Error Analyses of the Sea Ice Draft Retrieval from Upward Looking Sonar

V. Djepa
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Abstract

Sea Ice Draft (SID) has been recorded in the last 40 years from Upload looking Sonar (ULS) on submarines, but not all data are error corrected. Error corrected SID with uncertainties is required for validation of climate models, satellite observations and for assessment of the seasonal and annual SID change due to climate impact. The aim of this study is to analyse the uncertainties of the SID, derived from ULS and develop algorithms for error correction and validation of the retrieved SID from ULS. The uncertainties of the retrieved SID (from ULS on submarine) are analysed. Algorithms for error correction of SID with open water offset and beam width impact are developed and applied to correct SID, retrieved from ULS in the Beaufort Sea in 2007. A bias correction function of raw SID data is provided. The comparison of SID from ULS with collocated SID derived from Radar Altimeter (RA2/Envisat) demonstrated improved biases and correlation coefficient, which confirms the accuracy of the bias-corrected SID. Error corrected SID, derived from ULS, has been applied to validate an algorithm for SID retrieval from RA, using variable ice density. Algorithm for retrieval of sea ice density from the sea ice freeboard, derived from RA, is developed and results of retrieved sea ice density in Beaufort Sea are shown. The developed error correction algorithms of SID, retrieved from ULS, have global application for correction of SID, which are not yet error corrected. Error corrected SID and the derived sea ice densities are essential climate variables (ECV) important for improved climate forecast and validation of satellite observations. European Space Agency (ESA), National Snow and Ice Data centre (NSIDC), climate change and numerical prediction programs will benefit the results of this paper.
仰视声呐反演海冰吃水的误差分析
在过去的40年里,潜艇上的声纳(ULS)已经记录了海冰吃水(SID),但并不是所有的数据都能得到纠正。在验证气候模式、卫星观测和评估由于气候影响而引起的季节和年度SID变化时,需要使用带不确定性的误差校正SID。本研究的目的是分析来自ULS的SID的不确定性,并开发从ULS中检索到的SID的纠错和验证算法。分析了从潜艇ULS接收到的SID的不确定度。开发了具有开阔水域偏移和波束宽度影响的SID误差校正算法,并将其应用于校正2007年从波弗特海ULS中获取的SID。给出了原始SID数据的偏差校正函数。将ULS的SID与雷达高度计(RA2/Envisat)的SID进行对比,发现偏差和相关系数有所改善,证实了偏差校正SID的准确性。基于ULS的误差校正SID已被应用于验证一种使用可变冰密度从RA中检索SID的算法。提出了基于RA的海冰干舷海冰密度反演算法,并给出了波弗特海海冰密度反演结果。本文所开发的SID纠错算法是从ULS中检索出来的,对于尚未纠错的SID纠错具有全局应用。误差校正后的SID和推导出的海冰密度是重要的气候变量(ECV),对改进气候预报和验证卫星观测结果非常重要。欧洲航天局(ESA)、国家冰雪数据中心(NSIDC)、气候变化和数值预测项目将受益于本文的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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