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Improving the quality of marine geophysical track line data: Along-track analysis

机译:改善海洋地球物理航迹线数据的质量:航迹分析

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We have examined 4918 track line geophysics cruises archived at the U.S. National Geophysical Data Center (NGDC) using comprehensive error checking methods. Each cruise was checked for observation outliers, excessive gradients, metadata consistency, and general agreement with satellite altimetry-derived gravity and predicted bathymetry grids. Thresholds for error checking were determined empirically through inspection of histograms for all geophysical values, gradients, and differences with gridded data sampled along ship tracks. Robust regression was used to detect systematic scale and offset errors found by comparing ship bathymetry and free-air anomalies to the corresponding values from global grids. We found many recurring error types in the NGDC archive, including poor navigation, inappropriately scaled or offset data, excessive gradients, and extended offsets in depth and gravity when compared to global grids. While ~5–10% of bathymetry and free-air gravity records fail our conservative tests, residual magnetic errors may exceed twice this proportion. These errors hinder the effective use of the data and may lead to mistakes in interpretation. To enable the removal of gross errors without over-writing original cruise data, we developed an errata system that concisely reports all errors encountered in a cruise. With such errata files, scientists may share cruise corrections, thereby preventing redundant processing. We have implemented these quality control methods in the modified MGD77 supplement to the Generic Mapping Tools software suite.
机译:我们已经使用全面的错误检查方法对在美国国家地球物理数据中心(NGDC)存档的4918条轨道线地球物理巡视进行了检查。检查每个巡航的观测值离群值,过度的坡度,元数据一致性以及与卫星测高仪得出的重力和预计的测深网格的总体一致性。通过检查所有地球物理值,坡度和沿船径采样的网格数据的差异的直方图,凭经验确定错误检查的阈值。通过将船舶测深和自由空气异常与全球网格中的相应值进行比较,使用稳健回归来检测系统规模和偏移误差。与全局网格相比,我们在NGDC档案中发现了许多重复出现的错误类型,包括导航效果差,缩放比例或偏移数据不适当,坡度过大以及深度和重力的偏移扩展。尽管约有5-10%的测深图和自由重力记录未能通过我们的保守测试,但残余磁误差可能超过该比例的两倍。这些错误会阻碍数据的有效使用,并可能导致解释错误。为了消除严重错误而又不覆盖原始巡航数据,我们开发了一种勘误系统,可以简洁地报告巡航中遇到的所有错误。使用此类勘误文件,科学家可以共享巡航更正,从而防止重复处理。我们已在通用映射工具软件套件的改良版MGD77补充中实施了这些质量控制方法。

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