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Numerical Study on Flow-induced Noise for a Steam Stop-valve Using Large Eddy Simulation 被引量:9
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作者 Jiming Liu Tao Zhang Yong'ou Zhang 《Journal of Marine Science and Application》 2013年第3期351-360,共10页
The noise induced by the fluctuant saturated steam flow under 250 °C in a stop-valve was numerically studied.The simulation was carried out using computational fluid dynamics(CFD) and ACTRAN.The acoustic field ... The noise induced by the fluctuant saturated steam flow under 250 °C in a stop-valve was numerically studied.The simulation was carried out using computational fluid dynamics(CFD) and ACTRAN.The acoustic field was investigated with Lighthill's acoustic analogy based on the properties of the flow field obtained using a large-eddy simulation that employs the LES-WALE dynamic model as the sub-grid-scale model.Firstly,the validation of mesh was well conducted,illustrating that two million elements were sufficient in this situation.Secondly,the treatment of the steam was deliberated,and conclusions indicate that when predicting the flow-induced noise of the stop-valve,the steam can be treated as incompressible gas at a low inlet velocity.Thirdly,the flow-induced noises under different inlet velocities were compared.The findings reveal it has remarkable influence on the flow-induced noises.Lastly,whether or not the heat preservation of the wall has influence on the noise was taken into account.The results show that heat preservation of the wall had little influence. 展开更多
关键词 flow-induced noise steam stop-valve flow field sound field large eddy simulation(LES) computational fluid dynamics(CFD) ACTRAN
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Numerical Simulation of 3D Flow Field and Flow-Induced Noise Characteristics in a T-Shaped Reducing Tee Junction
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作者 Feiran Lv Min Wang +2 位作者 Chuntian Zhe Chang Guo Ming Gao 《Fluid Dynamics & Materials Processing》 EI 2023年第6期1463-1478,共16页
The so-called T-shaped reducing tees are typically used to divide,change and control(to a certain extent)the flow direction in pipe networks.In this study,the Ffowcs Williams–Hawkings(FW-H)equation and the Large Eddy... The so-called T-shaped reducing tees are typically used to divide,change and control(to a certain extent)the flow direction in pipe networks.In this study,the Ffowcs Williams–Hawkings(FW-H)equation and the Large Eddy Simulation(LES)methods are used to simulate the flow-induced noise related to T-shaped reducing tees under different inlet flow velocities and for different pipe diameter ratios.The results show that the maximum flow velocity,average flow velocity,and vorticity in the branch pipe increase gradually as the related diameter decreases.Strong vorticity and secondary flows are also observed in the branch pipe,and the associated violent pressure fluctuations are found to be the main sources of flow-induced noise.In particular,as the pipe diameter ratio decreases from 1 to 0.45,the Total Sound Pressure Level(TSPL)increases by 6.8,6.26,and 7.43 dB for values of the inlet flow velocity of 1,2,and 3 m/s,respectively.The distribution characteristics of the flow-induced noise in the frequency domain follow similar trends for different pipe diameter ratios. 展开更多
关键词 Flow field flow-induced noise FW-H equation large-eddy simulation
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Occurring Mechanism and Restraining Method Research of Numerical Noise Signal in Penetration Simulation 被引量:3
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作者 WANG Chen WANG Yabin 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2016年第5期1037-1043,共7页
In hard target penetration simulation, the existing researches of the convergence of results are mainly concentrating in the corresponding relationship between penetration depth and mesh scales. However, the influence... In hard target penetration simulation, the existing researches of the convergence of results are mainly concentrating in the corresponding relationship between penetration depth and mesh scales. However, the influence of the mesh difference on the penetration resistance and acceleration signals are seldom refer to. This paper presents the occurring mechanism and restraining method of numerical noise signal in penetration simulation. First, the concept of the noise signal izs proposed. By taking a 3D penetration simulation as example, the influence of the noise signal on the penetration resistance in different mesh scales and impact velocity is studied. To ensure the convergence of the computational results, the grid scale of the target is encrypted to 1:1:8. In addition, modem spectrum analysis method is introduced to further analyze the penetration resistance signal. The research results presented is useful to improve the computational accuracy of high speed projectile penetration simulation, and provide important reference for carrying out structural design and optimization of fuze system. 展开更多
