2):1-5(in Chinese).
    [3]CONWAY D,KINGSTON J F W.The development of a high performance bow sonar dome[J].SAMPE Journal,2006,42(4):20-22.
    [4]俞孟萨,叶剑平,吴有生,等.船舶声呐部位自噪声的预报方法及其控制技术[J].船舶力学,2002,6(5):80-94.YU M S,YE J P,WU Y S,et al.Prediction and control method of self-noise in ship's sonar domes[J].Journal of Ship Mechanics,2002,6(5):80-94(in Chinese).
    [5]MAGIONESI F,CIAPPI E.Characterization of the response of a curved elastic shell to turbulent boundary layer[C]//Proceedings of the ASME 2010 3rd Joint US-European Fluids Engineering Summer Meeting Collocated with 8th International Conference on Nanochannels,Microchannels,and Minichannels,7th International Symposium on Fluid-Structure Interactions,Flow-Sound Interactions,and Flow-Induced Vibration&Noise.Montreal,Canada:ASME,2010.
    [6]俞孟萨,刘延利,廖彬彬.腔室内部声场与结构振动耦合特性及噪声控制研究综述[J].船舶力学,2012,16(1/2):191-201.YU M S,LIU Y L,LIAO B B.Summarization on the research of coupling character between cavity acoustics and structure vibration together with noise control[J].Journal of Ship Mechanics,2012,16(1/2):191-201(in Chinese).
    [7]CIAPPI E,MAGIONESI F.Characteristics of the turbulent boundary layer pressure spectra for high-speed vessels[J].Journal of Fluids and Structures,2005,21(3):321-333.
    [8]GOODY M,FARABEE T,LEE Y T.Unsteady pressures on the surface of a ship hull[C]//Proceedings of ASME 2007 International Mechanical Engineering Congress and Exposition.Washington:ASME,2007.
    [9]CIAPPI E,MAGIONESI F,DE ROSA S,et al.Hydrodynamic and hydroelastic analyses of a plate excited by the turbulent boundary layer[J].Journal of Fluids and Structures,2009,25(2):321-342.
    [10]MAGIONESI F.Flow induced structural noise on a sonar dome of a ship[C]//Proceedings of Inter-noise and Noise-con Congress and Conference.Hamburg:Institute of Noise Control Engineering,2016.
    [11]MAGIONESI F,DI MASCIO A.Investigation and modelling of the turbulent wall pressure fluctuations on the bulbous bow of a ship[J].Journal of Fluids and Structures,2016,67:219-240.
    [12]盛振邦,刘应中.船舶原理(下)[M].上海:上海交通大学出版社,2004:34.
    [13]FARABEE T M,CASARELLA M J.Spectral features of wall pressure fluctuations beneath turbulent boundary layers[J].Physics of Fluids A:Fluid Dynamics,1991,3(10):2410-2420.
    [14]CHEVALIER F,AUDOLY C.Turbulent flow-induced self noise and radiated noise in naval systemsan industry point of view[M]//CIAPPI E,DE ROSAS,FRANCO F,et al.Flinovia-Flow Induced Noise and Vibration Issues and Aspects.Cham:Springer,2015:211-225.
    [15]MAXIT L,AUDOLY C.Hydrodynamic noise prediction inside a sonar dome:estimation of injected power from the wavenumber-frequency spectrum of the turbulent wall pressure[C]//Proceedings of NOVEM2005.St Raphael,France:NOVEM,2005.
    [16]HAMBRIC S A,HWANG Y F,BONNESS W K.Vibrations of plates with clamped and free edges excited by low-speed turbulent boundary layer flow[J].Journal of Fluids and Structures,2004,19(1):93-110.
    [17]MAXIT L,BERTON M,AUDOLY C,et al.Discussion about different methods for introducing the turbulent boundary layer excitation in vibroacoustic models[M]//CIAPPI E,DE ROSA S,FRANCO F,et al.Flinovia-Flow Induced Noise and Vibration Issues and Aspects.Cham:Springer,2015:249-277.
