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31.
Nikolaus Bck Gerhard A. Holzapfel 《International Journal of Solids and Structures》2004,41(26):7459-7469
Starting from the issue of what is the correct form for a Legendre transformation of the strain energy in terms of Eulerian and two-point tensor variables we introduce a new two-point deformation tensor, namely H=(F−F−T)/2, as a possible deformation measure involving points in two distinct configurations. The Lie derivative of H is work conjugate to the first Piola–Kirchhoff stress tensor P. The deformation measure H leads to straightforward manipulations within a two-point setting such as the derivation of the virtual work equation and its linearization required for finite element implementation. The manipulations are analogous to those used for the Lagrangian and Eulerian frameworks. It is also shown that the Legendre transformation in terms of two-point tensors and spatial tensors require Lie derivatives. As an illustrative example we propose a simple Saint Venant–Kirchhoff type of a strain-energy function in terms of H. The constitutive model leads to physically meaningful results also for the large compressive strain domain, which is not the case for the classical Saint Venant–Kirchhoff material. 相似文献
32.
33.
A three-tip array is used in the HL-2A tokamak to investigate the spectral characteristics of electrostatic turbulence inside the last closed flux surface (LCFS) about 5 cm. Two-point correlation techniques are used to analysis the turbulence structure. It is found that the drift wave turbulence mainly is composed of low-frequency and long wavelength wave packets. The poloidal propagation is mainly in electron-diamagnetic direction, sometimes it propagates in ion-diamagnetic direction, which is influenced by Doppler-frequency shift. The radial propagation velocity is outward and the sizeable fraction of the poloidal velocity, implying that the radial mode plays an important role in the cross field transport. 相似文献
34.
Nonlinear two-point boundary-value problems (TPBVP) can be reduced to the iterative solution of a sequence of linear problems by means of quasilinearization techniques. Therefore, the efficient solution of linear problems is the key to the efficient solution of nonlinear problems.Among the techniques available for solving linear two-point boundary-value problems, the method of particular solutions (MPS) is particularly attractive in that it employs only one differential system, the original nonhomogeneous system, albeit with different initial conditions. This feature of MPS makes it ideally suitable for implementation on parallel computers in that the following requirements are met: the computational effort is subdivided into separate tasks (particular solutions) assigned to the different processors; the tasks have nearly the same size; there is little intercommunication between the tasks.For the TPBVP, the speedup achievable is ofO(n), wheren is the dimension of the state vector, hence relatively modest for the differential systems of interest in trajectory optimization and guidance. This being the case, we transform the TPBVP into a multi-point boundary-value problem (MPBVP) involvingm time subintervals, withm–1 continuity conditions imposed at the interface of contiguous subintervals. For the MPBVP, the speedup achievable is ofO(mn), hence substantially higher than that achievable for the TPBVP. It reduces toO(m) if the parallelism is implemented only in the time domain and not in the state domain.A drawback of the multi-point approach is that it requires the solution of a large linear algebraic system for the constants of the particular solutions. This drawback can be offset by exploiting the particular nature of the interface conditions: if the vector of constants for the first subinterval is known, the vector of constants for the subsequent subintervals can be obtained with linear transformations. Using decomposition techniques together with the discrete version of MPS, the size of the linear algebraic system for the multi-point case becomes the same as that for the two-point case.Numerical tests on the Intel iPSC/860 computer show that substantial speedup can be achieved via parallel algorithms vis-a-vis sequential algorithms. Therefore, the present technique has considerable interest for real-time trajectory optimization and guidance.Dedicated to the Memory of Professor Jan M. SkowronskiThis paper, based on Refs. 1–3, is a much condensed version of the material contained in these references.The technical assistance of the Research Center on Parallel Computation of Rice University, Houston, Texas is gratefully acknowledged. 相似文献
35.
获得了广义 Liénard系统dxdt=p(y) -F(x) , dydt=-g(x) q(y)所有正半轨线有界的若干充分条件 ,推广改进了已有文献 [1— 1 2 ]中的相应结果 . 相似文献
36.
四阶非线性常微分方程非线性两点边值问题解的存在唯一性 总被引:2,自引:0,他引:2
裴明鹤 《高校应用数学学报(A辑)》1995,(3):285-294
本文利用Bolzano定理,给出了四阶非线性常微微分方程具有非线性边界条件的两点边值问题(1)(2)2,(1)(2)3存在解与存在唯一解的一般性结果,并将所得结果应用于Lipschiz方程,对Lipschitz方程满足边界条件(2)2,(2)3的边值问题给出了存在解与存在唯一解的具体的充分条件。 相似文献
37.
Clifford分析中奇异积分的Poincaré-Bertrand置换公式 总被引:3,自引:0,他引:3
借助于多元复分析的思想,本文证明了Cliford分析中奇异积分的Poincaré-Bertrand置换公式. 相似文献
38.
正则局部Lipschitz函数可微性的几何条件 总被引:2,自引:0,他引:2
Banach空间的范数可微性可用它的单位球面来刻画.本文把这些范数可微性的几何条件推广到正则局部Lipschitz函数情形. 相似文献
39.
Mizuhiko Saeki 《Physica A》2010,389(18):3720-1903
The non-equilibrium thermo-field dynamics proposed by Arimitsu and Umezawa are generalized to the case of a non-bilinear unperturbed Hamiltonian which includes not only a bilinear part but also a non-bilinear part with momentum mixing. The forms of the quasi-particle operators for a semi-free boson field are derived. The form of the two-point Green’s function for the semi-free boson field is evaluated. A form of the admittance for a boson system interacting with its heat reservoir, which includes effects of the initial correlation and memory, is derived using the TCLE method formulated in terms of generalized non-equilibrium thermo-field dynamics. The expressions of the zeroth-order, first-order and second-order parts of the admittance in powers of the boson-boson interaction, are derived. 相似文献
40.
当矩阵幂级数的展开式的系数产生微小摄动时,矩阵Padé-型逼近解往往变化很大.本文在矩阵Padé-型逼近研究的基础上,受Brezinski的启发,借助于误差公式和最小二乘法构造了一种稳定性和精确度均有所提高的矩阵Padé-型逼近的新方法,即最小二乘形式的矩阵Padé-型逼近(LSMPTA),并给出了LSMPTA完整的分子和分母行列式表达式.最后,通过数值实例说明了这一方法的有效性. 相似文献