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REMOTE SENSING FOR LAND & RESOURCES    2017, Vol. 29 Issue (4) : 166-172     DOI: 10.6046/gtzyyg.2017.04.25
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A remote sensing study of spatio-temporal changes of ecological environment of Shandian River
CHEN Mingye1, CHEN Lei2,3, ZHOU Xun2
1. College of Forestry, Agricultural University of Hebei, Baoding 071000, China;
2. Faculty of Goographical Science, Beijing Normal University, Beijing 100875, China;
3. Global Change and Earth System Science Institute, Beijing Normal University, Beijing 100875, China
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Abstract  The development of remote sensing technology provides strong support for monitoring the dynamic changes of the ecological environment. Shandian River is the ecological barrier of Beijing, Tianjing and Hebei Province. The eco-environment of Shandian River has aroused more and more attention among people, with the global climate change and human activities. In this paper, the authors used the remote sensing images obtained from 1985 to 2015 to study the changes of eco-environment of the upstream of Shandian River. Some conclusions have been reached: in 2015, the area of forest, grassland, unused land, water and cultivated land in study area was 413.75 km2, 276.90 km2, 1 779.94 km2, 17.29 km2, and 1 583.71 km2 respectively, with the percentage being 10.16%,6.80%,43.72%,0.42% and 38.90% respectively. From 1985 to 2015, the forest area exhibited a downward trend, with the declining rate being 1.395 km2·a-1. The grass land was declined too, with the declining rate between 9.47 km2·a-1. The water remains unchanged in the past 30 years.
Keywords ZY1-02C satellite data      environmental geological problems      geological disaster investigation      remote sensing interpretation     
:  TP79  
Issue Date: 04 December 2017
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LI Haiying
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LI Haiying. A remote sensing study of spatio-temporal changes of ecological environment of Shandian River[J]. REMOTE SENSING FOR LAND & RESOURCES, 2017, 29(4): 166-172.
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https://www.gtzyyg.com/EN/10.6046/gtzyyg.2017.04.25     OR     https://www.gtzyyg.com/EN/Y2017/V29/I4/166
[1] 万本太,王文杰,崔书红,等.城市生态环境质量评价方法[J].生态学报,2009,29(3):1068-1073.
Wan B T,Wang W J,Cui S H,et al.Research on the methods of urban ecological environmental quality assessment[J].Acta Ecologica Sinica,2009,29(3):1068-1073.
[2] 王丽梅,孟范平,郑纪勇,等.黄土高原区域农业生态系统环境质量评价[J].应用生态学报,2004,15(3):425-428.
Wang L M,Meng F P,Zheng J Y,et al.Environmental quality assessment of regional agro-ecosystem in Loess Plateau[J].Chinese Journal of Applied Ecology,2004,15(3):425-428.
[3] 麻冰涓,贺 添,宋 轩.伏牛山区生态环境质量评价体系研究[J].中国水土保持,2006(2):23-25.
Ma B J,He T,Song X.Ecological environment quality evaluation system research in Funiu area[J].Soil and Water Conservation in China,2006(2):23-25.
[4] 王 斌,曹 喆,张 震.北大港湿地自然保护区生态环境质量评价[J].环境科学与管理,2008,33(2):181-184.
Wang B,Cao Z,Zhang Z.Ecological environment evaluation on Beidagang wetland nature reserve[J].Environmental Science and Management,2008,33(2):181-184.
[5] 黄华富,毋鑫海,戴文远.海岛生态脆弱区生态环境质量评价——以福建平潭岛为例[J].广西师范学院学报(自然科学版),2015,32(4):82-88.
Huang H F,Wu X H,Dai W Y.Assessment of the ecological environment quality in ecologically fragile areas:A case study of Pingtan island,Fujian Province of China[J].Journal of Guangxi Teachers Education University(Natural Science Edition),2015,32(4):82-88.
[6] 周 晨.环境遥感监测技术的应用与发展[J].环境科技,2011,24(S1):139-141,144.
Zhou C.Application and development of remote sensing technology in environmental monitoring[J].Environmental Science and Technology,2011,24(S1):139-141,144.
[7] 姚苏红,朱仲元,张圣微,等.基于SWAT模型的内蒙古闪电河流域径流模拟研究[J].干旱区资源与环境,2013,27(1):175-180.
Yao S H,Zhu Z Y,Zhang S W,et al.Using SWAT model to simulate the discharge of the river Shandianhe in Inner Mongolia[J].Journal of Arid Land Resources and Environment,2013,27(1):175-180.
[8] 李正国.河北坝上闪电河湿地公园植物区系研究[J].河北林业科技,2014(2):27-29.
