Velocity-Vorticity Geometric Constraints for the Energy Conservation of 3D Ideal Incompressible Fluids

Luigi C. Berselli, Rossano Sannipoli
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Abstract

In this paper we consider the 3D Euler equations and we first prove a criterion for energy conservation for weak solutions, where the velocity satisfies additional assumptions in fractional Sobolev spaces with respect to the space variables, balanced by proper integrability with respect to time. Next, we apply the criterion to study the energy conservation of solution of the Beltrami type, carefully applying properties of products in (fractional and possibly negative) Sobolev spaces and employing a suitable bootstrap argument.

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三维理想不可压缩流体能量守恒的速度-涡度几何约束条件
在本文中,我们考虑了三维欧拉方程,并首先证明了弱解的能量守恒准则,其中速度满足关于空间变量的分数索波列夫空间中的附加假设,并平衡了关于时间的适当可整性。接下来,我们将该准则用于研究贝特拉米类型解的能量守恒,仔细应用(分数和可能负的)索博廖夫空间中的乘积属性,并采用适当的自举论证。
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