关键词 hard target penetration numerical simulation signal of numerical noise spectral analysis
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Numerical simulation on the NACA0018 airfoil self-noise generation 被引量:4
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作者 Min Jiang Xiaodong Li +1 位作者 Baohong Bai Dakai Lin 《Theoretical & Applied Mechanics Letters》 2012年第5期39-42,共4页
Airfoil self-noise is a common phenomenon for many engineering applications. Aiming to study the underlying mechanism of airfoil self-noise at low Mach number and moderate Reynolds number flow, a numerical investigati... Airfoil self-noise is a common phenomenon for many engineering applications. Aiming to study the underlying mechanism of airfoil self-noise at low Mach number and moderate Reynolds number flow, a numerical investigation is presented on noise generation by flow past NACA0018 airfoil. Based on a high-order accurate numerical method, both the near-field hydrodynamics and the far-field acoustics are computed simultaneously by performing direct numerical simulation. The mean flow properties agree well with the experimental measurements. The characteristics of aerodynamic noise are investigated at various angles of attack. The obtained results show that inclining the airfoil could enlarge turbulent intensity and produce larger scale of vortices. The sound radiation is mainly towards the upper and lower directions of the airfoil surface. At higher angle of attack, the tonal noise tends to disappear and the noise spectrum displays broad-band features. 展开更多
关键词 direct numerical simulation computational aeroacoustics airfoil self-noise broad-band features
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Flow-induced Noise and Vibration Analysis of a Piping Elbow with/without a Guide Vane 被引量:4
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作者 Tao Zhang Yong'ou Zhang +1 位作者 Huajiang Ouyang Tao Guo 《Journal of Marine Science and Application》 2014年第4期394-401,共8页
The effect of a guide vane installed at the elbow on flow-induced noise and vibration is investigated in the range of Reynolds numbers from 1.70×10^5 to 6.81×10^5, and the position of guide vane is determine... The effect of a guide vane installed at the elbow on flow-induced noise and vibration is investigated in the range of Reynolds numbers from 1.70×10^5 to 6.81×10^5, and the position of guide vane is determined by publications. The turbulent flow in the piping elbow is simulated with large eddy simulation (LES). Following this, a hybrid method of combining LES and Lighthill's acoustic analogy theory is used to simulate the hydrodynamic noise and sound sources are solved as volume sources in code Actran. In addition, the flow-induced vibration of the piping elbow is investigated based on a fluid-structure interaction (FSI) code. The LES results indicate that the range of vortex zone in the elbow without the guide vane is larger than the case with the guide vane, and the guide vane is effective in reducing flow-induced noise and vibration in the 90° piping elbow at different Reynolds numbers. 展开更多
关键词 flow-induced noise flow-induced vibration piping elbow guide vane large eddy simulation fluid structure interaction Actran
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Numerical Study on Flow-Induced Vibration of Ejector Structure 被引量:2
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作者 NIE Xutao LIU Zongzheng +1 位作者 QIN Chaojin ZHANG Wei 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2019年第5期769-778,共10页
High-speed airflow in wind tunnel tests usually causes dramatic vibration of ejector structure,which may lead to fatigue and even destruction of the wind tunnel.Therefore,analyzing and solving the flow-induced vibrati... High-speed airflow in wind tunnel tests usually causes dramatic vibration of ejector structure,which may lead to fatigue and even destruction of the wind tunnel.Therefore,analyzing and solving the flow-induced vibration problem is a tough and indispensable part of the wind tunnel security design.In this paper,taking a kind of two-stage ejector as the study object,multiple numerical simulation methods are adopted in order to carry out research on the analysis technique of the flow-induced vibration characteristics of ejector structure.Firstly,the structural dynamics characteristic is analyzed by using the ejector structural dynamics numerical model,which is built on the basis of finite element method.Secondly,the complex flow phenomenon is explored applying numerical fluid-dynamics model of the inner flow field of the ejector,which is constructed on the basis of finite volume method.Finally,based on the two numerical models above,the vibration response of the ejector structure induced by the high-speed airflow is computed via the fluid-solid coupling technique.The comparison of the simulation results with the actual vibration test indicates that these numerical simulation methods can accurately figure out the rule of flow-induced vibration of ejectors. 展开更多
