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1.
阻振质量参数对动力舱段隔振性能影响规律研究   总被引:1,自引:0,他引:1  
Rigid blocking masses are located in the typical base structure of a power cabin based on the impedance mismatch principle.By combining the acoustic-structural coupling method and statistical energy analysis,the full-band vibration and sound radiation reduction effect of vibration isolation masses located in a base structure was researched.The influence of the blocking mass’ cross-section size and shape parameters and the layout location of the base isolation performance was discussed.Furthermore,the effectiveness of rigid vibration isolation design of the base structure was validated.The results show that the medium and high frequency vibration and sound radiation of a power cabin are effectively reduced by a blocking mass.Concerning weight increment and section requirement,suitably increasing the blocking mass size and section height and reducing section width can result in an efficiency-cost ratio.  相似文献   

2.
In considering the theory of structural dynamic optimization design, a design method of the structural style of ship composite brace with rigid vibration isolation mass was studied. Two kinds of structural dynamic optimization formulations minimizing the vibration acceleration of the non-pressure hull on the restraining condition of the gross weight of the ship cabin were established: 1) dynamic optimization of the sectional dimensions of the rigid vibration isolation mass in the composite brace; 2) dynamic optimization of the arranging position of the rigid vibration isolation mass. Through the optimization results, sectional dimensions and the arranging position of the rigid vibration isolation mass with better performance in reducing vibration were gained, and some reference was provided for practical engineering designs as well as enrichment of the design method of a novel ship vibration-isolation brace.  相似文献   

3.
Based on wave theory, blocking mass impeding propagation of flexural waves was analyzed with force excitation applied on a ship pedestal. The analysis model of a complex structure was developed by combining statistical energy analysis and the finite element method. Based on the hybrid FE-SEA method, the vibro-acoustic response of a complex structure was solved. Then, the sound radiation of a cylindrical shell model influenced by blocking mass was calculated in mid/high frequency. The result shows that blocking mass has an obvious effect on impeding propagation. The study provides a theoretical and experimental basis for application of the blocking mass to structure-borne sound propagation control.  相似文献   

4.
The vibration isolation performances of typical hull structure with viscoelastic interlayer are analyzed according to wave theory,and the influences of interlayer Young’s modulus and length on the vibration reduction are discussed.The theoretical analysis shows that combination of polyurethane interlayer with blocking mass can enhance the vibration isolation performance and expand isolation frequency band.In order to verify the effectiveness of polyurethane interlayer,the model test of power cabin’s vibration is carried out.The test data shows that the reduction of 20–1 000 Hz variation acoustic level at hull shell is more than 5 dB.  相似文献   

5.
The structures in engineering can be simplified intoelastic beams with concentrated masses and elastic spring supports.Studying the law of vibration of the beams can be a help in guidingits design and avoiding resonance. Based on the Laplace transformmethod, the mode shape functions and the frequency equations ofthe beams in the typical boundary conditions are derived. Acantilever beam with a lumped mass and a spring is selected toobtain its natural frequencies and mode shape functions. Anexperiment was conducted in order to get the modal parameters ofthe beam based on the NExT-ERA method. By comparing theanalytical and experimental results, the effects of the locations ofthe mass and spring on the modal parameter are discussed. Thevariation of the natural frequencies was obtained with the changingstiffness coefficient and mass coefficient, respectively. The findingsprovide a reference for the vibration analysis methods and thelumped parameters layout design of elastic beams used inengineering.  相似文献   

6.
The effect of the mass ratio on the flow-induced vibration(FIV) of a flexible circular cylinder is experimentally investigated in a towing tank. A Tygon tube with outer and inner diameters of 7.9 mm and 4.8 mm, respectively, was employed for the study. The tube was connected to a carriage and towed from rest to a steady speed up to 1.6 m/s before slowing down to rest again over a distance of 1.6 m in still water. Reynolds number based on the cylinder's outer diameter was 800–13,000, and the reduced velocity(velocity normalized by the cylinder's natural frequency and outer diameter) spanned from 2 to 25. When connected, the cylinder was elongated from 420 mm to 460 mm under an axial pre-tension of 11 N. Based on the cylinder's elongated length, the aspect ratio(ratio of the cylinder's length to outer diameter) was calculated as 58. Three mass ratios(ratio of the cylinder's structural mass to displaced fluid mass, m*) of 0.7, 1.0, and 3.4 were determined by filling the cylinder's interior with air, water, and alloy powder(nickel-chromium-boron matrix alloy), respectively. An optical method was adopted for response measurements. Multi-frequency vibrations were observed in both in-line(IL) and cross-flow(CF) responses; at high Reynolds number, vibration modes up to the 3rd one were identified in the CF response. The mode transition was found to occur at a lower reduced velocity for the highest tested mass ratio. The vibration amplitude and frequency were quantified and expressed with respect to the reduced velocity. A significant reduced vibration amplitude was found in the IL response with increasing mass ratios, and only initial and upper branches existed in the IL and CF response amplitudes. The normalized response frequencies were revealed to linearly increase with respect to the reduced velocity, and slopes for linear relations were found to be identical for the three cases tested.  相似文献   

