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1.
中国西部干旱区土地利用变化显著,是全球土地变化科学研究的热点区,为此论文基于1990—2016年4个时段的遥感卫星数据,采用面向对象的分层分类影像解译方法完成了塔里木盆地南缘和田地区(简称和田塔里木地区)土地利用调查,重点分析土地利用变化特征、发展模式和区域差异性。结果表明:1990—2016年,和田塔里木地区耕地持续加速扩张(增长率为2.9%/a),呈现渐进式扩张和骤变式开垦2种发展模式;建设用地面积增加(12.1%/a),主要表现为城市化发展、农村居民用地和交通用地的增加;耕地和建设用地扩张导致林灌草地和未利用地面积减少;和田地区县域土地利用发展不均衡,和田市建设用地比例最高,和田县与墨玉县的农业和建设用地扩张总量和速率最大,其次是洛浦县和于田县,皮山县、策勒县和民丰县农业和建设用地增长相对缓慢;总体上,和田塔里木地区耕地和建设用地的扩张在新疆处于一个较快的发展水平,今后一段时期快速的土地利用变化可能引起的生态环境问题需要重点关注。  相似文献   

2.
近300年中国耕地数据集重建与耕地变化分析   总被引:8,自引:1,他引:7  
针对中国历史时期不同政体耕地记录的特点,分别采用因素修正、引用替换、线性内插、衔接对比、人地关系检验、垦殖趋势检验、行政面积比例调整等方法对历史耕地数据进行修正,重建了基于现代省界的近300年中国分省耕地数据集,从数量角度对中国耕地总量和分省耕地变动特点进行分析,得到以下主要结论:① 在耕地总量上,SAGE和周荣的数据明显高估,本文结果与HYDE、CHCD和章有义数据的平均差异率在15%以下;但在省域尺度上,与SAGE、HYDE数据库存在明显差异,相对差异率>30%的省份比重分别为94%和61%,与CHCD数据较为接近,相对差异率>30%的省份比重为22%,但部分省份差异明显,仍需进一步分析研究;② 伴随清中期后的人口爆炸,近300年中国耕地增长近3.2倍,由清朝初年的42.4×106 hm2增加至1985年的136.9×106 hm2,根据增长速率变化可分为五个阶段,即清前中期快速增长阶段、清后期低速增长阶段、民国时期波动阶段、建国初期剧烈增长阶段和建国后耕地流失阶段,影响耕地变化主要是国家政策、战乱、经济发展等驱动因素。③ 从省域尺度看,近300年中国各区域耕地变化差异显著。清初,中国耕地主要集中于长江中下游平原、黄淮海平原、关中盆地及银川平原等地,此后,内地的垦殖活动不断增强,外围农区呈由南向北的趋势不断开荒。建国后,耕地开垦逐步向西北和东北方向发展。  相似文献   

3.
中国传统农区过去300年耕地重建结果的对比分析   总被引:12,自引:4,他引:8  
土地覆被变化是气候与生态效应模拟研究的重要参量。SAGE和HYDE两个全球历史土地利用数据集在相关研究中得到广泛应用, 但在区域尺度上的应用, 其可靠性如何, 至今少有论及。以我国学者重建的传统农区历史耕地数据集(CHCD) 为基础, 从全区、省区和网格(60 km×60 km) 三个空间尺度, 对SAGE (2010) 和HYDE3.1 数据集中有关中国传统农区历史耕地重建结果进行对比分析, 结果表明:(1) SAGE (2010) 数据集对中国传统农区耕地数量重建是以单一线性插补而得, 其中1700-1950 年是以0.51%的年均增长率线性递增, 1950 年后是以0.34%年均速率线性递减, 这种“标准化”变化趋势不能客观反映传统农区土地垦殖的真实历史, 耕地面积也明显高估, 与CHCD数据集不具有可比性;(2) HYDE3.1 数据集吸纳了区域性研究成果, 使其在总量上与CHCD数据集较为接近, 具有较好的可比性, 但其在省区和网格尺度上与CHCD存在显著差异, 其中相对差异率超过70% (< -70%或> 70%) 的网格占比高达56%~63%, 超过90% (< -90%或> 90%) 的网格占比也高达40%~45%;而相对差异率介于-10%~10%的网格占比仅为5%~6%, 介于-30%~30%的网格占比也仅为17%左右;(3) 充分利用我国丰富的历史文献, 建立更高精度的中国区域历史土地利用数据集, 是提高区域气候与生态效应模拟研究质量的重要保障。  相似文献   

4.
清代耕地数据恢复重建方法与实证研究   总被引:2,自引:0,他引:2  
曹雪  金晓斌  周寅康 《地理学报》2013,68(2):245-256
本文尝试构建一套适用于清代耕地数据的修正校验体系,以清代官方册载田亩数据为基础,采用人口基数和垦殖趋势进行检验和订正,通过替换、引用、衔接对比等方法进行数据修正,重建清代耕地数据,以期为后续相关研究提供参考.在建立理论分析框架的基础上,本文以历史资料相对丰富的山东省为例,对清代山东省的耕地数据进行修正与校验,结果表明:① 清代山东省的册载田亩数据不实情况普遍,经要素法修正的数据虽然通过了人口检验,但未能通过垦殖趋势校验,有必要进行进一步的订正和校准;② 在修正和校验过程中应综合考虑不同省份间垦殖政策、种植制度、自然条件等的差异,从修正系数到校验重点进行因时因地调整;③ 清前期山东省耕地增长主要受限于劳动力供给,耕地面积接近于劳动力供给线,随着人口的增长,耕地面积逐渐趋向于温饱线.同治以后,耕地面积开始低于温饱线,需要依靠粮食输入才能满足人口需求,山东省由粮食输出省变为粮食输入省.  相似文献   