关键词 EJECTOR flow-induced VIBRATION fluid-solid COUPLING numerical simulation
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Investigation on the Changing Characteristics of Flow-Induced Noise in a Centrifugal Pump 被引量:1
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作者 Guanpeng Li Lihui Sun +4 位作者 Zhaoyang Wang Chunguo An Chang Guo Shen Cheng Ming Gao 《Fluid Dynamics & Materials Processing》 EI 2021年第5期989-1001,共13页
Centrifugal pumps are widely used in engineering for a variety of applications.A known drawback of these devices is the high-level noise generated during operations,which can affect their stability and adversely influ... Centrifugal pumps are widely used in engineering for a variety of applications.A known drawback of these devices is the high-level noise generated during operations,which can affect their stability and adversely influence the entire working environment.By combining the Powell vortex sound theory,numerical simulations and experimental measurements,this research explores the trends of variation and the corresponding underlying mechanisms for the flow-induced noise at various locations and under different operating conditions.It is shown that the total sound source intensity(TSSI)and total sound pressure level(TSPL)in the impeller,in the region between the inlet to the outlet and along the circumferential extension of the volute,are much higher than those at pump inlet and outlet.Additionally,under various rotational speeds with the design flow rate(Condition 1),the TSSI and TSPL at pump inlet and outlet are higher than those obtained with the opening of the valve kept unchanged(Condition 2);vice versa when these two parameters are evaluated at various locations in the impeller and the volute under the Condition 2,they exceed the equivalent values obtained for the other Condition 1. 展开更多
关键词 flow-induced noise centrifugal pump noise evaluation criterion Powell vortex sound theory numerical simulations
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Clean numerical simulation:a new strategy to obtain reliable solutions of chaotic dynamic systems
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作者 Xiaoming LI Shijun LIAO 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2018年第11期1529-1546,共18页
It is well-known that chaotic dynamic systems, e.g., three-body system and turbulent flow, have sensitive dependence on the initial conditions(SDIC). Unfortunately,numerical noises, i.e., truncation error and round-of... It is well-known that chaotic dynamic systems, e.g., three-body system and turbulent flow, have sensitive dependence on the initial conditions(SDIC). Unfortunately,numerical noises, i.e., truncation error and round-off error, always exist in practice. Thus,due to the SDIC, the long-term accurate prediction of chaotic dynamic systems is practically impossible. In this paper, a new strategy for chaotic dynamic systems, i.e., the clean numerical simulation(CNS), is briefly described, and applied to a few Hamiltonian chaotic systems. With negligible numerical noises, the CNS can provide convergent(reliable) chaotic trajectories in a long enough interval of time. This is very important for Hamiltonian systems, and thus should have many applications in various fields. It is found that the traditional numerical methods in double precision cannot give not only reliable trajectories but also reliable Fourier power spectra and autocorrelation functions(ACFs). In addition, even the statistic properties of chaotic systems cannot be correctly obtained by means of traditional numerical algorithms in double precision, as long as these statistics are time-dependent. The CNS results strongly suggest that one had better be very careful on the direct numerical simulation(DNS) results of statistically unsteady turbulent flows, although DNS results often agree well with experimental data when the turbulent flow is in a statistical stationary state. 展开更多
关键词 CHAOS numerical noise clean numerical simulation(CNS) reliability of computation
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Phase-field simulation of dendritic sidebranching induced by thermal noise
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作者 朱昌盛 王智平 +1 位作者 荆涛 柳百成 《中国有色金属学会会刊:英文版》 CSCD 2004年第6期1106-1110,共5页
