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龙舌兰日出shine

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先后主持国家自然科学基金项目3项、国家863重点项目课题1项、863项目子课题1项;主要负责国土资源大调查项目、国家行业公益项目等项目。共发表学术论文100余篇,其中SCI论文20余篇、计算机与技术学科类EI论文30余篇、一级学报论文10余篇;参与制定国家行业标准1部;申请国家发明专利17项,其中已授权9项(其中,第一发明人3项);登记软件著作权7项。先后获国家科学技术进步奖二等奖(2014,4/15),地理信息科技进步奖一等奖(国家测绘地理信息局,2013,4/10)、测绘科技进步奖一等奖(国家测绘局,2009,3/9)、“十一五”测绘地理信息优秀青年贡献奖(国家测绘地理信息局,2011)、测绘地理信息教学成果奖二等奖(国家测绘地理信息局,3/7)等奖项。2012年入选教育部“新世纪优秀人才支持计划”。以第一作者、通讯作者发表SCI论文18篇1. . Liu*, C. Sun, . Yang, . Zhou, . Zhan, . Cheng. 2015. Automatic extraction of offshore platforms using time-series Landsat-8 Operational Land Imager data. Remote sensing of environment. . *, . Zhou, . Zhao, . Zhan, K. Yang, . Li. 2015. Automated extraction of tidal creeks from airborne laser altimetry data. Journal of Hydrology 527, 1006-10203. *, . Chen, . Cheng, C. Sun, . Zhao, Y Pu. 2014. Spatiotemporal dynamics of the urban sprawl in a typical urban agglomeration: a case study on Southern Jiangsu, China (1983–2007). Frontiers of Earth Science 8 (4), 490-5044. *, . Li, L. Mao, L. Cheng, . Chen. 2013. Seasonal pattern of tidal-flat topography along the Jiangsu middle coast, China, using HJ-1 optical images. Wetlands 33 (5), 871-8865. *, . Li, . Zhou, K. Yang, L. Mao. 2013. Quantitative Analysis of the Waterline Method for Topographical Mapping of Tidal Flats: A Case Study in the Dongsha Sandbank, China. Remote Sensing 5 (11), 6138-61586. *, . Li, L. Cheng, . Li, . Chen. 2012. Topographic mapping of offshore sandbank tidal flats using the waterline detection method: A case study on the Dongsha Sandbank of Jiangsu Radial Tidal Sand Ridges, China. Marine Geodesy 35 (4), 362-3787. . Liu*, . Li, L. Mao, L. Cheng, . Li. 2012. Toward a method of constructing tidal flat digital elevation models with MODIS and medium-resolution satellite images. Journal of Coastal Research 29 (2), 438-4488. . Liu*, . Li, L. Chen, . Li, . Su. 2010. A DEM Inversion Method for Inter-tidal Zone Based on MODIS Dataset: A Case Study in the Dongsha Sandbank of Jiangsu Radial Tidal Sand-Ridges, China. China Ocean Engineering 24 (4), 735-7489. . Liu*, . Li, L. Mao, . Xu, S. Huang. 