    [18]HABAULT D.Fluid-structure interactions in acoustics[M].New York:Springer,1999:51-85.
    [19]ABRAHAM B M.Direct measurements of turbulent boundary layer wall pressure wavenumber-frequency spectra on smooth and riblet-coated plates[D].Storrs:University of Connecticut,2000.
    [20]ARGUILLAT B,RICOT D,BAILLY C,et al.Measured wavenumber:frequency spectrum associated with acoustic and aerodynamic wall pressure fluctuations[J].The Journal of the Acoustical Society of America,2010,128(4):1647-1655.
    [21]SALZEé,BAILLY C,MARSDEN O,et al.An experimental characterisation of wall pressure wavevector-frequency spectra in the presence of pressure gradients[C]//Proceedings of the 20th AIAA/CEASAeroacoustics Conference.Atlanta,Georgia:AIAA,2014.
    [22]SALZEé,BAILLY C,MARSDEN O,et al.An experimental investigation of wall pressure fluctuations beneath pressure gradients[C]//Proceedings of the21st AIAA/CEAS Aeroacoustics Conference.Dallas,Texas:AIAA,2015.
    [23]BENDAT J S,PIERSOL A G.Random data:analysis and measurement procedures[M].New York:Wiley,1991.
    [24]庞业珍,俞孟萨.非均衡湍流边界层脉动压力测试研究[J].船舶力学,2016,20(5):515-522.PANG Y Z,YU M S.Research on fluctuation pressure test for nonequilibrium turbulence boundary-layer[J].Journal of Ship Mechanics,2016,20(5):515-522(in Chinese).
    [25]RAO V B.Selection of a suitable wall pressure spectrum model for estimating flow-induced noise in sonar applications[J].Shock and Vibration,1995,2(5):403-412.
    [26]CORCOS G M.The structure of the turbulent pressure field in boundary-layer flows[J].Journal of Fluid Mechanics,1964,18(3):353-378.
    [27]CORCOS G M.The resolution of turbulent pressures at the wall of a boundary layer[J].Journal of Sound and Vibration,1967,6(1):59-70.
    [28]CHASE D M.Modeling the wavevector-frequency spectrum of turbulent boundary layer wall pressure[J].Journal of Sound and Vibration,1980,70(1):29-67.
    [29]CHASE D M.The character of the turbulent wall pressure spectrum at subconvective wavenumbers and a suggested comprehensive model[J].Journal of Sound and Vibration,1987,112(1):125-147.
    [30]GRAHAM W R.A comparison of models for the wavenumber-frequency spectrum of turbulent boundary layer pressures[J].Journal of Sound and Vibration,1997,206(4):541-565.
    [31]EFIMTSOV B M.Characteristics of the field of turbulent wall pressure fluctuations at large Reynolds numbers[J].Soviet Physics Acoustics,1982,28(4):289-292.
    [32]SMOL'YAKOV A V,TKACHENKO V M.Model of a field of pseudo sonic turbulent wall pressures and experimental data[J].Soviet Physics Acoustics,1991,37(6):627-631.
    [33]WILLIAMS F,JOHN E.Boundary-layer pressures and the Corcos model:a development to incorporate low-wavenumber constraints[J].Journal of Fluid Mechanics,1982,125:9-25.
    [34]HWANG Y F.A discrete model of turbulence loading function for computation of flow-induced vibration and noise[C]//Proceedings of 1998 IMECE,Noise Control and Acoustics Division.Anaheim:IMECE,1998:389-395.
    [35]GOODY M.Empirical spectral model of surface pressure fluctuations[J].AIAA Journal,2004,42(9):1788-1794.
    [36]HOWE M S.Acoustics of fluid-structure interactions[M].Cambridge:Cambridge University Press,1998:208.
    [37]CIAPPI E,MAGIONESI F.Full scale analysis of the response of an elastic ship panel excited by turbulent boundary layers[J].Noise Control Engineering Journal,2009,57(3):179-192.
