Acta Scientiarum Naturalium Universitatis Pekinensis ›› 2017, Vol. 53 ›› Issue (3): 563-572.DOI: 10.13209/j.0479-8023.2016.124
• Orginal Article • Previous Articles Next Articles
Fei PENG1, Wenjie FAN1(), Xiru XU1, Xing LIU2
Received:
2016-01-21
Revised:
2016-06-16
Online:
2017-05-20
Published:
2017-05-20
基金资助:
Fei PENG, Wenjie FAN, Xiru XU, Xing LIU. Analysis on Temporal-Spatial Change of Vegetation Coverage in Hulunbuir Steppe (2000‒2014)[J]. Acta Scientiarum Naturalium Universitatis Pekinensis, 2017, 53(3): 563-572.
彭飞, 范闻捷, 徐希孺, 刘星. 2000—2014年呼伦贝尔草原植被覆盖度时空变化分析[J]. 北京大学学报自然科学版, 2017, 53(3): 563-572.
Add to citation manager EndNote|Ris|BibTeX
URL: https://xbna.pku.edu.cn/EN/10.13209/j.0479-8023.2016.124
区域 | 比例/% | |||
---|---|---|---|---|
低覆盖度 | 较低覆盖度 | 中覆盖度 | 高覆盖度 | |
新巴尔虎右旗 | 29 | 58 | 11 | 2 |
新巴尔虎左旗 | 16 | 58 | 18 | 8 |
陈巴尔虎旗 | 8 | 25 | 54 | 13 |
鄂温克族自治旗 | 5 | 13 | 42 | 40 |
Table 1 Area percentages of the different FVC in 2014
区域 | 比例/% | |||
---|---|---|---|---|
低覆盖度 | 较低覆盖度 | 中覆盖度 | 高覆盖度 | |
新巴尔虎右旗 | 29 | 58 | 11 | 2 |
新巴尔虎左旗 | 16 | 58 | 18 | 8 |
陈巴尔虎旗 | 8 | 25 | 54 | 13 |
鄂温克族自治旗 | 5 | 13 | 42 | 40 |
年份 | 平均降雨量与覆盖度的相关系数 | 平均温度与覆盖度的相关系数 | ||||||
---|---|---|---|---|---|---|---|---|
新巴尔虎右旗 | 新巴尔虎左旗 | 陈巴尔虎旗 | 鄂温克族自治旗 | 新巴尔虎右旗 | 新巴尔虎左旗 | 陈巴尔虎旗 | 鄂温克族自治旗 | |
2000 | 0.541 | 0.365 | 0.331 | 0.451 | 0.411 | 0.202 | 0.305 | 0.340 |
2001 | 0.674 | 0.401 | 0.387 | 0.473 | 0.408 | 0.287 | 0.361 | 0.295 |
2002 | 0.506 | 0.370 | 0.401 | 0.355 | 0.503 | 0.310 | 0.279 | 0.231 |
2003 | 0.683 | 0.450 | 0.296 | 0.351 | 0.458 | 0.299 | 0.265 | 0.220 |
2004 | 0.506 | 0.377 | 0.244 | 0.299 | 0.674 | 0.221 | 0.421 | 0.300 |
2005 | 0.721 | 0.395 | 0.253 | 0.386 | 0.395 | 0.205 | 0.233 | 0.288 |
2006 | 0.711 | 0.561 | 0.275 | 0.297 | 0.408 | 0.298 | 0.260 | 0.254 |
2007 | 0.663 | 0.522 | 0.285 | 0.312 | 0.388 | 0.277 | 0.300 | 0.241 |
2008 | 0.592 | 0.377 | 0.322 | 0.341 | 0.421 | 0.250 | 0.277 | 0.412 |
2009 | 0.601 | 0.291 | 0.297 | 0.376 | 0.450 | 0.243 | 0.276 | 0.387 |
2010 | 0.743 | 0.357 | 0.368 | 0.294 | 0.389 | 0.300 | 0.340 | 0.372 |
2011 | 0.495 | 0.478 | 0.377 | 0.410 | 0.635 | 0.281 | 0.298 | 0.354 |
2012 | 0.459 | 0.441 | 0.291 | 0.386 | 0.650 | 0.265 | 0.310 | 0.440 |
2013 | 0.683 | 0.399 | 0.394 | 0.391 | 0.458 | 0.233 | 0.290 | 0.410 |
2014 | 0.621 | 0.359 | 0.351 | 0.401 | 0.481 | 0.241 | 0.287 | 0.388 |
Table 2 Correlation coefficient between FVC and mean-climatic figures over 15 years
年份 | 平均降雨量与覆盖度的相关系数 | 平均温度与覆盖度的相关系数 | ||||||
---|---|---|---|---|---|---|---|---|
新巴尔虎右旗 | 新巴尔虎左旗 | 陈巴尔虎旗 | 鄂温克族自治旗 | 新巴尔虎右旗 | 新巴尔虎左旗 | 陈巴尔虎旗 | 鄂温克族自治旗 | |
2000 | 0.541 | 0.365 | 0.331 | 0.451 | 0.411 | 0.202 | 0.305 | 0.340 |
2001 | 0.674 | 0.401 | 0.387 | 0.473 | 0.408 | 0.287 | 0.361 | 0.295 |
2002 | 0.506 | 0.370 | 0.401 | 0.355 | 0.503 | 0.310 | 0.279 | 0.231 |
2003 | 0.683 | 0.450 | 0.296 | 0.351 | 0.458 | 0.299 | 0.265 | 0.220 |