Li Z G.Flora research in Shandian River wetland park[J].Journal of Hebei Forestry Science and Technology,2014(2):27-29.
[9] 于 涛,魏胜利,张克阳.闪电河水库下游地表水资源量供需分析[J].现代农业科技,2012(13):230,232.
Yu T,Wei S L,Zhang K Y.Analysis of surface water resources supply and demand in the downstream of Shandian River reservoir[J].Modern Agricultural Science and Technology,2012(13):230,232.
[10] 李凤玲,朝伦巴根,高瑞忠.滦河内蒙段闪电河子流域地下水资源开采潜力评价[J].干旱地区农业研究,2008,26(6):230-235,245.
Li F L,Chaolun B G,Gao R Z.Assessment of groundwater resources in Shandianhe River basin of the Inner Mogolian section of Luanhe River[J].Agricultural Research in the Arid Areas,2008,26(6):230-235,245.
[11] 盛学斌,孙建中,戴昭华.冀北高原闪电河流域上游不同介质体中总P分布特征[J].应用生态学报,1996,7(1):23-26.
Sheng X B,Sun J Z,Dai Z H.Distribution characteristics of phosphorus in different media at upper reaches of Shandian River basin of north Hebei Plateau[J].Chinese Journal of Applied Ecology,1996,7(1):23-26.
[12] 池宏康,周广胜,许振柱,等.表观反射率及其在植被遥感中的应用[J].植物生态学报,2005,29(1):74-80.
Chi H K,Zhou G S,Xu Z Z,et al.Apparent reflectance and its applications in vegetation remote sensing[J].Acta Phytoecologica Sinica,2005,29(1):74-80.
[13] 范明祥.河北省三北防护林体系建设情况的调查[J].防护林科技,1998,(4):70-73.
Fan M X.Investigation on the Three North Shelterbelt program in Hebei Province[J].Protection Forest Science and Technology,1998,(4):70-73.
[14] 朱金兆,周心澄,胡建忠.对"三北"防护林体系工程的思考与展望[J].自然资源学报,2004,19(1):79-85.
Zhu J Z,Zhou X C,Hu J Z.Thoughts and views about the Three North Shelterbelt program[J].Journal of Natural Resources,2004,19(1):79-85.
[15] 陈英洲.钮茂生在全省建设首都绿色屏障工作会议上强调扎实推进防沙治沙加快建设绿色屏障[J].河北林业,2000(4):4-5.
Chen Y Z.Niu Maosheng stressed the importance of the green barrier construction work in the whole province in green barrier construction work conference[J].Forestry in Hebei,2000(4):4-5.
[16] 南秋菊,马 礼,甘超华.坝上地区农业产业结构优化的灰色关联分析[J].农业系统科学与综合研究,2005,21(2):100-104.
Nan Q J,Ma L,Gan C H.Application of gray correlation analysis on regional agriculture leading industry adjustment strategy of Guyuan County in Bashang Plateau[J].System Sciences and Comprehensive Studies in Agriculture,2005,21(2):100-104.
[17] 张伟科,封志明,杨艳昭,等.北方农牧交错带土地利用/覆被变化分析——以西辽河流域为例[J].资源科学,2010,32(3):573-579.
Zhang W K,Feng Z M,Yang Y Z,et al.Land use and cover change over the farming-pastoral zone of northern China:A case study on the Xiliaohe watershed[J].Resources Science,2010,32(3):573-579.
[18] 马 礼,唐 毅,牛东宇.北方农牧交错带耕地面积变化驱动力研究——以沽源县近15年为例[J].人文地理,2008,23(5):17-21.
Ma L,Tang Y,Niu D Y.Driving forces of cultivated land change in transitional area between pastoral and agricultural:A case of cultivated land change of Guyuan County in the last 15 years[J].Human Geography,2008,23(5):17-21.
[19] 贾科利.基于遥感、GIS的陕北农牧交错带土地利用与生态环境效应研究[D].杨凌:西北农林科技大学,2007.
Jia K L.A Study on the Land Use and Eco-environmental Effects Based on the RS and GIS in the Agriculture and Pasturage Interlaced Zone of Northern Shaanxi[D].Yangling:Northwest Agriculture and Forestry University,2007.
[20] 徐 超,詹金瑞,潘耀忠,等.基于多时相TM图像的耕地信息提取[J].国土资源遥感,2013,25(4):166-173.doi:10.6046/gtzyyg.2013.04.27.
Xu C,Zhan J R,Pan Y Z,et al.Extraction of cropland information based on multi-temporal TM images[J].Remote Sensing for Land and Resources,2013,25(4):166-173.doi:10.6046/gtzyyg.2013.04.27.
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