    [38]JUVéD,BERTON M,SALZE E.Spectral properties of wall-pressure fluctuations and their estimation from computational fluid dynamics[M]//CIAPPI E,DE ROSA S,FRANCO F,et al.Flinovia-Flow Induced Noise and Vibration Issues and Aspects.Cham:Springer,2015:27-46.
    [39]DE ROSA S,FRANCO F.Exact and numerical responses of a plate under a turbulent boundary layer excitation[J].Journal of Fluids and Structures,2008,24(2):212-230.
    [40]DE ROSA S,FRANCO F,CAPASSO D,et al.The effect of concentrated masses on the response of a plate under a turbulent boundary layer excitation[J].Mechanical Systems and Signal Processing,2011,25(4):1192-1203.
    [41]ELISHAKOFF I.Probabilistic methods in the theory of structures[M].New York:John Wiley&Sons,1983.
    [42]陈美霞,魏建辉,乔志,等.湍流激励下结构振动特性的半解析半数值算法研究[J].振动工程学报,2011,24(6):689-695.CHEN M X,WEI J H,QIAO Z,et al.Semi-analytical and semi-numerical method for calculating the vibration characteristics of structure excited by turbulent boundary layer[J].Journal of Vibration Engineering,2011,24(6):689-695(in Chinese).
    [43]罗琦.湍流激励下平板及单双层圆柱壳的振动声辐射特性研究[D].武汉:华中科技大学,2014.LUO Q.The research on vibration and sound radiation characteristics of plate and single double cylindrical shells excited by TBL[D].Wuhan:Huazhong University of Science and Technology,2014(in Chinese).
    [44]CAIAZZO A,D'AMICO R,DESMET W.A generalized Corcos model for modelling turbulent boundary layer wall pressure fluctuations[J].Journal of Sound and Vibration,2016,372:192-210.
    [45]刘孝斌,吕世金,俞孟萨.湍流边界层激励下腔体内水动力自噪声预报与测量[J].声学学报,2015,40(6):845-849.LIU X B,LV S J,YU M S.Prediction and test of cavity's hydrodynamic selfnoise induced by turbulent boundary layer[J].Acta Acustica,2015,40(6):845-849(in Chinese).
    [46]LEE Y T,BLAKE W K,FARABEE T M.Modeling of wall pressure fluctuations based on time mean flow field[J].Journal of Fluids Engineering,2005,127(2):233-240.
    [47]LEE Y T,MILLER R,GORSKI J,et al.Predictions of hull pressure fluctuations for a ship model[C]//Proceedings of International Conference on Marine Research and Transportation.Island of Ischia:IC-MRT,2005.
    [48]PELTIER L J,HAMBRIC S A.Estimating turbulent-boundary-layer wall-pressure spectra from CFDRANS solutions[J].Journal of Fluids and Structures,2007,23(6):920-937.
    [49]DIAZDANIEL C,LAIZET S,VASSILICOS J C.Wall shear stress fluctuations:mixed scaling and their effects on velocity fluctuations in a turbulent boundary layer[J].Physics of Fluids,2017,29(5):055122.
    [50]KITSIOS V,ATKINSON C,SILLEROJ A,et al.Comparison of the direct numerical simulation of zero and low adverse pressure gradient turbulent boundary layers[M]//ZHOU Y,LUCEY A D,LIU Y,et al.Fluid-Structure-Sound Interactions and Control.Berlin:Springer,2016:163-168.
    [51]张楠,沈泓萃,姚惠之,等.水下航行体壁面脉动压力的大涡模拟研究[J].水动力学研究与进展,2010,25(1):106-112.ZHANG N,SHEN H C,YAO H Z,et al.Large eddy simulation of wall pressure fluctuations of underwater vehicle[J].Journal of Hydrodynamics,2010,25(1):106-112(in Chinese).