The influence of undercooling and noise magnitude on dendritic sidebranching during crystal growth was investigated by simulation of a phase-field model which incorporates thermal noise. It is shown that, the sidebran... The influence of undercooling and noise magnitude on dendritic sidebranching during crystal growth was investigated by simulation of a phase-field model which incorporates thermal noise. It is shown that, the sidebranching is not influenced with inclusion of the nonconserved noise, therefore, in order to save the computational costs it is often neglected; while conserved noise drives the morphological instability and is dominant origin of sidebranching. The dependence of temperature field on magnitude of thermal noise is apparent, when F_u gets an appropriate value, noise can induce sidebranching but not influence the dendritic tip operating state. In the small undercooled melt, the thermal diffusion layer collected around the dendrite is thick, which suppresses the growth of its sidebranching and makes the dendrite take on the morphology of no sidebranching, but when the undercooling is great, the thermal diffusion layer is thin, which is advantageous to the growth of the sidebranching and the dendrite presents the morphology of the developed sidebranching. 展开更多
关键词 相-场法 热噪声 冷却过度 枝晶分边 数值仿真 合金结构
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Research on the Generation Mechanism and Suppression Method of Aerodynamic Noise in Expansion Cavity Based on Hybrid Method
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作者 Haitao Liu Jiaming Wang +2 位作者 Xiuliang Zhang Yanji Jiang Qian Xiao 《Computer Modeling in Engineering & Sciences》 SCIE EI 2024年第6期2747-2772,共26页
The expansion chamber serves as the primary silencing structure within the exhaust pipeline.However,it can also act as a sound-emitting structure when subjected to airflow.This article presents a hybrid method for num... The expansion chamber serves as the primary silencing structure within the exhaust pipeline.However,it can also act as a sound-emitting structure when subjected to airflow.This article presents a hybrid method for numerically simulating and analyzing the unsteady flow and aerodynamic noise in an expansion chamber under the influence of airflow.A fluid simulation model is established,utilizing the Large Eddy Simulation(LES)method to calculate the unsteady flow within the expansion chamber.The simulation results effectively capture the development and changes of the unsteady flow and vorticity inside the cavity,exhibiting a high level of consistency with experimental observations.To calculate the aerodynamic noise sources within the cavity,the flow field results are integrated using the method of integral interpolation and inserted into the acoustic grid.The acoustic analogy method is then employed to determine the aerodynamic noise sources.An acoustic simulation model is established,and the flow noise source is imported into the sound field grid to calculate the sound pressure at the far-field response point.The calculated sound pressure levels and resonance frequencies show good agreement with the experimental results.To address the issue of airflow regeneration noise within the cavity,perforated tubes are selected as a means of noise suppression.An experimental platformfor airflow regeneration noise is constructed,and experimental samples are processed to analyze and verify the noise suppression effect of perforated tube expansion cavities under different airflow velocities.The research findings indicate that the perforated tube expansion cavity can effectively suppress low-frequency aerodynamic noise within the cavity by impeding the formation of strong shear layers.Moreover,the semi-perforated tube expansion cavity demonstrates the most effective suppression of aerodynamic noise. 展开更多
关键词 Expansion cavity aerodynamic noise numerical simulation hybrid method perforated tube
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Analysis of Influence on Aerodynamic Noise of Wind Turbine Blades under Different Pitch Angles
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作者 Ruirong He Houcai Liu +1 位作者 Huimin Kang Jiale Xi 《Open Journal of Applied Sciences》 2024年第5期1237-1250,共14页