2006. Review of remotely sensed imagery classification patterns based on object-oriented image analysis. Chinese Geographical Science 16 (3), 282-28810. . Duan, . Liu*, . Li, et al. Reefs survey of the Nansha Islands based on Landsat 8 OLI images. Acta Oceanologica Sinica. . . Zhang, . Liu*, . Yang, C. Sun, . Li. Erosion and deposition within Poyang Lake: Evidence from a decade of satellite data. Journal of great lakes research. Accept. . C. Sun, . Liu*, . Zhao, . Zhou, . Yang, . Li. 2016. Classification mapping and species identification of salt marshes based on a short-time interval NDVI time-series from HJ-1 optical imagery. International Journal of Applied Earth Observation and Geoinformation 45, 27-4113. . Yang, . Liu*, . Zhou, . Zhang, . Zhan, C. Sun, . Duan. 2015. Landsat 8 OLI image based terrestrial water extraction from heterogeneous backgrounds using a reflectance homogenization approach. Remote Sensing of Environment 171, 14-3214. . Zhao, . Liu*, . Li. 2015. Analysis of Jiangsu Mudflats Reclamation from 1974 to 2012 using Remote Sensing. China Ocean Engineering 29 (1), 143-15415. . Yang, . Liu*, . Zhou, . Li, C. Sun. 2015. Robustness assessment of urban rail transit based on complex network theory: a case study of the Beijing Subway. Safety science 79, 149-16216. K. Yang, . Li, . Liu*, L. Cheng, . Duan, . Zhou. 2014. River delineation from remotely sensed imagery using a multi-scale classification approach. IEEE Selected Topics in Applied Earth Observations and Remote . . Wang, . Li, . Liu*, . Zhang, W. Zou, L. Cheng. 2014. Safety assessment of shipping routes in the South China Sea based on the fuzzy analytic hierarchy process. Safety science 62, 46-5718. . Wang, . Liu*, . Li, L. Tan. 2014. The reconstruction of abnormal segments in HJ-1A/B NDVI time series using MODIS: a statistical method. International Journal of Remote Sensing 35 (23), 7991-8007以第一作者、通讯作者发表中文核心期刊论文34篇1. 孙超, 刘永学*, 李满春, 赵赛帅, 周旻曦. 近25a来江苏中部沿海盐沼分布时空演变及围垦影响分析. 自然资源学报. 2015, 30(9):. 周旻曦, 刘永学*, 李满春, 等. 多目标珊瑚岛礁地貌遥感信息提取方法——以西沙永乐环礁为例. 地理研究, 2015, 34(4): . 王加胜, 李满春, 刘永学*, 等. 南沙群岛历史事件时空演化的可视化表达. 地理科学, 2015, 35(5): . 蒋洁, 刘永学*, 钟礼山, 李满春, 孙超. SAR影像时间序列支持下的互花米草盐沼提取——以江苏盐城东部沿海为例. 