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On depth and temperature biases in bathythermograph data: Development of a new correction scheme based on analysis of a global ocean database

机译:关于体温计数据中的深度和温度偏差:基于对全球海洋数据库的分析,开发一种新的校正方案

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摘要

The World Ocean Database 2005 as of May 2009 is used to estimate temperature and sample depth biases of expendable (XBT) and mechanical (MBT) bathythermographs by comparing bathythermograph temperature profiles with more accurate bottle and conductivity/temperature/depth (CTD) data. It is shown that the application of depth corrections estimated earlier from side-by-side XBT/CTD inter-comparisons, without accounting for a pure thermal bias, leads to even larger disagreement with the CTD and bottle reference temperatures. Our calculations give evidence for a depth-variable XBT fall-rate correction with the manufacturer-derived depth being underestimated in the upper 200 m and overestimated below this depth. These results are in agreement with side-by-side inter-comparisons and direct fall-rate estimates. Correcting XBT sample depths by a multiplicative factor which is constant with depth does not allow an effective elimination of the total temperature bias throughout the whole water column. The analysis further suggests a dependence of the fall rate on the water temperature which was reported earlier in the literature. Comparison among different correction schemes implies a significant impact of systematic biases on the estimates of the global ocean heat content anomaly.
机译:截止到2009年5月的2005年世界海洋数据库用于通过将浴热仪的温度曲线与更准确的瓶和电导率/温度/深度(CTD)数据进行比较,来估算消耗性(XBT)和机械(MBT)的热成像仪的温度和样品深度偏差。结果表明,在不考虑纯热偏差的情况下,根据并排XBT / CTD相互比较估计的深度校正的应用会导致与CTD和瓶参考温度的更大分歧。我们的计算为深度可变的XBT下降率校正提供了证据,制造商得出的深度在200 m的上部被低估,而在该深度以下则被高估。这些结果与并行比较和直接跌落率估算相符。用与深度恒定的乘数因子校正XBT样品深度不能有效消除整个水柱中的总温度偏差。分析还表明,下降速率与水温的相关性在文献中已有报道。不同校正方案之间的比较意味着系统偏差对全球海洋热量含量异常的估计有重大影响。

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