Aiming at the influence of blade pitch Angle on aerodynamic noise of wind turbines, the sound field and flow field distribution at 0˚, 5˚, 10˚ and 15˚ are calculated by numerical simulation. Then, through the distribu... Aiming at the influence of blade pitch Angle on aerodynamic noise of wind turbines, the sound field and flow field distribution at 0˚, 5˚, 10˚ and 15˚ are calculated by numerical simulation. Then, through the distribution of pressure field and velocity field calculated by flow field, the influence of different pitch angles on wind turbine blade aerodynamic noise and the reasons for its influence are analyzed. The results show that when the pitch Angle increases within 0˚ - 10˚, the aerodynamic noise pressure level of the blade decreases. However, the sound pressure level of aerodynamic noise increases in the range of 10˚ - 15˚. The changes of static pressure gradient and pressure pulsation on the blade surface make the aerodynamic noise change, and the changes of the two are positively correlated. At the same time, the fluid velocity and fluid motion state on the blade surface are closely related to the aerodynamic noise of the blade. The greater the fluid velocity, the more complex the fluid motion state and the greater the turbulent kinetic energy of the wind turbine blade, and the aerodynamic noise of the wind turbine blade will also increase. 展开更多
关键词 Pitch Angle Aerodynamic noise Static Pressure Gradient Fluid Motion numerical simulation
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Comparative Study of the Propagation of Jet Noise in Static and Flow Environments 被引量:1
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作者 Wen Zhao Dongxing Mao Zaixiu Jiang 《Sound & Vibration》 2019年第1期37-46,共10页
In order to analyze the effect of the background flow on the sound prediction of fine-scale turbulence noise,the sound spectra from static and flow environments are compared.It turns out that,the two methods can obtai... In order to analyze the effect of the background flow on the sound prediction of fine-scale turbulence noise,the sound spectra from static and flow environments are compared.It turns out that,the two methods can obtain similar predictions not only at 90 deg to the jet axis but also at mid-and high frequencies in other directions.The discrepancies of predictions from the two environments show that the effect of the jet flow on the sound propagation is related to low frequencies in the downstream and upstream directions.It is noted that there is an obvious advantage of computational efficiency for calculating in static environment,compared with that in flow environment.A good agreement is also observed to some extent between the predictions in static environment and measurements of subsonic to supersonic.It is believed that the predictions in static environment could be an effective method to study the propagation of the sound in jet flow and to predict the fine scale turbulence noise accurately in a way as well. 展开更多
关键词 Fine-scale turbulence noise sound propagation numerical simulation background flow
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Aerodynamic Noise Characteristics During Evolution of Rotating Stall in Centrifugal Fan 被引量:3
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作者 ZHANG Lei WANG Songling HU Chenxing KONG Chuimao 《中国电机工程学报》 EI CSCD 北大核心 2013年第32期I0011-I0011,3,共1页
基于节流阀函数及宽带噪声源模型,对电厂常用的G4?73型后向式离心风机在旋转失速状态下的气动噪声特性进行了数值研究。分析离心风机分别在设计工况、失速先兆的产生过程、失速先兆发展为失速团的三维演化过程及失速团沿周向传播过程... 基于节流阀函数及宽带噪声源模型,对电厂常用的G4?73型后向式离心风机在旋转失速状态下的气动噪声特性进行了数值研究。分析离心风机分别在设计工况、失速先兆的产生过程、失速先兆发展为失速团的三维演化过程及失速团沿周向传播过程中风机内部的气动噪声特性,揭示了旋转失速非稳定流动现象对气动噪声分布的影响规律。结果表明,失速先兆发生后叶轮附近旋涡噪声对应的高噪区经历了沿径向、周向和轴向的三维非定常演化过程,高噪区从两个变为一个;失速发生后,旋涡噪声占主要部分,高噪区保持与失速团相同的速度沿周向传播。文中分析了失速团与蜗舌对离心风机气动噪声的影响机制。研究结果对完善旋转失速的理论体系及通过噪声对旋转失速进行预估具有重要意义。 展开更多
关键词 旋转失速 离心风机 气动噪声 噪声特性 演变 非定常流动 相对运动 内部流场
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Simulation Analysis of Balance Detection Technique in Coherent Optical Receiver
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作者 Piaokun Zhang Zhongwei Tan +1 位作者 Zhichao Ding Lijun Guo 《Optics and Photonics Journal》 2021年第8期301-313,共13页
<div style="text-align:justify;"> This paper introduces the working principle of the balanced heterodyne detection system, establishes the corresponding mathematical model, deduces the signal to noise ... <div style="text-align:justify;"> This paper introduces the working principle of the balanced heterodyne detection system, establishes the corresponding mathematical model, deduces the signal to noise ratio (SNR) formula of the balanced heterodyne detection. By comparing balance heterodyne detection with general coherent detection with MATLAB numerical simulation, the superiority of balance heterodyne detection system is proved theoretically. Finally, the simulation models of ordinary heterodyne detection, balance detection and double balance detection system are built by OptiSystem. The simulation results are consistent with the conclusions derived from the mathematical analysis, which provides a new method for the research of weak laser detection technology. </div> 展开更多
关键词 Balance Heterodyne Detection 90? Optical Mixer Signal to noise Ratio The numerical simulation
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Is a direct numerical simulation(DNS)of Navier-Stokes equations with small enough grid spacing and time-step definitely reliable/correct?
