ENO:本质上是非振荡的
“Essentially Non-Oscillatory”通常简写为ENO,这一术语主要用于数值分析和偏微分方程等学术领域,尤其在计算流体力学和物理学中十分常见。其核心含义为“本质上是非振荡的”,代表一种数值方法能够在处理高精度计算时有效抑制非物理振荡,提高解的稳定性。使用缩写ENO不仅便于学术写作和交流,也有助于提升文献引用和讨论时的效率。
Essentially Non-Oscillatory具体释义
Essentially Non-Oscillatory的英文发音
例句
- High order accurate weighted essentially non-oscillatory ( WENO ) schemes are investigated and their applications of scalar conservation laws are discussed.
- 研究高阶精度加权本质无振荡(WENO)格式及其在标量守恒律方程中的应用。
- Based on non-uniform grid, we constructed a second-order essentially non-oscillatory finite difference scheme.
- 直接基于非均匀网格上,构造了一个二阶的基本无振荡(ENO)差分格式。
- Experimental results demonstrate effectiveness of the combination of weighted essentially non-oscillatory schemes and wiener algorithm.
- 试验结果显示权基本无振荡格式和维纳算法的联合方法的有效性。
- The scheme is based on central weighted essentially non-oscillatory ( WENO ) reconstruction for one space dimension.
- 对一维问题,该格式以四阶中心WENO重构为基础;对二维问题,用逐维计算的方法将四阶中心WENO重构进行了推广。
- In this paper, we develop the high-order accurate essentially non-oscillatory ( ENO ) schemes on one and two-dimensional structured meshes in the finite volume formulation, and discuss their applications in hyperbolic conservation laws.
- 本文构造了一维、二维结构网格中的高阶精度基本无振荡(ENO)有限体积格式,并且讨论了它在双曲守恒型方程中的应用。
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