针对双曲守恒定律的具有多分辨率自适应能力的高阶第二代小波上风方案

IF 4.3 3区 工程技术 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY Extreme Mechanics Letters Pub Date : 2024-06-29 DOI:10.1016/j.eml.2024.102192
Bing Yang , Youhe Zhou , Jizeng Wang
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引用次数: 0

摘要

我们介绍了一套新颖的高阶小波配位上风方案,该方案利用了一大类用于双曲守恒定律的第二代小波。这些方案具有多分辨率自适应能力,并集成到无网格框架中。传统的高阶方案需要在涉及大量局部投影的物理空间和特征空间之间进行频繁的变量变换,而我们的方案则不同,可以直接离散化物理空间中的相关空间导数。新提出的方案充分利用了小波特性,即应用非对称插值小波来实现上风特性,并利用对称的第二代小波来保持函数的形状,从而获得更高的数据压缩率。我们对包含强不连续性和不同尺度平滑结构的解进行了数值测试,以证明基于第二代小波的拟议方案性能更强。在处理方波的平流问题时,所提出的方案只需利用 WENO5 方案中 9% 的节点就能得到类似的结果,并在没有局部特征投影的情况下实现了两个相互作用的冲击波问题的收敛解。与传统方法和我们之前介绍的基于插值小波的小波上风方案相比,新提出的方案数据压缩率显著提高,并在不影响精度的情况下节省了大量计算量。
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High-order second-generation wavelet upwind schemes with multiresolution self-adaptive capabilities for hyperbolic conservation laws

We introduce a novel system of high-order wavelet collocation upwind schemes utilizing a broad class of second-generation wavelets for hyperbolic conservation laws. These schemes possess multiresolution self-adaptive capabilities and are integrated into a meshfree framework. Unlike traditional high-order schemes that necessitate frequent variable transformations between physical and characteristic spaces involving numerous local projections, our schemes enable the direct discretization of relevant spatial derivatives in the physical space. The newly proposed schemes make the most use of wavelet properties, i.e., applying asymmetrical interpolating wavelets to achieve the upwind property and utilizing the symmetrical second-generation wavelets to preserve shapes of functions and obtain higher data compression rates. Numerical tests of which solutions contain strong discontinuities and different scale smooth structures are conducted to demonstrate the enhanced performance of the proposed schemes based on the second-generation wavelets. The proposed schemes can utilize only 9 % of the nodes in the WENO5 scheme to yield similar results when addressing the advection of a square wave and achieve the convergent solution for the two interacting blast waves problem without local characteristics projection. In comparison to conventional methods and wavelet upwind schemes based on the interpolating wavelets we previously introduced, the newly proposed schemes exhibit a significantly higher data compression rate and yield substantial computational savings without compromising accuracy.

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来源期刊
Extreme Mechanics Letters
Extreme Mechanics Letters Engineering-Mechanics of Materials
CiteScore
9.20
自引率
4.30%
发文量
179
审稿时长
45 days
期刊介绍: Extreme Mechanics Letters (EML) enables rapid communication of research that highlights the role of mechanics in multi-disciplinary areas across materials science, physics, chemistry, biology, medicine and engineering. Emphasis is on the impact, depth and originality of new concepts, methods and observations at the forefront of applied sciences.
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