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作者 Shijie Qin Yu Yang +3 位作者 Yongxiang Huang Xinyu Mei Lipo Wang Shijun Liao 《Journal of Ocean Engineering and Science》 SCIE 2024年第3期293-310,共18页
Turbulence is strongly associated with the vast majority of fluid flows in nature and industry.Traditionally,results given by the direct numerical simulation(DNS)of Navier-Stokes(NS)equations that relate to a famous m... Turbulence is strongly associated with the vast majority of fluid flows in nature and industry.Traditionally,results given by the direct numerical simulation(DNS)of Navier-Stokes(NS)equations that relate to a famous millennium problem are widely regarded as‘reliable’benchmark solutions of turbulence,as long as grid spacing is fine enough(i.e.less than the minimum Kolmogorov scale)and time-step is small enough,say,satisfying the Courant-Friedrichs-Lewy condition(Courant number<1).Is this really true?In this paper a two-dimensional sustained turbulent Kolmogorov flow driven by an external body force governed by the NS equations under an initial condition with a spatial symmetry is investigated numerically by the two numerical methods with detailed comparisons:one is the traditional DNS,the other is the‘clean numerical simulation’(CNS).In theory,the exact solution must have a kind of spatial symmetry since its initial condition is spatially symmetric.However,it is found that numerical noises of the DNS are quickly enlarged to the same level as the‘true’physical solution,which finally destroy the spatial symmetry of the flow field.In other words,the DNS results of the turbulent Kolmogorov flow governed by the NS equations are badly polluted mostly.On the contrary,the numerical noise of the CNS is much smaller than the‘true’physical solution of turbulence in a long enough interval of time so that the CNS result is very close to the‘true’physical solution and thus can remain symmetric,which can be used as a benchmark solution for comparison.Besides,it is found that numerical noise as a kind of artificial tiny disturbances can lead to huge deviations at large scale on the two-dimensional Kolmogorov turbulence governed by the NS equations,not only quantitatively(even