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Visual analysis of uncertainties in ocean forecasts for planning and operation of off-shore structures

机译:远程结构规划和运作的海洋不确定性的视觉分析

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We present a novel integrated visualization system that enables interactive visual analysis of ensemble simulations used in ocean forecasting, i.e, simulations of sea surface elevation. Our system enables the interactive planning of both the placement and operation of off-shore structures. We illustrate this using a real-world simulation of the Gulf of Mexico. Off-shore structures, such as those used for oil exploration, are vulnerable to hazards caused by strong loop currents. The oil and gas industry therefore relies on accurate ocean forecasting systems for planning their operations. Nowadays, these forecasts are based on multiple spatio-temporal simulations resulting in multidimensional, multivariate and multivalued data, so-called ensemble data. Changes in sea surface elevation are a good indicator for the movement of loop current eddies, and our visualization approach enables their interactive exploration and analysis. We enable analysis of the spatial domain, for planning the placement of structures, as well as detailed exploration of the temporal evolution at any chosen position, for the prediction of critical ocean states that require the shutdown of rig operations.
机译:我们提出了一种新的集成可视化系统,可实现在海洋预测中使用的集合模拟的交互式视觉分析,即海面抬高的模拟。我们的系统使得跨岸结构的放置和操作的交互式规划。我们使用墨西哥湾的真实模拟来说明这一点。离岸结构,例如用于石油勘探的结构,易受强循环电流引起的危害。因此,石油和天然气工业依赖于规划其运营的准确海洋预测系统。如今,这些预测基于多个时空模拟,导致多维,多变量和多值数据,所谓的集合数据。海面高度的变化是环路电流漩涡运动的良好指标,我们的可视化方法能够实现其交互勘探和分析。我们启用对空间域的分析,用于规划结构的放置,以及对任何所选位置的时间演进的详细探索,以预测需要关闭钻机操作的关键海洋状态。

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