2004 | 0.506 | 0.377 | 0.244 | 0.299 | 0.674 | 0.221 | 0.421 | 0.300 |
2005 | 0.721 | 0.395 | 0.253 | 0.386 | 0.395 | 0.205 | 0.233 | 0.288 |
2006 | 0.711 | 0.561 | 0.275 | 0.297 | 0.408 | 0.298 | 0.260 | 0.254 |
2007 | 0.663 | 0.522 | 0.285 | 0.312 | 0.388 | 0.277 | 0.300 | 0.241 |
2008 | 0.592 | 0.377 | 0.322 | 0.341 | 0.421 | 0.250 | 0.277 | 0.412 |
2009 | 0.601 | 0.291 | 0.297 | 0.376 | 0.450 | 0.243 | 0.276 | 0.387 |
2010 | 0.743 | 0.357 | 0.368 | 0.294 | 0.389 | 0.300 | 0.340 | 0.372 |
2011 | 0.495 | 0.478 | 0.377 | 0.410 | 0.635 | 0.281 | 0.298 | 0.354 |
2012 | 0.459 | 0.441 | 0.291 | 0.386 | 0.650 | 0.265 | 0.310 | 0.440 |
2013 | 0.683 | 0.399 | 0.394 | 0.391 | 0.458 | 0.233 | 0.290 | 0.410 |
2014 | 0.621 | 0.359 | 0.351 | 0.401 | 0.481 | 0.241 | 0.287 | 0.388 |
区域 | 年份 | 月份 | 相关系数 | |
---|---|---|---|---|
气温 | 降水 | |||
新巴尔虎左旗 | 2001 | 4 | 0.70 | 0.19 |
6 | 0.54 | 0.49 | ||
9 | 0.33 | 0.75 | ||
鄂温克族自治旗 | 2008 | 3 | 0.66 | 0.28 |
8 | 0.21 | 0.69 | ||
10 | 0.78 | 0.13 | ||
2010 | 4 | 0.61 | 0.11 | |
6 | 0.55 | 0.57 | ||
8 | 0.10 | 0.76 | ||
陈巴尔虎旗 | 2008 | 5 | 0.63 | 0.60 |
7 | 0.11 | 0.75 | ||
8 | 0.17 | 0.70 | ||
10 | 0.91 | 0.05 | ||
2013 | 5 | 0.77 | 0.09 | |
7 | 0.15 | 0.80 | ||
8 | 0.08 | 0.72 | ||
新巴尔虎右旗 | 2001 | 4 | 0.57 | 0.17 |
8 | 0.22 | 0.61 | ||
9 | 0.56 | 0.41 |
Table 3 Correlation coefficient between abnormal changed points and climatic figures
区域 | 年份 | 月份 | 相关系数 | |
---|---|---|---|---|
气温 | 降水 | |||
新巴尔虎左旗 | 2001 | 4 | 0.70 | 0.19 |
6 | 0.54 | 0.49 | ||
9 | 0.33 | 0.75 | ||
鄂温克族自治旗 | 2008 | 3 | 0.66 | 0.28 |
8 | 0.21 | 0.69 | ||
10 | 0.78 | 0.13 | ||
2010 | 4 | 0.61 | 0.11 | |
6 | 0.55 | 0.57 | ||
8 | 0.10 | 0.76 | ||
陈巴尔虎旗 | 2008 | 5 | 0.63 | 0.60 |
7 | 0.11 | 0.75 | ||
8 | 0.17 | 0.70 | ||
10 | 0.91 | 0.05 | ||
2013 | 5 | 0.77 | 0.09 | |
7 | 0.15 | 0.80 | ||
8 | 0.08 | 0.72 | ||
新巴尔虎右旗 | 2001 | 4 | 0.57 | 0.17 |
8 | 0.22 | 0.61 | ||
9 | 0.56 | 0.41 |
[1] | Gitelson A A, Kaufman Y J, Stark R, et al. Novel algorithms for remote estimation of vegetation frac-tion. Remote Sensing of Environment, 2002, 80(l): 76‒87 |
[2] | 杨久春, 张树文. 近50年呼伦湖水系草地退化时空过程及成因分析. 草地学报, 2009, 31(3): 1673‒ 5021 |
[3] | 张宏斌, 杨桂霞, 吴文斌, 等. 呼伦贝尔草原MODIS NDVI 的时空变化特征. 应用生态学报, 2009, 20(11): 2743‒2749 |
[4] | 冯威丁, 肖鹏峰, 冯学智, 等. 呼伦贝尔草原典型区1989—2010 年草原覆盖变化遥感研究. 遥感信息, 2014, 29(1): 61‒67 |
[5] | 周伟, 李建龙, 穆少杰, 等. 1982—2010 年中国草原植被覆盖度的时空动态及其对气候变化的响应. 地理学报, 2014, 69(1): 15‒30 |
[6] | 陈晋, 陈云浩, 何春阳, 等. 基于土地覆盖分类的植被覆盖率估算亚像元模型与应用. 遥感学报, 2001, 5(6): 416‒422 |
[7] | 陈云浩, 李晓兵, 史培军, 等. 北京海淀区植被覆盖的遥感动态研究. 植物生态学报, 2001, 25(5): 588‒593 |
[8] | 徐希孺. 遥感物理. 北京:北京大学出版社, 2005: 53‒56, 75‒83 |
[9] | 马玉玲, 余卫红, 方修琦. 呼伦贝尔草原对全球变暖的响应. 干旱区地理, 2004, 27(1): 29‒34 |
[10] | 张戈丽, 徐兴良, 周才平, 等. 近30年来呼伦贝尔地区草原植被变化对气候变化的响应. 地理学报, 2012, 66(1): 47‒58 |
[11] | 曲学斌, 吴昊. 呼伦贝尔市53年气候变化特征分析. 水土保持研究, 2014, 21(1): 178‒183 |
[12] | 殷贺, 李正国, 王仰麟, 等. 基于时间序列植被特征的内蒙古荒漠化评价. 地理学报, 2011, 66(5): 653‒661 |