in statistics)but also qualitatively(such as spatial symmetry of flow).This highly suggests that fine enough spatial grid spacing with small enough time-step alone could not guarantee the validity of the DNS of the NS equations:it is only a necessary condition but not sufficient.All of these findings might challenge some of our general beliefs in turbulence:for example,it might be wrong in physics to neglect the influences of small disturbances to NS equations.Our results suggest that,from physical point of view,it should be better to use the Landau-Lifshitz-Navier-Stokes(LLNS)equations,which consider the influence of unavoidable thermal fluctuations,instead of the NS equations,to model turbulent flows. 展开更多
关键词 Kolmogorov flow Statistical stability Computational reliability Clean numerical simulation Artificial numerical noises
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无轴泵喷推进器内流致噪声仿真计算
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作者 刘厚林 郭成宇 +2 位作者 吴贤芳 谈明高 赵杨 《排灌机械工程学报》 北大核心 2025年第2期109-115,共7页
基于Lighthill声比拟理论,采用混合数值模拟方法分析了流量变化对无轴泵喷推进器内流致噪声的声压级频域特性和总声压级等的影响及其与内流场的关系.研究结果表明:声压级主频均为轴频,并可见2倍轴频的谐频.小流量和设计流量下,主频处声... 基于Lighthill声比拟理论,采用混合数值模拟方法分析了流量变化对无轴泵喷推进器内流致噪声的声压级频域特性和总声压级等的影响及其与内流场的关系.研究结果表明:声压级主频均为轴频,并可见2倍轴频的谐频.小流量和设计流量下,主频处声压级幅值沿流向先下降后上升再下降,沿径向先上升后下降,并存在叶频及其倍频的谐频;大流量下,其沿流向下降,沿径向先下降后上升,未见叶频或其倍频的谐频分布.出口段靠近叶轮区域的主频处声压级幅值随流量增加上升,而远离该区域则先上升后下降;轴线附近区域的噪声逐渐增强.总声压级随流量增加而上升;流向上,总声压级逐渐降低,且在大流量下噪声衰减速度更为缓慢;径向上,总声压级最高值随着径向区域所在的流向距离增加而逐渐靠近轴线.影响不同流量下无轴泵喷推进器噪声分布的主要因素是出口段靠近叶轮区域的速度梯度和2个旋涡的大小和位置. 展开更多
关键词 无轴泵喷推进器 Lighthill声比拟理论 流致噪声 数值模拟
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天然气汇管噪声数值模拟及降噪分析
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作者 孙文 张伟 闫鑫豪 《石油工业技术监督》 2025年第2期12-16,22,共6页
针对天然气汇管在高压气流作用下产生的气动噪声问题,采用计算流体动力学CFD软件与声学软件耦合的方法进行数值模拟,研究天然气汇管的噪声特性,并评估多孔材料包裹的降噪效果。通过对流场进行计算,导入流体数据作为激励在Virtual.Lab Ac... 针对天然气汇管在高压气流作用下产生的气动噪声问题,采用计算流体动力学CFD软件与声学软件耦合的方法进行数值模拟,研究天然气汇管的噪声特性,并评估多孔材料包裹的降噪效果。通过对流场进行计算,导入流体数据作为激励在Virtual.Lab Acoustics中进行声场计算,模拟噪声场分布。引入多孔材料模型,通过改变流阻、厚度和密度等参数,分析了多孔材料对降噪性能的影响。结果表明,在200~2000 Hz的频率范围内,多孔材料包裹具有良好的降噪效果。通过对不同参数的分析比较,为实际工程中多孔材料的选择提供借鉴。 展开更多
关键词 汇管 气动噪声 数值模拟 多孔材料 降噪
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密闭容器清吹过程流场及噪声特性数值模拟与优化研究
