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Using Alternatives to Determine the Shallowest Depth for Bathymetric Charting: Case Study

机译:使用替代方法确定水深图的最浅深度:案例研究

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摘要

Methods for gridding multibeam echo sounder (MBES) measurements to equidistant grids are proposed as alternatives to the shallowest measured depth, which is affected by outliers. The approaches considered use a combination of mean and standard deviation of soundings and the regression coefficient from the best fitted plane. These methods along with mean and shallowest depths were applied to two surveyed areas. Two issues were found to be of importance, that is, a proper distribution of soundings and low uncertainties in the depth measurements. Improper sampling excludes using the method employing regression coefficients. For flat areas, the shallowest measured depth was found to be highly influenced by measurement uncertainties, counteracted when using the mean depth. However, the mean depth underestimates the shallowest depth for areas with slopes. When correcting the mean depth for standard deviation, the effect of slopes is accounted for while the influence of measurement uncertainties is decreased compared to shallowest measured depth. Since the uncertainties are dependent on beam angle, depth, and measurement equipment, these issues need to be accounted for in survey planning.
机译:提出了将多波束回声测深仪(MBES)测量网格化为等距网格的方法,以替代受异常值影响的最浅测量深度。所考虑的方法结合了平均测深和标准偏差以及与最佳拟合平面的回归系数。这些方法以及平均深度和最浅深度被应用于两个调查区域。发现两个问题很重要,即测深的适当分布和深度测量的不确定性低。采样不当会排除使用回归系数的方法。对于平坦区域,发现最浅的测量深度受测量不确定度的影响很大,使用平均深度会抵消这些不确定性。但是,平均深度低估了有斜坡区域的最浅深度。当校正标准偏差的平均深度时,与最浅的测量深度相比,考虑了倾斜的影响,同时减小了测量不确定性的影响。由于不确定性取决于光束角度,深度和测量设备,因此在勘测计划中必须考虑这些问题。

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