[13] | 王娟, 李宝林, 余万里, 等. 近30年内蒙古自治区植被变化趋势及影响因素分析. 干旱区资源与环境, 2012, 26(2): 132‒137 |
[14] | 王军邦, 陶健, 李贵才, 等. 内蒙古中部MODIS植被动态监测分析. 地球信息科学学报, 2010, 12(6): 835‒842 |
[15] | 丁勇, 萨茹拉, 刘朋涛, 等. 近40年内蒙古区域温度和降雨量变化的时空格局. 干旱区资源与环境, 2014, 28(4): 96‒102 |
[16] | Gutman G, Ignatov A. The derivation of the green vegetation fraction from NOAA/AVHRR data for use in numerical weather prediction models. International Journal of Remote Sensing, 1998, 19(8): 1533‒1543 |
[17] | Kobayashi H, Dye D G. Atmospheric conditions for monitoring the long-term vegetation dynamics in the Amazon using normalized difference vegetation index. Remote Sensing of Environment, 2005, 97(4): 519‒525 |
[18] | Hirano Y, Yasuoka Y, Ichinose T. Urban climate simulation by incorporating satellite-derived vegeta-tion cover distribution into a mesoscale meteorolo-gical model. Theoretical and Applied Climatology, 2004, 79: 175‒184 |
[19] | Pettorelli N, Vik J O, Mysterud A, et al. Using the satellite-derived NDVI to assess ecological responses to environmental change. Trends in Ecology & Evolution, 2005, 20(9): 503‒510 |
[20] | Locke D H, King K L, Svendsen E S, et al.Urban environmental stewardship and changes in vegetative cover and building footprint in New York City neighborhoods (2000-2010). Journal of Environ-mental Studies & Sciences, 2014, 4(3): 250-262 |
[21] | Romolini M, Grove J M, Locke D H.Assessing and comparing relationships between urban environmental stewardship networks and land cover in Baltimore and Seattle. Landscape Urban Plan, 2013, 120: 190-207 |
[22] | 穆少杰, 李建龙, 周伟, 等. 2001—2010 年内蒙古植被覆盖度时空变化特征. 2012, 67(9): 1255‒1268 |
[23] | Savitzky A, Golay M J E. Smoothing and diffe-rentiation of data by simplified least squares proce-dures. Analytical Chemistry, 1964, 36(8): 1627‒1639 |
[24] | Assimakopoulos V. A successive filtering technique for identifying long-term trends. Journal of Forecas-ting, 2006, 14(1): 35‒43 |
[25] | Jamali S, Jönsson P, Eklundh L, et al. Detecting changes in vegetation trends using time series segmentation. Remote Sensing of Environment, 2015, 156: 182‒195 |
[1] | BAO Tiezhao, NING Jieyuan. Array-Based Double Difference Virtual Deep Seismic Sounding Method and Its Application [J]. Acta Scientiarum Naturalium Universitatis Pekinensis, 2022, 58(4): 615-625. |
[2] | ZHANG Yang, XIAN Huiting, ZHAO Zhijie. Real-Time River Water Quality Prediction Model Based on Spatial Correlation and Neural Network Model [J]. Acta Scientiarum Naturalium Universitatis Pekinensis, 2022, 58(2): 337-344. |
[3] | XIE Fei, AN Shengpei, ZHU Chenghong, LIU Jiahui, HU Tianyue. Dimensionality Reduced Virtual Event Method to Suppress Internal Multiples for Land Seismic Data [J]. Acta Scientiarum Naturalium Universitatis Pekinensis, 2021, 57(6): 1101-1107. |
