Abstract
We propose a novel Lagrangian geometric representation using segment clouds to simulate incompressible fluid exhibiting strong anisotropic vortical features. The central component of our approach is a cloud of discrete segments enhanced by a set of local segment reseeding operations to facilitate both the geometrical evolution and the topological updates of vortical flow. We build a vortex dynamics solver with the support for dynamic solid boundaries based on discrete segment primitives. We demonstrate the efficacy of our approach by simulating a broad range of challenging flow phenomena, such as reconnection of non-closed vortex tubes and vortex shedding behind a rotating object.
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Xiong, S., Tao, R., Zhang, Y., Feng, F., & Zhu, B. (2021). Incompressible flow simulation on vortex segment clouds. ACM Transactions on Graphics, 40(4). https://doi.org/10.1145/3450626.3459865
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