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表层声速对多波束测深影响的研究 被引量:16
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作者 朱小辰 肖付民 +1 位作者 刘雁春 葛健 《海洋测绘》 2007年第2期23-25,29,共4页
在多波束测深系统中,表层声速是线型接收换能器基阵对接收波束进行束控的重要参数。表层声速误差会直接造成接收波束的指向误差,也通过归算导致多波束脚印位置误差和回波图像的失真。在分析多波束信号处理流程和接收波束束控原理基础上... 在多波束测深系统中,表层声速是线型接收换能器基阵对接收波束进行束控的重要参数。表层声速误差会直接造成接收波束的指向误差,也通过归算导致多波束脚印位置误差和回波图像的失真。在分析多波束信号处理流程和接收波束束控原理基础上,探讨表层声速对多波束指向和测深影响规律。 展开更多
关键词 多波束测量 表层声速仪 波束指向角
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基于遥感数据和表层声速的全海深声速剖面反演 被引量:2
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作者 李倩倩 李宏琳 +2 位作者 曹守莲 严娴 马志川 《海洋学报》 CAS CSCD 北大核心 2022年第12期84-94,共11页
海洋声速剖面严重影响着水下声传播特性,近实时地获取声速剖面对水下声通信、水下定位、鱼群探测等都有重要意义。单经验正交函数回归(single Empirical Orthogonal Function regression,sEOF-r)方法通过建立声速剖面的经验正交系数与... 海洋声速剖面严重影响着水下声传播特性,近实时地获取声速剖面对水下声通信、水下定位、鱼群探测等都有重要意义。单经验正交函数回归(single Empirical Orthogonal Function regression,sEOF-r)方法通过建立声速剖面的经验正交系数与海面遥感数据之间的线性回归关系来反演声速剖面。但是,海洋是一个复杂的动力系统,声速与海面遥感数据并不是简单的线性关系,因此,本文基于Argo历史网格数据,通过自组织映射(Self-Organizing Map,SOM)生成海平面高度异常(Sea Level Anomaly,SLA)、海表面温度(Sea Surface Temperature,SST)等海表遥感数据以及表层声速仪测量的表层声速与声速剖面异常之间的非线性映射;然后利用近实时的海表遥感数据和表层声速反演三维海洋声速场。声速剖面反演的结果表明,在多源信息融合的优势下,本文方法的反演性能最稳定且精度最高,声速剖面的平均反演精度比经典sEOF-r方法提高约2 m/s,比未考虑表层声速的经典SOM方法提高约1 m/s。 展开更多
关键词 Argo数据集 海表面温度 海平面高度异常 EOF分解 表层声速仪 sEOF-r方法 SOM方法
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Effects of Precipitation on Sonic Anemometer Measurements of Turbulent Fluxes in the Atmospheric Surface Layer
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作者 ZHANG Rongwang HUANG Jian +2 位作者 WANG Xin ZHANG Jun A. HUANG Fei 《Journal of Ocean University of China》 SCIE CAS 2016年第3期389-398,共10页
Effects caused by precipitation on the measurements of three-dimensional sonic anemometer are analyzed based on a field observational experiment conducted in Maoming, Guangdong Province, China. Obvious fluctuations in... Effects caused by precipitation on the measurements of three-dimensional sonic anemometer are analyzed based on a field observational experiment conducted in Maoming, Guangdong Province, China. Obvious fluctuations induced by precipitation are observed for the outputs of sonic anemometer-derived temperature and wind velocity components. A technique of turbulence spectra and cospectra normalized in the framework of similarity theory is utilized to validate the measured variables and calculated fluxes. It is found that the sensitivity of sonic anemometer-derived temperature to precipitation is significant, compared with that of the wind velocity components. The spectra of wind velocity and cospectra of momentum flux resemble the standard universal shape with the slopes of the spectra and cospectra at the inertial subrange, following the-2/3 and-4/3 power law, respectively, even under the condition of heavy rain. Contaminated by precipitation, however, the spectra of temperature and cospectra of sensible heat flux do not exhibit a universal shape and have obvious frequency loss at the inertial subrange. From the physical structure and working principle of sonic anemometer, a possible explanation is proposed to describe this difference, which is found to be related to the variations of precipitation particles. Corrections for errors of sonic anemometer-derived temperature under precipitation is needed, which is still under exploration. 展开更多
关键词 PRECIPITATION sonic anemometer virtual temperature ta:rbulent flux SPECTRA
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