首页|水下珊瑚双向反射率观测技术的研究

水下珊瑚双向反射率观测技术的研究

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遥感作为一种高效海洋环境监测手段,可以对海底各种底质类型分布及其状态变化进行同步大面积监测.目前,海底底质反射率观测技术主要为单个角度观测,开展底质多角度光反射特性观测技术的研究,分析不同底质双向反射分布函数(BRDF)特征,对于遥感高精度监测浅水海区底质具有重要意义,在满足遥感对复杂底质类型精确区分的同时能做到对底质更细微的动态变化监测.采用双通道同步测量的方法,设计了一套简便的海底底质双向反射率测量系统,获取了水下珊瑚及细沙底质的反射率特征数据.在大亚湾海域开展了现场测量,数据分析表明:(1)岸上沙质的BRDF特征:在400~700 nm内,当天顶角不变时(θ=20°,40°或60°),不同方位角(φ=0°,45°,135°,180°,225°和315°)所测得的反射率值标准偏差小于1.5%;当方位角不变时(φ=0°,45°,135°,180°,225°或315°),不同天顶角上的反射率值标准偏差均不大于1.7%,表明岸上沙质的BRDF变化较小,具有朗伯体特性;水下沙质的BRDF特征:在400~700 nm内,当天顶角不变时,不同方位角所测得的反射率值标准偏差随着波长的增大而增大;在400 nm时,反射率值的标准偏差为3.8%,在700 nm时,反射率值标准偏差递增至12%.水下沙质的BRDF表现为各向同性特征.(2)水下珊瑚BRDF特征:在天顶角不变时,不同方位角上所测得的反射率值标准偏差随着波长的增加呈现先增加后减小,而后激增的趋势.从400到605 nm,标准偏差从1%升至2%,而后从605到675 nm,标准偏差从2%降至1.2%,在675~700 nm,标准偏差从1.2%增至4.9%.现场测试数据分析结果表明本套水底双向反射测量系统能有效测量多种海底底质的反射光谱.通过现场获取的测量数据,对沙质和珊瑚两种典型底质的反射率光谱及BRDF进行了初步分析,为后续采用遥感手段反演浅水区底质及动态变化(如,珊瑚生长状态)提供多种底质多观测角度的反射率光谱特征.
Study on Bidirectional Reflectance Observation Technology of Underwater Coral
As an efficient marine environment monitoring method,remote sensing can simultaneously monitor the distribution and state changes of various substrates on the seabed.Currently,the observation technology of the reflectivity of the bottom substrate is mainly a single angle observation.The accuracy of remote-sensing models to detect the shallow water substrate would be improved significantly by studying and analyzingthe characteristics of multiple-angles reflectance spectra as well as BRDF information of substrates of the seabed in shallow water regions.Using the two-channel simultaneous measurement method,a simple two-way reflectivity measurement system of the seabed is designed,then the characteristic data of fine sandy bottom and Underwater coral were acquired.The results showed that(1)The standard deviation of the reflectance values measured at different azimuth angles for the constant zenith angle(θ=20°,40° and 60°)of the homogeneous sand on the shore,is less than 1.5%at 400~700 nm.The standard deviation of the reflectance at different zenith angles was analyzed at a constant azimuth angle,and the standard deviation was not more than 1.7%.It indicates that the sand substance on the shore has isotropic characteristics.BRDF characteristics of submarine sandy demonstrated that the standard deviation of the reflectance values,measured at different azimuth angles for the constant zenith angle(θ=20°),showed a relevance increase with the wavelength in the 400~700 nm.The standard deviation of reflectance is 3.8%at 400 nm,while it reaches 12%at 700 nm.It indicates that the submarine sandy also has isotropic characteristics.(2)The standard deviation of the reflectance values measured at different azimuth angles for the constant zenith angle(θ=20°)of corals,gradual increases from 1.1%to 2%at 400~605 nm,then decrease from 2%to 1.2%at 400~605 nm and increases from 1.2%to 4.9%at 675~700 nm.The field test data analysis results show that this underwater bidirectional reflection measurement system can effectively measure the reflection spectrum of various seabed substrates.Based on the measurement data obtained in the field,this study conducts a preliminary analysis of the reflectance spectra of two typical substrates,sandy and coral,which provides spectral characteristics of reflectance at multiple observed angles of various substrates for the subsequent use of remote sensing means to invert the seabed substrates in shallow water areas and dynamically monitor the dynamic changes of the substrates(e.g.,coral growth state).

Underwater bidirectional reflectionCoral anisotropySubstrate reflectanceOptically shallow water remote sensing

谢栢成、许占堂、杨跃忠、曾凯、张雨、刘永明、周雯、李彩

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中国科学院南海海洋研究所热带海洋环境国家重点实验室,广东广州 510301

中国科学院大学,北京 100049

南方海洋科学与工程广东省实验室,广东广州 511458

水下双向反射 珊瑚各向异性 底质反射率 光学浅水遥感

国家自然科学基金面上项目中国科学院海洋大科学研究中心重点部署项目南方海洋科学与工程广东省实验室(广州)人才团队引进重大专项广东省基础与应用基础研究基金

42076190COMS2019J10GML2019ZD06022021A1515011538

2024

光谱学与光谱分析
中国光学学会

光谱学与光谱分析

CSTPCD北大核心
影响因子:0.897
ISSN:1000-0593
年,卷(期):2024.44(4)
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