7.
1/4 圆弧面沉箱防波堤设计分项系数研究(英文)   总被引:1,自引:0,他引:1  
The quarter-circular caisson breakwater (QCB) is a new type of breakwater, and it can be applied in deepwater. The stability of QCB under wave force action can be enhanced, and the rubble mound engineering can be less than that of semi-circular breakwaters in deepwater. In order to study the wave force distribution acting on the QCB, to find wave force formula for this type of breakwater, firstly in this paper, the distribution characteristics of the horizontal force, the downward vertical force and the uplift force on the breakwater were gotten based on physical model wave flume experiments and on the analysis of the wave pressure experimental data. Based on a series of physical model tests acted by irregular waves, a kind of calculation method, which was modified by Goda formula, was proposed to carry out the wave force on the QCB. Secondly, the reliability method with correlated variables was adopted to analyze the QCB, considering the high correlation between wave forces or moments. Utilizing the observed wave data in engineering field, the reliability index and failure probability of QCB were obtained. Finally, a factor Q=0.9 is given to modify the zero pressure height above SWL of QCB, and wave force partial coefficient 1.34 to the design expressions of QCB for anti-sliding, as well as 1.67 for anti-overturning, were presented.  相似文献   

8.
The stress combination method for the fatigue assessment of the hatch corner of a bulk carrier was investigated based on equivalent waves.The principles of the equivalent waves of ship structures were given,including the determination of the dominant load parameter,heading,frequency,and amplitude of the equivalent regular waves.The dominant load parameters of the hatch corner of a bulk carrier were identified by the structural stress response analysis,and then a series of equivalent regular waves were defined based on these parameters.A combination method of the structural stress ranges under the different equivalent waves was developed for the fatigue analysis.The combination factors were obtained by least square regression analysis with the stress ranges derived from spectral fatigue analysis as the target value.The proposed method was applied to the hatch corner of another bulk carrier as an example.This shows that the results from the equivalent wave approach agree well with those from the spectral fatigue analysis.The workload is reduced substantially.This method can be referenced in the fatigue assessment of the hatch corner of a bulk carrier.  相似文献   

9.
Nowadays,there are many studies conducted in the field of marine hydrodynamics which focus on two vessels traveling and floating in sufficiently close proximity to experience significant interactions.The hydrodynamic behavior of parallel moving ships in waves is an interesting and important topic of late.A numerical investigation has been carried out for the prediction of wave exciting forces and motion responses of parallel moving ships in regular waves.The numerical solution was based on 3D distribution technique and using the linear wave theory to determine the exciting forces and ship's motion.The speed effects have been considered in the Green function for more realistic results.The numerical computations of wave exciting forces and motion responses were carried out for a Mariner and Series 60 for the purpose of discovering different Froude numbers and different separation distances in head sea conditions.Based on the numerical computations,it was revealed that the sway,roll and yaw have a significant effect due to hydrodynamic interaction.  相似文献   

10.
水下等离子体声源聚焦性能仿真及误差分析(英文)   总被引:2,自引:0,他引:2  
Focused underwater plasma sound sources are being applied in more and more fields. Focusing performance is one of the most important factors determining transmission distance and peak values of the pulsed sound waves. The sound source’s components and focusing mechanism were all analyzed. A model was built in 3D Max and wave strength was measured on the simulation platform. Error analysis was fully integrated into the model so that effects on sound focusing performance of processing-errors and installation-errors could be studied. Based on what was practical, ways to limit the errors were proposed. The results of the error analysis should guide the design, machining, placement, debugging and application of underwater plasma sound sources.  相似文献   

11.
刚性阻振质量阻隔振动波传递特性数值研究   总被引:1,自引:0,他引:1  
基于阻抗失配原理,从波动角度分析了刚性阻振质量阻隔振动波传递的特性,并利用有限元法数值研究了重量及截面形状参数对刚性阻振质量隔振性能的影响。结果表明:刚性阻振质量能有效隔离中高频振动波的传递,且其重量越大,隔振效果越好,而对低频振动波则几乎不起隔离作用;对于矩形截面的刚性阻振质量,适当增大其截面高度同时减小截面宽度,可有效提高刚性阻振质量的隔振降噪效果,这对刚性阻振质量在船体结构减振降噪中的应用具有一定的参考意义。  相似文献   

