Johnson Gregory P, Calo Victor M, Gaither Kelly P
Texas Advanced Computing Center, The University of Texas, Austin, TX, USA.
IEEE Trans Vis Comput Graph. 2008 Nov-Dec;14(6):1420-7. doi: 10.1109/TVCG.2008.146.
A stand-alone visualization application has been developed by a multi-disciplinary, collaborative team with the sole purpose of creating an interactive exploration environment allowing turbulent flow researchers to experiment and validate hypotheses using visualization. This system has specific optimizations made in data management, caching computations, and visualization allowing for the interactive exploration of datasets on the order of 1TB in size. Using this application, the user (co-author Calo) is able to interactively visualize and analyze all regions of a transitional flow volume, including the laminar, transitional and fully turbulent regions. The underlying goal of the visualizations produced from these transitional flow simulations is to localize turbulent spots in the laminar region of the boundary layer, determine under which conditions they form, and follow their evolution. The initiation of turbulent spots, which ultimately lead to full turbulence, was located via a proposed feature detection condition and verified by experimental results. The conditions under which these turbulent spots form and coalesce are validated and presented.
一个独立的可视化应用程序由一个多学科协作团队开发,其唯一目的是创建一个交互式探索环境,使湍流研究人员能够使用可视化来实验和验证假设。该系统在数据管理、缓存计算和可视化方面进行了特定优化,能够对大小约为1TB的数据集进行交互式探索。使用此应用程序,用户(共同作者卡洛)能够交互式地可视化和分析过渡流体积的所有区域,包括层流、过渡流和完全湍流区域。这些过渡流模拟产生的可视化的根本目标是在边界层的层流区域中定位湍流斑,确定它们在何种条件下形成,并跟踪它们的演变。通过提出的特征检测条件定位了最终导致完全湍流的湍流斑的起始点,并通过实验结果进行了验证。验证并展示了这些湍流斑形成和合并的条件。