测绘科学技术学报. 2015, 32(3):. 邹伟, 刘永学*, 李满春, 等. 基于 WebGIS 的南海历史地理情势分析系统设计与实现. 热带地理, 2015, 35(2): . 赵赛帅, 刘永学*, 李满春, 张荷霞, 孙超. 基于AHP-变异系数法的越占南沙岛礁战略价值评价. 海洋科学. 2015, 39(6):. 蒋洁, 刘永学*, 李满春, 等. 南海岛礁风能资源及风力发电评价——基于 QuikSCAT 风场数据与 Landsat ETM+ 影像. 资源科学, 2014, 36(1): . 邹伟, 刘永学*, 李满春, 等. 网络新闻中黄岩岛争端事件舆情研究——以新浪网“中菲黄岩岛争端”专题为例. 现代图书情报技术, 2014, 30(2): . 邹伟, 刘永学*, 李满春, 等. 南海历史地理争端空间分布与关联性研究. 地球信息科学学报, 2014, 16(2): . 孙超, 刘永学*, 李满春, 等. 近 35 年来热带风暴对我国南海岛礁的影响分析. 国土资源遥感, 2014, 26(3): . 蒋洁, 刘永学*, 李满春, 等. 基于 ENVISAT ASAR 影像与 QuikSCAT 风场数据的近海风能资源评价——以香港东南海域为例. 地理与地理信息科学, 2014, 30(2).12. 张荷霞, 刘永学*, 李满春, 等. 基于 AHP 和 EWCM 的部分南沙岛礁战略价值模糊综合评价. 海洋通报, 2014, 4: . 汪业成, 刘永学*, 李满春, 等. 基于场强模型的南沙岛礁战略地位评价. 地理研究, 2013, 32(12).14. 张荷霞, 刘永学*, 李满春, 等. 南海中南部海域油气资源开发战略价值评价. 资源科学, 2013, 35(11).15. 赵赛帅, 刘永学*, 李满春, 等. 基于 AHP-变异系数法的越占南沙岛礁战略价值评价. 海洋科学, 2015, 39(6): . 王加胜, 刘永学*, 李满春, 等. 基于 ENVISAT ASAR 的海洋钻井平台遥感检测方法. 地理研究, 2013, 32(11).17. 成王玉, 刘永学*,李满春, 等. 基于 AHP 与模糊综合评价方法的南沙东部岛礁战略价值评价. 热带地理, 2013, 33(4): . 张荷霞, 刘永学*,李满春, 等. 基于 JASON-1 资料的南海海域海面风浪场特征分析. 地理与地理信息科学, 2013, 29(5).19. 洪武扬, 刘永学*, 李满春, 刘敏, 童礼华. 土地利用总体规划实施评估方法研究 . 国土资源科技管理, 2013, 30(5):. 杨康, 李满春, 刘永学, 程亮, 陈焱明.基于累积相似度表面的空间权重矩阵构建方法. 测绘学报, 2012, 41(2):259-265,27221. 江冲亚, 李满春, 刘永学. 海岸带水体遥感信息全自动提取方法. 测绘学报. 2011, 40(3): . 杨康, 李满春, 刘永学, 程亮, 江冲亚. 遥感影像道路的多点同时快速行进提取方法.遥感技术与应用. 2011, 26(3):. 胡炜,刘永学*,李满春,陈洁丽,毛鹍. 基于局部相关分析法的ETM+影像修复方法研究. 地理与地理信息科学.2011(5):. 江冲亚, 李满春, 李飞雪, 李雪, 刘永学. 地理信息系统(GIS)科学体验区建设. 地理信息世界. 2010, 4(2):. 陈洁丽,刘永学*,李满春,申成磊,胡炜,蔡文婷.一种基于遥感数据快速提取居民地信息的新方法.地理与地理信息科学. 2010(5):. 陈洁丽,刘永学*,李满春,申成磊,张栋,蔡文婷.基于归一化指数分析的居民地遥感信息提取.测绘科学.2010(2): . 刘永学,李满春,刘国洪. 地理信息系统安全初探.遥感信息.2007(2):. 刘永学,李满春,毛亮.基于边缘的多光谱遥感图像分割.遥感学报.2006,10(3):. 刘永学,李满春,高月明.基于角色的土地利用规划管理信息系统访问控制模型设计与实现.地理与地理信息科学,2006.(2):. 刘永学,张忍顺,李满春.应用卫星影像系列海图叠合法分析沙洲动态变化——以江苏东沙为例.地理科学.2004, 24(2):199-204.(学报)31. 刘永学,张忍顺,李满春.质心分析法在小沙洲动态演化分析中的应用——以江苏辐射沙洲亮月沙为例.海洋通报.2004, 23(1):. 刘永学,张忍顺,李满春.江苏淤泥质潮滩遥感影像特征与信息提取方法研究.遥感信息.2004,(1):. 刘永学,李满春,张忍顺.江苏辐射沙洲水边线自动提取方法研究.海洋科学.2004, (6):. 刘永学,张忍顺,李满春.江苏淤泥质潮滩地物信息遥感提取方法研究.海洋科学进展.2004,22(2).. 刘永学,张忍顺,李满春.江苏沿海互花米草盐沼动态变化及影响因素研究.湿地科学. 2004, 2(2).. 刘永学,张忍顺等.粒径趋势分析法在细颗粒潮坪上的应用.南京师大学报:自然科学版.2001, 24(1):105-109,. 刘永学,陈君等.江苏海岸盐沼植被演替的遥感图像分析.农村生态环境.2001, 17(3):39-41.

