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Which WATS? Design and evaluation of an efficient Bi-WATS geometry

机译:哪个湿?高效双湿几何的设计与评估

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Wide Azimuth Towed Streamer (WATS) acquisition plays an important increasing role in salt-affected areas to improve subsalt image quality. A thorough feasibility study is necessary to optimize the required design and maximize the benefit-to-cost ratio. With today's High Performance Computers (HPC) capability, Full Wave modeling is suitable for those feasibilities involving complex acquisition designs and elaborated geological models. The purpose of this paper is to relate the process that leads to an efficient WATS geometry using an innovative model building. The intricacy of the employed model relies on small density contrasts inserted at target level that will allow to a qualitative assessment of the imaging ability of each tested acquisition design in this specific geological context.
机译:宽方位角拖曳拖缆(WATS)采集在盐影响地区发挥着重要的越来越大,以提高余下的图像质量。彻底的可行性研究是优化所需的设计并最大限度地提高益处到成本比。利用当今的高性能电脑(HPC)能力,全波型建模适用于这些可行性,涉及复杂采集设计和详细地质模型。本文的目的是涉及使用创新模型建筑物导致高效的Wats几何形状的过程。所用模型的复杂性依赖于插入目标水平的小密度对比,这将允许在该特定地质背景下对每个测试采集设计的成像能力进行定性评估。

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