    [52]张楠,张胜利,沈泓萃,等.翼/板结合部涡旋流动结构与壁面脉动压力的大涡模拟研究[J].船舶力学,2013,17(7):729-740.ZHANG N,ZHANG S L,SHEN H C,et al.Large eddy simulation of vortical flow structure and wall pressure fluctuations around wing-plate junction[J].Journal of Ship Mechanics,2013,17(7):729-740(in Chinese).
    [53]张晓龙,张楠,吴宝山.平板壁面湍流脉动压力及其波数--频率谱的大涡模拟计算分析研究[J].船舶力学,2014,18(10):1151-1164.ZHANG X L,ZHANG N,WU B S.Computation of turbulent wall pressure fluctuation and its wavenumber-frequency spectrum using large eddy simulation[J].Journal of Ship Mechanics,2014,18(10):1151-1164(in Chinese).
    [54]张晓龙,张楠,吴宝山.壁面涡旋结构与湍流脉动压力的大涡模拟研究[J].船舶力学,2014,18(8):871-881.ZHANG X L,ZHANG N,WU B S.Computation of tunnel wall pressure fluctuations using large eddy simulation[J].Journal of Ship Mechanics,2014,18(8):871-881(in Chinese).
    [55]MANOHA E,TROFF B,SAGAUT P.Trailing-edge noise prediction using large-eddy simulation and acoustic analogy[J].AIAA Journal,2000,38(4):575-583.
    [56]WANG M,MOIN P.Computation of trailing-edge flow and noise using large-eddy simulation[J].AIAA Journal,2000,38(12):2201-2209.
    [57]WANG M,MOREAU S,IACCARINO G,et al.LESprediction of wall-pressure fluctuations and noise of a low-speed airfoil[J].International Journal of Aeroacoustics,2009,8(3):177-197.
    [58]张晓龙,张楠,吴宝山.翼型体湍流脉动压力及其波数-频率谱的大涡模拟计算分析研究[C]//第二十七届全国水动力学研讨会文集(上册).南京:《水动力学研究与进展》编委会,中国力学学会,中国造船工程学会,河海大学,2015.
    [59]LAUCHLE G C.Hydroacoustics of transitional boundary-layer flow[J].Applied Mechanics Reviews,1991,44(12):517-531.
    [60]ARAKERI V H.A note on the transition observations on an axisymmetric body and some related fluctuating wall pressure measurements[J].Journal of Fluids Engineering,1975,97(1):82-86.
    [61]俞孟萨,林立.船舶水下噪声研究三十年的基本进展及若干前沿基础问题[J].船舶力学,2017,21(2):244-248.YU M S,LIN L.Some progresses of underwater noise of ships in the recent thirty years and several new basic problems[J].Journal of Ship Mechanics,2017,21(2):244-248(in Chinese).
    [62]PARK S,LAUCHLE G C.Wall pressure fluctuation spectra due to boundary-layer transition[J].Journal of Sound and Vibration,2009,319(3/4/5):1067-1082.
    [63]HONG C,SHIN K K,JEON J J,et al.Transitional wall pressure fluctuations on axisymmetric bodies[J].The Journal of the Acoustical Society of America,2008,124(5):2767-2773.
    [64]刘进,庞业珍,俞孟萨.柔性湍流脉动压力测试传感器阵列设计[C]//2016年度声学技术学术会议论文集.武汉:湖北省声学学会,2016.
    [65]MAGIONESI F.An experimental study on transitional boundary layer excitation on a bulbous bow of a fast ship[M]//ZHOU Y.Fluid-Structure-Sound Interactions and Control.Berlin:Springer,2016:369-375.
    [66]HWANG Y F,BONNESS W K,HAMBRIC S A.Comparison of semi-empirical models for turbulent boundary layer wall pressure spectra[J].Journal of Sound and Vibration,2009,319(1/2):199-217.
    [67]KEITH W L,HURDIS D A,ABRAHAM B M.Acomparison of turbulent boundary layer wall-pressure spectra[J].Journal of Fluids Engineering,1992,114(3):338-347.
    [68]GOODY M.An empirical spectral model of surface-pressure fluctuations that includes Reynolds number effects[C]//Proceedings of the 8th AIAA/CEAS Aeroacoustics Conference and Exhibit.Breckenridge:AIAA,2002.
