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应用Hydrolight模式研究含油水体辐射传输特性的关键技术
引用本文:黄妙芬,骆蔚健,刘杨,邢旭峰,庄炀. 应用Hydrolight模式研究含油水体辐射传输特性的关键技术[J]. 海洋技术学报, 2019, 38(3): 7-14
作者姓名:黄妙芬  骆蔚健  刘杨  邢旭峰  庄炀
作者单位:广东海洋大学,广东湛江,524088;中国石油勘探开发研究院测井与遥感所,北京,100083
基金项目:国家自然科学基金;广东海洋大学创新强校工程自主创新能力提升项目;广东海洋大学科研启动基金
摘    要:辐射传输模式Hydrolight在国际水色遥感研究领域已被广泛用于解决水体光学的各种问题,也是进行石油类污染水体辐射传输特性研究的有效模型。结合Hydrolight模式的机理、应用现状及含油水体的特点,提出了将该模式应用于光学特性复杂的石油污染水体辐射传输特性研究时需要解决的关键技术,包括测定石油污染水体吸收系数和散射系数、建立石油污染吸收和散射特性随波长和深度变化的参数化模型、确定油物质的吸附后悬浮颗粒物体散射函数模型等方面。依据2018年8月和2016年8月分别在辽宁大连港和辽宁盘锦辽河油田等区域测定的含油水体数据,讨论了这些关键技术的解决方案。

关 键 词:Hydrolight模式  石油污染水体  辐射传输  关键技术

The key technology for studying the radiation transmission characteristics of petroleum-polluted water using Hydrolight mode
Huang Miaofen,Luo Weijian,Liu Yang,Xing Xu-feng and Zhuang Yang. The key technology for studying the radiation transmission characteristics of petroleum-polluted water using Hydrolight mode[J]. Ocean Technology, 2019, 38(3): 7-14
Authors:Huang Miaofen  Luo Weijian  Liu Yang  Xing Xu-feng  Zhuang Yang
Affiliation:Faculty of Mathematics and Computer Science, Guangdong Ocean University, Guangdong Zhanjiang 524088,China,College of ocean and meteorology, Guangdong Ocean University, Guangdong Zhanjiang 524088, China,PetroChina Exploration & Development Research Institute, Beijing 100083, China,Faculty of Mathematics and Computer Science, Guangdong Ocean University, Guangdong Zhanjiang 524088,China and College of ocean and meteorology, Guangdong Ocean University, Guangdong Zhanjiang 524088, China
Abstract:The radiation transmission mode of Hydrolight has been widely used to solve various problems of water optics in the international water color remote sensing research field, and it is also an effective model for studying the radiation transmission characteristics of petroleum-polluted water. Combining Hydrolight mode mechanism, application status and the characteristics of petroleum-polluted water, puts forward the model of the complex characteristics of optics at petroleum-polluted water transfer characteristic research of radiation needs to solve the key technology, including the determination of petroleum-polluted water absorption coefficient and scattering coefficient, to set up parametric model of the petroleum-polluted absorption and scattering properties varying with wavelength and depth , and determine volume scattering function of suspended particles after the adsorption of petroleum matter absorption, etc. Based on the petroleum-polluted data measured in Dalian port of Liaoning province in August 2018 and Liaohe oilfield in Panjin, Liaoning province in August 2016, the solutions of these key technologies are discussed.
Keywords:Hydrolight model   Oil pollution of water bodies   Radiation transmission   Key technology
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