[4] | LIAO Cong, WU Lun, CAI Heng, CHEN Yueyi, TIAN Yuan. Spatial Distribution and Influencing Factors of Unsafe Charging for Electric Bicycles in Urban Areas [J]. Acta Scientiarum Naturalium Universitatis Pekinensis, 2021, 57(4): 671-678. |
[5] | ZHANG Xinyue, FENG Yuhao, ZENG Hui, TANG Zhiyao. Change of NDVI during Growing Season and Its Relationship with Climate in North China and the Adjacent Areas from 1982 to 2014 [J]. Acta Scientiarum Naturalium Universitatis Pekinensis, 2021, 57(1): 153-161. |
[6] | TIAN Yuan, WANG Weitao, LI Li, YU Changqing, ZHANG Haiming. A Synchronizing Method for Dense Seismic Array Based on Ambient Noise Correlation Function [J]. Acta Scientiarum Naturalium Universitatis Pekinensis, 2020, 56(4): 638-648. |
[7] | ZHAI Shang, YU Zhichao, TAN Yuyang, HUANG Fangfei, LIU Ling, HU Tianyue, HE Chuan. Microseismic Monitoring Events Classification Based on Waveform Clustering Analysis and Application [J]. Acta Scientiarum Naturalium Universitatis Pekinensis, 2020, 56(3): 406-416. |
[8] | PAN Rui, LIU Shufeng, WANG Jiawen, NI Jinren. Diversity of Antibiotic Resistance Genes in Water Source Areas of the Middle Route of the South-to-North Water Transfer Project [J]. Acta Scientiarum Naturalium Universitatis Pekinensis, 2020, 56(3): 500-508. |
[9] | WANG Xiaokai, WANG Baoli, CHEN Wenchao, LI Jiaqi. Using the Data from One Receiver to Estimate Running Velocity of High-Speed Train [J]. Acta Scientiarum Naturalium Universitatis Pekinensis, 2019, 55(5): 798-804. |
[10] | BAO Tiezhao, NING Jieyuan, ZHANG Xianbing. Extraction of Characteristics of Wavefield under Viaduct Produced by High-Speed Rail [J]. Acta Scientiarum Naturalium Universitatis Pekinensis, 2019, 55(5): 839-849. |
[11] | LIU Yuefeng, ZHANG Kai, CHEN Yue, SUN Ying. Correlation Study of Low-Altitude Turbulence in Civil Aircraft with Geographical Environmental Factor [J]. Acta Scientiarum Naturalium Universitatis Pekinensis, 2019, 55(4): 683-691. |
[12] | YOU Nanshan, MENG Jijun, SUN Mutian. Spatio-temporal Change of NDVI and Its Relationship with Climate in the Upper and Middle Reaches of Heihe River Basin from 2000 to 2015 [J]. Acta Scientiarum Naturalium Universitatis Pekinensis, 2019, 55(1): 171-181. |
[13] | HUANG Junsong, ZENG Qiming, JIAO Jian, GAO Sheng. A Homogenous Pixel-Weighted Interferometric Phase Filtering Method for Time-series InSAR [J]. Acta Scientiarum Naturalium Universitatis Pekinensis, 2018, 54(6): 1242-1250. |
[14] | ZHU Tingting, TIAN Congkui. Analysis on Microbial Diversity in the Sediments and Its Relationship with Environmental Factors in a Reservoir [J]. Acta Scientiarum Naturalium Universitatis Pekinensis, 2018, 54(3): 625-632. |
[15] | WEI Mengyi, TAN Yuyang, MAO Zhonghua, FENG Gang, HU Tianyue, HE Chuan. Automatic Microseismic Event Detection and Arrival Picking Based on Waveform Cross-Correlation [J]. Acta Scientiarum Naturalium Universitatis Pekinensis, 2018, 54(2): 361-372. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||