    [69]BLAKE W K.Mechanics of flow-induced sound and vibration[M].Orlando:Academic Press,1986.
    [70]BULL M K.Wall-pressure fluctuations associated with subsonic turbulent boundary layer flow[J].Journal of Fluid Mechanics,1967,28(4):719-754.
    [71]BLAKE W K.Turbulent boundary-layer wall-pressure fluctuations on smooth and rough walls[J].Journal of Fluid Mechanics,1970,44(4):637-660.
    [72]MAGIONESI F,CIAPPI E,LA GALA F,et al.Measurements and modelling of turbulent boundary layer excitation and induced structural response on a ship:part I,full scale wall pressure fluctuations[C]//Proceedings of the 41st International Congress and Exposition on Noise Control Engineering.New York:Institute of Noise Control Engineering,2012.
    [73]陈懋章.粘性流体动力学基础[M].北京:高等教育出版社,2002:223.
    [74]田永强,张正科,屈科,等.后掠机翼人工转捩最佳粗糙带高度数值预测[J].航空学报,2016,37(2):461-474.TIAN Y Q,ZHANG Z K,QU K,et al.Numerical prediction of optimal height of roughness strip for artificial transition on swept wings[J].Acta Aeronautica ET Astronautica Sinica,2016,37(2):461-474(in Chinese).
    [75]赵子杰,高超,张正科.新型人工转捩技术及风洞试验验证[J].航空学报,2015,36(6):1830-1838.ZHAO Z J,GAO C,ZHANG Z K.An innovative artificial transition technique and its validation through wind tunnel tests[J].Acta Aeronautica ET Astronautica Sinica,2015,36(6):1830-1838(in Chinese)
    [76]黄勇,钱丰学,于昆龙,等.基于柱状粗糙元的边界层人工转捩试验研究[J].实验流体力学,2006,20(3):59-62.HUANG Y,QIAN F X,YU K L,et al.Experimental investigation on boundary-layer artificial transition based on transition trip disk[J].Journal of Experiments in Fluid Mechanics,2006,20(3):59-62(in Chinese).
    [77]ARIE M,KIYA M,SUZUKI Y,et al.Artificial generation of thick turbulent boundary layers[J].Bulletin of JSME,1981,24(192):956-964.
    [78]YANG X,SADIQUE J,MITTAL R,et al.Exponential roughness layer and analytical model for turbulent boundary layer flow over rectangular-prism roughness elements[J].Journal of Fluid Mechanics,2016,789:127-165.
    [79]朱德华,袁湘江,沈清,等.高超声速粗糙元诱导转捩的数值模拟及机理分析[J].力学学报,2015,47(3):381-388.ZHU D H,YUAN X J,SHEN Q,et al.Numerical simulation and mechanism analysis of hypersonic roughness induced transition[J].Chinese Journal of Theoretical and Applied Mechanics,2015,47(3):381-388(in Chinese).
    [80]MARINO A,VITIELLO P,PAGLIAROLI T,et al.Innovative vibration and acoustic methodologies for the design of enhanced composite panel for aircraft[C]//Proceedings of the 31st AIAA Applied Aerodynamics Conference.San Diego:AIAA,2013.
    [81]MOHAMED M S,LARUE J C.The decay power law in grid-generated turbulence[J].Journal of Fluid Mechanics,1990,219:195-214.
    [82]DE ROSA S,FRANCO F,CIAPPI E,et al.Wind tunnel measurements of pressure fluctuations and structural response induced by the turbulent boundary layer at high Mach number,part 2:comparisons between experimental and numerical data for the structural response[C]//Proceedings of NOVEM2012 Conference Noise and Vibration.Sorrento:NOVEM,2012.
    [83]CIAPPI E,DE ROSA S,FRANCO F,et al.On the dynamic behavior of composite panels under turbulent boundary layer excitations[J].Journal of Sound and Vibration,2016,364:77-109.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700