‘Finite Time Blowup for an Averaged Three-Dimensional Navier-Stokes Equation’的引用
时间: 2024-06-07 16:08:03 浏览: 14
这篇论文是由 Terence Tao 在2009年发表的,论文主要探讨了三维平均Navier-Stokes方程的有限时间炸裂问题。该方程是Navier-Stokes 方程的一种简化形式,它描述了流体的平均运动。Tao证明了当初始数据具有一定的对称性和非零旋度时,该方程在有限时间内会出现炸裂现象。这篇论文在流体力学领域引起了广泛的关注,并为该领域的研究提供了新的方向。
相关问题
Computational electromagnetics: the finite-difference time-domain method
Computational electromagnetics is a field that deals with the numerical analysis of electromagnetic phenomena. One of the most widely used methods in this field is the finite-difference time-domain (FDTD) method.
The FDTD method is a numerical technique for solving Maxwell's equations, which describe the behavior of electromagnetic fields. The method discretizes space and time into a grid, and the electric and magnetic fields are evaluated at each grid point. The time evolution of the fields is then determined by updating the field values at each time step using the discretized equations.
The FDTD method is particularly well-suited for modeling time-varying electromagnetic fields, such as those produced by antennas, microwave circuits, and electromagnetic waves in transmission lines. It can also be used to simulate the interaction of electromagnetic waves with materials, such as the reflection and transmission of electromagnetic waves at interfaces.
One of the advantages of the FDTD method is its ability to handle complex geometries and material properties. In addition, it is relatively easy to implement and can be parallelized to take advantage of high-performance computing resources.
Overall, the FDTD method is a powerful tool for analyzing electromagnetic phenomena and has found widespread use in a variety of fields, including telecommunications, radar, and electromagnetic compatibility.
Finite-time synchronization of inertial neural networks with time-varying delays在哪里下载
您可以在IEEE官网上下载这篇论文。以下是下载步骤:
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