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101.
In this paper, the authors consider a system of degenerate Davey-Stewartson equations. They prove the global existence of weak solutions in some weighted function spaces and the decay of weak solutions in some anisotropic spaces for appropriate initial data. 相似文献
102.
This paper studies the geometric decay property of the joint queue-length distribution {p(n
1,n
2)} of a two-node Markovian queueing system in the steady state. For arbitrarily given positive integers c
1,c
2,d
1 and d
2, an upper bound
of the decay rate is derived in the sense
It is shown that the upper bound coincides with the exact decay rate in most systems for which the exact decay rate is known.
Moreover, as a function of c
1 and c
2,
takes one of eight types, and the types explain some curious properties reported in Fujimoto and Takahashi (J. Oper. Res.
Soc. Jpn. 39:525–540 [1996]).
相似文献
103.
104.
《Mathematische Nachrichten》2017,290(13):1939-1970
We are concerned with the study of the Cauchy problem for the Navier–Stokes–Poisson system in the critical regularity framework. In the case of a repulsive potential, we first establish the unique global solvability in any dimension for small perturbations of a linearly stable constant state. Next, under a suitable additional condition involving only the low frequencies of the data and in the L2‐critical framework (for simplicity), we exhibit optimal decay estimates for the constructed global solutions, which are similar to those of the barotropic compressible Navier–Stokes system. Our results rely on new a priori estimates for the linearized Navier–Stokes–Poisson system about a stable constant equilibrium, and on a refined time‐weighted energy functional. 相似文献
105.
On the decay and blow‐up of solution for coupled nonlinear wave equations with nonlinear damping and source terms 下载免费PDF全文
In this work, we consider a nonlinear coupled wave equations with initial‐boundary value conditions and nonlinear damping and source terms. Under suitable assumptions on the damping terms and source terms and initial data in the stable set, we obtain that the decay estimates of the energy function is exponential or polynomial by using Nakao's method. By using the energy method, we obtain the blow‐up result of solution with some positive or nonpositive initial energy. Copyright © 2016 John Wiley & Sons, Ltd. 相似文献
106.
本文运用半群理论和Kato的方法,研究了MHD方程组在PL~n∩PL~p(1
相似文献
107.
本文利用Fourier分解方法研究Boussinesq方程组Cauchy问题弱解的L2衰减下界估计. 相似文献
108.
María M. Martínez 《Journal of Mathematical Analysis and Applications》2011,375(1):196-206
Let X be a Banach space and let f∈L∞(R+;X) whose Laplace transform extends analytically to some region containing iR?{0}, possibly having a pole at the origin. In this paper, we give estimates of the decay of certain slight suitable modification of f in terms of the growth of its Laplace transform along the imaginary axis. This technique is applied to obtain decay estimates of smooth orbits of bounded C0-semigroups whose infinitesimal generators have an arbitrary finite boundary spectrum. These results are close to those given recently by C.J.K. Batty and T. Duyckaerts. 相似文献
109.
Consider a radioactive decay chain X1 → ? → Xn→ and let Nn(t) be the amount of Xn at time t. This paper establishes error bounds for large-time approximations to Nn(t) that include and generalize the transient equilibrium approximations and other known approximations. The error bounds allow one to find the range of t for which these approximations can be used with a given degree of precision. 相似文献
110.
Jessica S. Kenigson Jonathan J. Kenigson 《Mathematical Methods in the Applied Sciences》2011,34(1):48-62
We study the asymptotic behavior of solutions of dissipative wave equations with space–time‐dependent potential. When the potential is only time‐dependent, Fourier analysis is a useful tool to derive sharp decay estimates for solutions. When the potential is only space‐dependent, a powerful technique has been developed by Todorova and Yordanov to capture the exact decay of solutions. The presence of a space–time‐dependent potential, as in our case, requires modifications of this technique. We find the energy decay and decay of the L2 norm of solutions in the case of space–time‐dependent potential. Copyright © 2010 John Wiley & Sons, Ltd. 相似文献