12.
动力设备周围阻振质量闭式回路隔振特性研究   总被引:1,自引:1,他引:0  
姚熊亮  计方 《船舶》2010,21(2):35-41
基于波动理论分析了T型板架中阻振质量对振动波传递的阻抑特性,推导了阻振质量的隔振度公式,给出了振动波入射角度、阻振质量截面参数对其隔振性能的影响规律。在此基础上,基于阻抗失配原理将环形阻振质量回路、矩形阻振质量回路引入双壳动力段动力设备周围结构的刚性隔振动设计中,给出了艇体铺板结构阻振质量刚性隔振设计原则。结果表明阻振质量闭式回路能有效降低动力舱段的振动及声辐射。  相似文献   

13.
阻振质量与传统减振器的减振机理有很大不同,属于刚性减振器.从工程应用的角度出发,分析阻振质量对振动波传播的影响,采用有限元法探讨环形阻振质量带的阻振特性,分析不同矩形截面形状和不同圆环形状参数对阻振质量隔振特性的影响,最后将环形阻振质量引入双层壳复杂船舶动力艇舱,对环形阻振质量的减振效果进行数值分析.结果表明,阻振质量能有效降低船舶动力舱段的振动及声辐射,为实际水下航行器减振降噪设计提供了新的思路.  相似文献   

14.
基于阻抗失配原理,分析刚性阻振质量阻隔振动波传递的特性,提出在舰船弹性基座中引入刚性减振器.即在舰船基座与船体结构连接部位布设刚性阻振质量.并利用有限元法对基座舱段耐压壳体及基座板结构的振动传递特性进行数值仿真研究。研究结果表明:对于中高频结构噪声,刚性阻振质量能有效降低基座舱段耐压壳体的振动及声辐射,而对于低频结构噪声,阻振质量的减振效果不明显,甚至没有减振效果。这对刚性阻振技术在实艇减振降噪中的应用具有重要的参考意义。  相似文献   

15.
阻振质量刚性隔振在舰船基座结构中应用研究   总被引:1,自引:0,他引:1  
田正东  计方 《船舶力学》2011,15(8):906-914
基于波动理论,探讨了阻振质量对典型船体连接结构中振动波传递的阻抑特性。兼顾基座阻振质量布置工艺,开展了阻振质量偏心距对其隔振特性的影响研究。从工程应用的角度出发,将阻振质量带引入动力舱段基座结构的刚性隔振设计中,联合应用声固耦合法和统计能量法数值研究了阻振质量截面尺寸、截面形状参数和布置位置对舱段全频段隔振特性的影响规律。在此基础上,开发了动力舱段基座阻振质量隔振效果工程快速预报方法,旨在为艇体早期结构声学设计提供参考。  相似文献   

16.
姚熊亮  计方  王祖华  周海波 《船舶》2010,21(4):34-42
从工程应用的角度出发,将刚性阻振质量带引入动力舱段基座结构的刚性隔振设计中。联合应用声固耦合法和统计能量法,基于ABAQUS/VA ONE,对基座结构含阻振质量带的动力舱段减振降噪效果进行了全频段数值分析。数值研究了阻振质量截面尺寸、截面形状参数、布置位置对基座隔振特性的影响规律,验证了基座刚性阻振质量隔振设计的有效性,旨在为船舶结构声学设计提供参考。  相似文献   

17.
利用波动理论的分析、处理方法,分析了阻振质量对船体结构中振动波传递的阻抑特性,讨论了阻振质量偏心布置对其隔振性能的影响。在此基础之上,突破传统柔性隔振理论的局限,开展双层壳动力舱段阻振质量刚性隔振特性研究,从阻抗失配的角度出发,初步给出了具有高传递损失特性的舱壁及出海管道系统结构形式,为船舶结构声学提供参考。研究结果表明:不同形式的阻振质量增大了船体结构的阻抗失配程度,加剧了振动波在船体结构中的波型转换、散射和反射,显著降低了动力舱段中高频带的振动和声辐射。  相似文献   

18.
阻振质量对板平面弯曲波传播的阻抑   总被引:2,自引:0,他引:2  
研究了无限板上受点激励时阻振质量对结构声传递的阻抑,采用基于能量观点的隔振度来定义阻振质量的阻抑作用.通过理论分析验证了隔振度简化公式的可行性.发现板平面弯曲波分别和阻振质量的弯曲波和扭转波达到最佳耦合时,平面弯曲波发生最大透射.算例分析和试验研究论证了理论分析的正确性,为阻振质量应用于结构声传递途径的控制提供了理论和试验基础.  相似文献   

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