基于二次散射的水污染遥感模型及其在珠江口水域的应用
Model for water pollution remote sensing based on double scattering and its application on the Zhujiang River Estuary
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摘要: 根据水中悬浮物、污染物和水分子等的散射和吸收物理机制建模是实现水污染定量遥感的有效途径.基于一次散射的水污染遥感模型简单易行,但在浑浊度较大时其精度不高.在基于一次散射模型的基础上分析了多次散射的能量组成特点,提出再考虑二次散射可使模型的精度显著提高且不至于使模型过于复杂;导出了二次散射的补偿因子,同时给出了考虑二次散射因子的简单计算方法.将该模型应用于珠江口水域的水污染遥感的结果表明,较之基于一次散射的模型,考虑二次散射的水污染遥感模型在精度上有明显改进.遥感提取结果显示,珠江口水域重污染区主要分布在伶仃洋东北部,香港维多利亚港和深圳湾.Abstract: It is a valid route for quantitatively remote sensing on water pollution to build model according to the physical mechanisms of scattering and absorption of suspended substance, pollutant and molecules of water.Remote sensing model for water pollution based on single scatter ing is simple and easy to be used, but the precision is affected by the turbidity of water.The char acteristics of the energy composition of multiple scatter ing are analyzed, and it is proposed that, based on the model of single scattering, if the flux of the second scattering is consider ed additionally, the precision of the model will be remarkably raised, and the calculation is still very simple.The factor of the second scattering is deduced to build a double scattering model, and the practical arithmetic for the calculation of the model is put for ward.The result of applying this model on the water area around the Zhujiang River Estuary shows that the precison of the model basing on double scattering is obviously improved.The result also shows that the seriously polluted water area was distributed on the north of Lingding Sea, the Victoria Bay of Hong Kong and the Shenzhen Bay.
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Key words:
- remote sensing /
- water pollution /
- double scattering /
- Zhujiang River Estuary
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谭衢林,邵云.遥感技术在环境监测中的应用[J].遥感术与应用,2000,15(4):247-251 李旭文,季耿善,杨静.苏州运河水质的TM分析[J].环境遥感,1993,8(1):36-44. 匡定波.卫星遥感解译太湖水质研究[J].863-308通讯,1998,2:4-5. 张渊智,聂跃平,蔺启忠,等.表面水质遥感监测研究[J].遥感技术与应用,2000,15(4):215-219 ZHANG Y, PULLIAINEN, JOUNI, et al. Applicaflon of an empirical neural network to surface water quality estimatin in the Gulf of Finland using combined optical data and microwave data[J]. Remote sens Environ, 2002, 8(2-3):327-336. DEKKER A G. Detection of optical water quality parameters for eutrophic waters by high resolution remote sensing[D].Amsterdam:Free University, Amsterdam. 1993. 222. LEE Z P, CARDER K, PEACOCK T G, et al. Method to derive ocean absorption coefficients from remote-sensing reflectance[J]. Appl Opt, 1994, 35:453-462. ZHANG M, CARDER K, MULLER-KARGER F E, et al. Noise reduction and atmospheric correction for coastal applications of landsat thematic mapper imagery[J]. Remote Sens Environ, 1999, 9(70):167-180. 李炎,李京.基于海面-遥感器光谱反射率斜率传递现象的悬浮泥沙遥感算法[J].科学通报,1999,44(17):1 892-1 898. ROBIN M Pope, EDWARD S Fry. Absorption spectrum (380-700 nm) of pure water. Ⅱ. Integrating cavity measurements[J]. Applied Optics, 1997, 36(33):8 710-8 723. 邓孺孺,何执兼,陈晓翔,等.珠江口水域水污染遥感定量分析[J]中山大学学报,2002,3:99-103. GORDON H R, DIEGO J C. Aerosol analysis with the costal zone color scanner:a simple method for including multiple scattering effect. -
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