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海洋-声学耦合过程初始温度误差传递与发展
引用本文:过武宏, 笪良龙, 范培勤, 刘敬一, 崔宝龙. 海洋-声学耦合过程初始温度误差传递与发展[J]. 声学学报, 2019, 44(4): 463-470. DOI: 10.15949/j.cnki.0371-0025.2019.04.007
作者姓名:过武宏  笪良龙  范培勤  刘敬一  崔宝龙
作者单位:1. 海军潜艇学院 青岛 266199;
基金项目:国防科技创新特区项目(18-H863-05-ZT-001-012-06)2017年度目标特性国防科技重点实验室基金项目(614240704040317)资助
摘    要:针对海洋初始温度场误差到水声传播误差的传递以及随时间演变发展的问题,优化海洋-声学耦合模式,通过对比遥感数据,验证了模型的可靠性。在此基础上,采用在控制试验温度初始场上加扰动的方法进行传播损失全局误差发展和区域误差发展试验。结果表明,初始温度场全局扰动在经过5天繁殖后使传播损失误差达到饱和,且扰动分布结构和海洋运动规律基本保持一致;对于在黑潮流域设定的目标海区,其上游区域的初始扰动发展最快。该结论可为开展海洋声学适应性观测提供依据。

关 键 词:海洋-声学耦合  误差发展  误差饱和分析  声传播评估
收稿时间:2018-05-29
修稿时间:2019-04-12

The transfer and evolvement of initial temperature perturbation in ocean-acoustic coupled process
GUO Wuhong, DA Lianglong, FAN Peiqin, LIU Jingyi, CUI Baolong. The transfer and evolvement of initial temperature perturbation in ocean-acoustic coupled process[J]. ACTA ACUSTICA, 2019, 44(4): 463-470. DOI: 10.15949/j.cnki.0371-0025.2019.04.007
Authors:GUO Wuhong  DA Lianglong  FAN Peiqin  LIU Jingyi  CUI Baolong
Affiliation:1. Navy Submarine Academy Qingdao 266199;2. Joint Laboratory for Marine Civil-Military Integration of Pilot National Laboratory forMarine Science and Technology (Qingdao) Qingdao 266237
Abstract:Focusing on transfer and evolvement of initial perturbation from temperature of ocean to the underwater acoustic propagation,optimizing Ocean-Acoustic coupled model,comparing with remote sensing data,the reliability of the model is verified.On this basis,global and regional error development experiments are carried out by adding perturbation on the initial temperature of a controlled test.The results show that after 5 days evolution of the initial temperature field,the global perturbation of the propagation loss is satured,and the perturbation structure is basically consistent with the law of the dynamic ocean;for the target area in Kuroshio region,the initial perturbation in the upstream region is the fastest.This conclusion can provide the basis for the adaptive observation of ocean acoustics. 
Keywords:Ocean-acoustic coupling  Error development  Error saturation analysis  Acoustic propagation assessment
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