In this paper,a boundary element scheme for arbitrary elastic thin shells is elaborated,Based on BEM of 3D linear elasticity and Kirchhoff's hypothesis,boundary integral equations for shells are deduced. As a resu...In this paper,a boundary element scheme for arbitrary elastic thin shells is elaborated,Based on BEM of 3D linear elasticity and Kirchhoff's hypothesis,boundary integral equations for shells are deduced. As a result,only Kelvin's solution is used,the difficulty,in finding a fundamental solution of arbitrary shells is successfully avoided.展开更多
The variational functional of the Hellinger-Reissner variational principle for the large displacement problem of a thin shallow shell with an arbitrary shape is first established. Then the functional of the modified p...The variational functional of the Hellinger-Reissner variational principle for the large displacement problem of a thin shallow shell with an arbitrary shape is first established. Then the functional of the modified principle suitable for the finite element method is derived. In the functional only two independent variables, the deflection w and the stress function F are included. The displacement expressions in the middle surface on the boundary of the shell is also derived by means of the previous two variables.展开更多
The static behavior of piezoelectric circular spherical shallow shells under both electrical and mechanical loads is studied by using the differential quadrature element method (DQEM). Geometrical nonlinearity effect ...The static behavior of piezoelectric circular spherical shallow shells under both electrical and mechanical loads is studied by using the differential quadrature element method (DQEM). Geometrical nonlinearity effect is considered. Detailed formulations and procedures are given for the first time. Several examples are analyzed and accurate results are obtained by the DQEM. Based on the results in this paper, one may conclude that the DQEM is a useful tool for obtaining solutions of structural elements. It can be seen that the shell shape may be theore tically controlled and snap through may occur when the applied voltage reaches a critical value even without mechanical load for certain geometric configurations.展开更多
A finite element / boundary element-modified modal decomposition method (FBMMD) is presented for predicting the vibration and sound radiation from submerged shell of revolution. Improvement has been made to accelerate...A finite element / boundary element-modified modal decomposition method (FBMMD) is presented for predicting the vibration and sound radiation from submerged shell of revolution. Improvement has been made to accelerate the convergence to FBMD method by means of introducing the residual modes which take into accaunt the quasi -state contributiort of all neglected modes. As an example, the vibration and sound radiation of a submerged spherical shell excited by axisymmetric force are studied in cases of ka=l,2,3 and 4. From the calculated results we see that the FBMMD method shows a significant improvement to the accuracy of surface sound pressure, normal displacement and directivity patterns of radiating sound, especially to the directivity patterns.展开更多
A combined method of wave superposition and finite element is proposed to solve the radiation noise of targets in shallow sea.Taking the sound propagation of spherical sound source in shallow sea as an example,the rad...A combined method of wave superposition and finite element is proposed to solve the radiation noise of targets in shallow sea.Taking the sound propagation of spherical sound source in shallow sea as an example,the radiation sound field of the spherical sound source is equivalent to the linear superposition of the radiation sound field of several internal point sound sources,and then the radiated noise induced by spherical sound source can be predicted quickly.The accuracy and efficiency of the method are verified by comparing with the numerical results of finite element method,and the rapid prediction of underwater radiated noise of cylindrical shell is carried out based on the method.The results show that compared with the finite element method,the relative error of the calculation results under different simulation conditions does not exceed 0.1%,and the calculation time is about 1/10 of the finite element method,so this method can be used to solve the radiated noise of shallow underwater targets.展开更多
For the purpose to research the underwater echo characteristics of elastic shell,the numerical expressions of surface sound pressure and particle vibration velocity are derived based on finite element and boundary ele...For the purpose to research the underwater echo characteristics of elastic shell,the numerical expressions of surface sound pressure and particle vibration velocity are derived based on finite element and boundary element theories.The echo characteristics of hollow coaxial cylinder-cone assembled elastic shell are calculated with simulation and experiment methods to obtained the azimuth angle and frequency characteristics.It's shown in the results that the more quantity of mesh point,the higher precision of calculation.Meanwhile,the magnitude of mirror reflection wave is largest in the echo wave between 20 and 40 kHz,and increases as the scattering cross-section.The backscatter sound pressure of elastic shell has the obvious frequency characteristic.展开更多
由于水底和水面的影响,结构在有限水深环境中的辐射声场与在自由空间中的辐射声场有很大区别。为了更高效准确地分析有限水深环境中大规模结构的辐射声场,文章构建一种快速边界元法(boundary element method,BEM)。采用宽频快速多极算...由于水底和水面的影响,结构在有限水深环境中的辐射声场与在自由空间中的辐射声场有很大区别。为了更高效准确地分析有限水深环境中大规模结构的辐射声场,文章构建一种快速边界元法(boundary element method,BEM)。采用宽频快速多极算法对计算过程进行加速处理,针对算法中最为耗时的M2L/F2H变换过程,通过建立判定准则将均匀层格林函数中的多阶虚源分为近场和远场,从而设计不同求解方案,极大减少M2L/F2H的变换次数,显著提高求解效率。数值算例验证了文章方法的准确性和高效性,并体现出该方法在浅海声学分析中的工程潜力。展开更多
基金The project supported by National Natural Science Foundation of China
文摘In this paper,a boundary element scheme for arbitrary elastic thin shells is elaborated,Based on BEM of 3D linear elasticity and Kirchhoff's hypothesis,boundary integral equations for shells are deduced. As a result,only Kelvin's solution is used,the difficulty,in finding a fundamental solution of arbitrary shells is successfully avoided.