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小年糕lc

中国杭州西溪第二届湿地论坛论文摘要选编7 发布:西溪湿地媒体:原创 作者:刘想 摘录 2008-7-7 16:24:11Wetland restoration and biodiversity conservationof Lake DianchiYang Junxing Wang Li Chen Xiaoyong Cui Guihua Shu shushing Du LinaKunming Institute of Zoology, Chinese Academy of SciencesLake Dianchi was formed in million years ago. The lake is now situated at the watershed among Changjiang River, Honghe River and Zhujiang River. Dianchi is a hotspot for biodiversity because of its richness in aquatic biodiversity, unique origination and special plateau aquatic ecosystem. Since 1970s, freshwater biodiversity declined sharply as the result of water quality degradation, habitat destruction as well as the invasion of alien species. In order to save the lake biodiversity of global importance, Kunming Institute of Zoology was granted by GEF in 2003 to restore the lake wetland and pilot sites were set up for the wetland restoration activities, representing three different types of wetlands. Macrophytes, mollusks and fishes were given a special priority in the restoration activities. Among the three types of organisms, those species with aesthetics, endemism and economic values are particularly favored. In the pilot site Baiyukou, emergent macrophytes were planted as well as some submerged ones. An exciting result was that the famous submerged macrophyte Ottelia acuminata replanted in Baiyukou site seemed growing very well. Some indigenous bivalve Anodonta were cultivated in the site. In the other two pilot sites, Xialiangwang, the submerged macrophytes are designed as the major plants for the restoration from field surveys and monitoring throughout the basin revealed some relict biodiversity spots, Dragon springs in Buddhism temples. These refugee springs inhabited some endemic species that were once supposed to be extinct. For these relict populations of endemic species, both in situs and ex situs conservations were undertaken. An ex situs conservation base with 15000m2 was set up for cultivation and breeding of these relict endemic fishes and macrophytes. These refugee springs were also set up as protected reserves for in situs played a key role in protects the relict population of the endemic species of Dianchi. However, some religion releasing of life introduced alien species to these refugee spings inhabited endemic species. In order to improve the behavior of religion life-releasing, our research team worked together with Buddhism association. The first out coming of the cooperation is publication of the book Buddhism & Biodiversity Conservation co-written by famous Buddhism and biologists in the research team. The book recognized two types of life releasing activities from bio-religion viewpoint, releasing indigenous creatures and alien creatures. The first type of activity was encouraged by the Buddhism, releasing alien animals was rejected. The second yielding of the science-Buddhism cooperation was a series of awareness educations of Buddhists. In the Buddhism ceremonies our research team always organized biodiversity lectures and displaying, encouraging the Buddhists and local people to protect endemic species and avoiding releasing alien creatures to surrounding environments. At the same time, the research team transferred also knowledge to local villagers, encouraging them to participate in wetland conservation and monitoring of biodiversity and water quality was carried out in the pilot sites, Lake Dianchi, the upstream running to Lake Dianchi and adjacent springs. Not only is it necessary for measuring the outcome of restoration activity, but also it could help to guide further restoration of wetland. Bio-monitoring is also expected to help predicting and preventing the invasion of alien is the key of any wetland restoration and management. Wetland Park is supposed to be one of the most sustainable ways. It could maximize the function of wetland ecosystem,ensuring the monitoring of biodiversity and accessing outcomes of wetland restoration. The project team is pushing the pilot sites to be further built up as wetland words: Dianchi Wetland; Wetland restoration and biodiversity conservation滇池湿地恢复示范研究杨君兴中科院昆明动物研究所滇池的污染和环境变化受到了国内外的广泛关注与高度重视。2003年,中国科学院昆明动物研究所申请到全球环境基金(GEF)万美元主要采用生物手段开展滇池湿地恢复工作。通过在三个湿地修复示范点内养殖土著底栖生物(主要是双壳类),鱼类,大型水生植物等水生生物,达到恢复滇池土著种及其生境,改善水质,恢复滇池淡水水生生物多样性的目的。双壳类滤食蓝藻,还可养殖淡水珍珠;养殖土著鱼类可以改善水质,给渔民带来巨大商业利益;大型水生植物抑制蓝藻,吸收氮磷,为鱼类提供食物栖息地,还可以作为经济作物。选种指导原则:土著,经济,美观。土著物种安全,不会给环境带来负面影响;物种的经济性使得恢复工作能够可持续开展,减少了政府的资金投入;物种的美观性可提供美丽风景。此外,环境的美化和生物多样性的恢复会吸引更多越冬水鸟来滇池,增加生物多样性。结合当地特有的文化和历史背景,建立大型湿地公园,既修复滇池,又增加当地居民收入。除湿地恢复与管理工作外,每年进行三次大型生物多样性监测调查。对滇池管理局和昆明市环保局等政府相关单位开展能力建设培训,增强和改进政府对滇池的管理,控制污染。结合公众教育,提高公众对滇池的环境保护意识。综合多方面手段,修复滇池,重现“高原明珠”的光辉。关键词:滇池湿地 恢复研究

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藏青妹妹

湿地用处 湿地定义 湿地环保措施 湿地功能 结尾

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