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嘉陵江重庆主城区段水域中氮和磷的形态特征分析
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作者 邱会东 贾云 +1 位作者 赵鹏林 罗国兵 《重庆科技学院学报:自然科学版》 CAS
在对嘉陵江(重庆主城区段)环境背景分析的基础上,通过实地考察取样分析了嘉陵江重庆主城区段水中氮、磷的形态组成及特征,应用分光光度法对嘉陵江水中的正磷酸盐、总磷、氨氮、硝态氮、有机氮和总氮进行了系统分析,实验结果表明:嘉陵江... 在对嘉陵江(重庆主城区段)环境背景分析的基础上,通过实地考察取样分析了嘉陵江重庆主城区段水中氮、磷的形态组成及特征,应用分光光度法对嘉陵江水中的正磷酸盐、总磷、氨氮、硝态氮、有机氮和总氮进行了系统分析,实验结果表明:嘉陵江水中无机磷和有机氮的含量都高. 展开更多
关键词 嘉陵江水域 氮、磷盐形态 光度法
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A New Treatment of Depression for Drainage Network Extraction Based on DEM 被引量:4
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作者 WANG Yan PENG Hong +3 位作者 CUI Peng ZHANG Wanshun QIAO Fei CHEN Cai'er 《Journal of Mountain Science》 SCIE CSCD 2009年第4期311-319,共9页
Depressions in landscapes function as buffers for water and sediment. A landscape with depressions has less runoff, less erosion and more sedimentation than that without depressions. Sinks in digital elevation models ... Depressions in landscapes function as buffers for water and sediment. A landscape with depressions has less runoff, less erosion and more sedimentation than that without depressions. Sinks in digital elevation models (DEMs) can be considered the real features that represent depressions in actual landscapes or spurious features that result from errors in DEM creation. In many hydrological and erosion models, all sinks are considered as spurious features and, as a result, these models do not deal with the sinks that represent real depressions. Consequently, the surface runoff and erosion are overestimated due to removing the depressions. Aiming at this problem, this paper presents a new method, which deal with the sinks that represent real depressions. The drainage network is extracted without changing the original DEM. The method includes four steps: detecting pits, detecting depressions, merging depressions, and extracting drainage network. Because the elevations of grid cells are not changed, the method can also avoid producing new fiat areas, which are always produced by the conventional filling methods. The proposed method was applied to the Xihanshui River basin, the upper reach of the Jialingjiang River basin, China, to automatically extract the drainage network based on DEM. The extracted drainage network agrees well with the reality and can be used for further hydrologic analysis and erosion estimation. 展开更多
关键词 Drainage network extraction Depression processing Digital elevation model Wooden barrel effect Xihanshui River basin.
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