文摘The variational functional of the Hellinger-Reissner variational principle for the large displacement problem of a thin shallow shell with an arbitrary shape is first established. Then the functional of the modified principle suitable for the finite element method is derived. In the functional only two independent variables, the deflection w and the stress function F are included. The displacement expressions in the middle surface on the boundary of the shell is also derived by means of the previous two variables.
文摘The static behavior of piezoelectric circular spherical shallow shells under both electrical and mechanical loads is studied by using the differential quadrature element method (DQEM). Geometrical nonlinearity effect is considered. Detailed formulations and procedures are given for the first time. Several examples are analyzed and accurate results are obtained by the DQEM. Based on the results in this paper, one may conclude that the DQEM is a useful tool for obtaining solutions of structural elements. It can be seen that the shell shape may be theore tically controlled and snap through may occur when the applied voltage reaches a critical value even without mechanical load for certain geometric configurations.
文摘A finite element / boundary element-modified modal decomposition method (FBMMD) is presented for predicting the vibration and sound radiation from submerged shell of revolution. Improvement has been made to accelerate the convergence to FBMD method by means of introducing the residual modes which take into accaunt the quasi -state contributiort of all neglected modes. As an example, the vibration and sound radiation of a submerged spherical shell excited by axisymmetric force are studied in cases of ka=l,2,3 and 4. From the calculated results we see that the FBMMD method shows a significant improvement to the accuracy of surface sound pressure, normal displacement and directivity patterns of radiating sound, especially to the directivity patterns.
基金Foundation item:This study was financially supported by the National Natural Science Foundation of China(Grant No.52101351)。
文摘A combined method of wave superposition and finite element is proposed to solve the radiation noise of targets in shallow sea.Taking the sound propagation of spherical sound source in shallow sea as an example,the radiation sound field of the spherical sound source is equivalent to the linear superposition of the radiation sound field of several internal point sound sources,and then the radiated noise induced by spherical sound source can be predicted quickly.The accuracy and efficiency of the method are verified by comparing with the numerical results of finite element method,and the rapid prediction of underwater radiated noise of cylindrical shell is carried out based on the method.The results show that compared with the finite element method,the relative error of the calculation results under different simulation conditions does not exceed 0.1%,and the calculation time is about 1/10 of the finite element method,so this method can be used to solve the radiated noise of shallow underwater targets.
基金supported in part by Science Foundation of Shandong Academy of Sciences(2013QN032)the Special Funds of the Construction of Taishan Scholarsthe Science and Technology Development Fund Project of Qingdao Shinan District(2014-14-014-ZH)
文摘For the purpose to research the underwater echo characteristics of elastic shell,the numerical expressions of surface sound pressure and particle vibration velocity are derived based on finite element and boundary element theories.The echo characteristics of hollow coaxial cylinder-cone assembled elastic shell are calculated with simulation and experiment methods to obtained the azimuth angle and frequency characteristics.It's shown in the results that the more quantity of mesh point,the higher precision of calculation.Meanwhile,the magnitude of mirror reflection wave is largest in the echo wave between 20 and 40 kHz,and increases as the scattering cross-section.The backscatter sound pressure of elastic shell has the obvious frequency characteristic.
文摘由于水底和水面的影响,结构在有限水深环境中的辐射声场与在自由空间中的辐射声场有很大区别。为了更高效准确地分析有限水深环境中大规模结构的辐射声场,文章构建一种快速边界元法(boundary element method,BEM)。采用宽频快速多极算法对计算过程进行加速处理,针对算法中最为耗时的M2L/F2H变换过程,通过建立判定准则将均匀层格林函数中的多阶虚源分为近场和远场,从而设计不同求解方案,极大减少M2L/F2H的变换次数,显著提高求解效率。数值算例验证了文章方法的准确性和高效性,并体现出该方法在浅海声学分析中的工程潜力。