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作者 何豪杰 张祖提 +4 位作者 姚伍平 李红钢 费銮 龙新平 王晓川 《振动与冲击》 北大核心 2025年第2期333-343,共11页
利用压缩气体驱离流体是密闭容器清理的一种重要方式,其工作过程中将形成复杂的气液两相流动现象并诱发剧烈噪声。为揭示密闭容器清吹过程中复杂流动发展演化规律及流噪声形成机理,优化密闭容器清吹参数从而控制清吹噪声,该研究基于流... 利用压缩气体驱离流体是密闭容器清理的一种重要方式,其工作过程中将形成复杂的气液两相流动现象并诱发剧烈噪声。为揭示密闭容器清吹过程中复杂流动发展演化规律及流噪声形成机理,优化密闭容器清吹参数从而控制清吹噪声,该研究基于流体体积表面跟踪法和Lighthill声类比原理,采用计算流体动力学-计算声学相结合的混合模拟方法对密闭容器清吹过程的流场和声场进行仿真分析和优化研究。研究结果表明,密闭容器清吹过程中,高速气体射流将对液面产生剧烈的冲击作用而形成漩涡、液体破碎和气泡弥散等流态,诱发复杂的不稳定气液两相流动,从而激发剧烈的噪声并影响清吹效率。进气压力将直接影响密闭容器内部流场特性,并进一步影响清吹效率和噪声特性,当进气压力高于1.0 MPa时,气体将沿罐壁进入排水管路形成不稳定的气液混合流动,导致有效排除流量和清吹效率降低。噪声随进出口压差升高而增加,进气压力1.0 MPa时总声压级比0.3 MPa时高10 dB,为兼顾清吹效率和噪声特性,采用0.5 MPa的气体压力具有较好综合性能。根据密闭容器内部流场特性对进气结构进行优化,采用倾斜进气和倾斜渐扩进气结构,清吹效率分别提高了15.0%和27.0%,总声压级降低了10 dB和7 dB。 展开更多
关键词 清吹排污 流噪声 噪声优化 数值模拟 Lighthill声类比
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混流式水轮机部分负荷运行压力脉动与噪声特性
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作者 夏璞 马建军 +3 位作者 袁聪 刘斌 蒋东进 张玉全 《排灌机械工程学报》 北大核心 2025年第3期284-290,307,共8页
为研究水轮机在部分负荷工况下运行的压力脉动和噪声特性等,采用SST湍流模型并使用仿真软件对某具体水轮机模型进行不同负荷工况的数值模拟计算.结果表明:时域中从蜗壳至转轮出口处压力脉动幅值基本稳定在一个范围内,其中转轮部分压力... 为研究水轮机在部分负荷工况下运行的压力脉动和噪声特性等,采用SST湍流模型并使用仿真软件对某具体水轮机模型进行不同负荷工况的数值模拟计算.结果表明:时域中从蜗壳至转轮出口处压力脉动幅值基本稳定在一个范围内,其中转轮部分压力脉动幅值最大,尾水管进口至出口压力脉动幅值先增大后减小.频域中从蜗壳至活动导叶,主频的位置是在叶频处,且越远离转轮其主频振幅越小,转轮两侧的压力脉动频率振幅较高,说明压力脉动受动静干涉影响很大.不同负荷工况产生的噪声辐射水平和指向性分布在各个方向是相似的:声压级分布的规律相同,水轮机周围声压幅值最大,声压幅值随场点离水轮机越远而越低.在叶频处,噪声声压分布呈明显的偶极子特性,不同负荷工况的外场噪声指向性分布图中极小极大值的位置基本相同.研究结果可以为优化水轮发电机组运行技术提供理论支撑. 展开更多
关键词 混流式水轮机 数值模拟 部分负荷 压力脉动 噪声特性
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尾喷管结构对其推力和气动噪声的影响
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作者 杜春志 赵世恒 +1 位作者 郝曦昕 周蕊 《机械设计与制造》 北大核心 2025年第4期72-77,82,共7页
以DGEN 380 A7为模型,采用SST k-ω湍流模型计算稳态流场,得到尾喷管尾缘角扩张5°、标准角度、尾喷管尾缘角收缩5°的流场速度、推力等信息。将稳态流场计算结果作为瞬态计算的初始值,采用大涡模拟计算方法(LES)和Lighthill声... 以DGEN 380 A7为模型,采用SST k-ω湍流模型计算稳态流场,得到尾喷管尾缘角扩张5°、标准角度、尾喷管尾缘角收缩5°的流场速度、推力等信息。将稳态流场计算结果作为瞬态计算的初始值,采用大涡模拟计算方法(LES)和Lighthill声类比的FW-H模型相结合的方法对上述三种模型进行瞬态计算,通过安装噪声响应点(距离尾喷管0.25m的水平面上,从0°到180°,每隔15°安装一个,共13个),得到噪声声压级信息。最后结果表明:扩张5°模型噪声水平最低,但是推力损失过大;收缩5°模型的噪声水平高,推力最大;原模型的这两个性能参数均介于其他两种模型之间。 展开更多
关键词 数值计算模拟 尾缘角度 尾喷管推力 喷流噪声
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