5.
清代西南地区耕地空间格局网格化重建   总被引:9,自引:2,他引:7  
本文以现代耕地分布格局为基础, 通过量化地形(海拔、坡度)、气候生产潜力(光照、温度、水分)和人口密度等因子与耕地空间分布的关系, 重建了清代西南地区6 个时点分辨率为10 km×10 km的耕地数据。结果表明:①就整体而言, 清代西南地区耕地空间格局的变化表现在两个方面:一是垦殖范围的扩张, 1661-1911 年土地垦殖率在0~10%的网格占比减少了约24%, 主要分布在四川盆地和云贵高原;二是垦殖强度的提高, 1661-1911 年垦殖率大于30%的网格占比提高了10.3%, 最为显著的是四川盆地和云南中东部地区。②就清代西南地区耕地数量增减来看, 整个时段可划分为3 个阶段:前期(1661-1724 年) “复原性”垦殖, 60 多年间土地垦殖率在0~10%的网格占比减少了11.4%;中期(1724-1820 年)缓慢“拓展性”垦殖, 全区垦殖率在0~10%的网格占比下降约7%, 在30%以上的网格占比提高约7%;后期(1820-1911 年)局部抛荒与再垦, 垦殖率在0~10%的网格占比从75.0%降至72.2%, 在30%以上的网格占比从9.1%提高至10.9%。相关分析表明, 本文网格化重建的清代西南地区的耕地空间格局具有一定的合理性。  相似文献   

6.
Land-use/land-cover changes (LUCCs) have links to both human and nature inter- actions. China's Land-Use/cover Datasets (CLUDs) were updated regularly at 5-year inter- vals from the late 1980s to 2010, with standard procedures based on Landsat TM/ETM+ im- ages. A land-use dynamic regionalization method was proposed to analyze major land-use conversions. The spatiotemporal characteristics, differences, and causes of land-use changes at a national scale were then examined. The main findings are summarized as fol- lows. Land-use changes (LUCs) across China indicated a significant variation in spatial and temporal characteristics in the last 20 years (1990-2010). The area of cropland change de- creased in the south and increased in the north, but the total area remained almost un- changed. The reclaimed cropland was shifted from the northeast to the northwest. The built-up lands expanded rapidly, were mainly distributed in the east, and gradually spread out to central and western China. Woodland decreased first, and then increased, but desert area was the opposite. Grassland continued decreasing. Different spatial patterns of LUC in China were found between the late 20th century and the early 21st century. The original 13 LUC zones were replaced by 15 units with changes of boundaries in some zones. The main spatial characteristics of these changes included (1) an accelerated expansion of built-up land in the Huang-Huai-Hai region, the southeastern coastal areas, the midstream area of the Yangtze River, and the Sichuan Basin; (2) shifted land reclamation in the north from northeast China and eastern Inner Mongolia to the oasis agricultural areas in northwest China; (3) continuous transformation from rain-fed farmlands in northeast China to paddy fields; and (4) effective- ness of the "Grain for Green" project in the southern agricultural-pastoral ecotones of Inner Mongolia, the Loess Plateau, and southwestern mountainous areas. In the last two decades, although climate change in the north affected the change in cropland, policy regulation and economic driving forces were still the primary causes of LUC across China. During the first decade of the 21st century, the anthropogenic factors that drove variations in land-use pat- terns have shifted the emphasis from one-way land development to both development and conservation. The "dynamic regionalization method" was used to analyze changes in the spatial patterns of zoning boundaries, the internal characteristics of zones, and the growth and decrease of units. The results revealed "the pattern of the change process," namely the process of LUC and regional differences in characteristics at different stages. The growth and decrease of zones during this dynamic LUC zoning, variations in unit boundaries, and the characteristics of change intensities between the former and latter decades were examined. The patterns of alternative transformation between the "pattern" and "process" of land use and the causes for changes in different types and different regions of land use were explored.  相似文献   

7.
Land-use/land-cover changes (LUCCs) have links to both human and nature interactions. China's Land-Use/cover Datasets (CLUDs) were updated regularly at 5-year intervals from the late 1980s to 2010,with standard procedures based on Landsat TM\ETM+ images. A land-use dynamic regionalization method was proposed to analyze major land-use conversions. The spatiotemporal characteristics,differences,and causes of land-use changes at a national scale were then examined. The main findings are summarized as follows. Land-use changes (LUCs) across China indicated a significant variation in spatial and temporal characteristics in the last 20 years (1990-2010). The area of cropland change decreased in the south and increased in the north,but the total area remained almost unchanged. The reclaimed cropland was shifted from the northeast to the northwest. The built-up lands expanded rapidly,were mainly distributed in the east,and gradually spread out to central and western China. Woodland decreased first,and then increased,but desert area was the opposite. Grassland continued decreasing. Different spatial patterns of LUC in China were found between the late 20th century and the early 21st century. The original 13 LUC zones were replaced by 15 units with changes of boundaries in some zones. The main spatial characteristics of these changes included (1) an accelerated expansion of built-up land in the Huang-Huai-Hai region,the southeastern coastal areas,the midstream area of the Yangtze River,and the Sichuan Basin;(2) shifted land reclamation in the north from northeast China and eastern Inner Mongolia to the oasis agricultural areas in northwest China;(3) continuous transformation from rain-fed farmlands in northeast China to paddy fields;and (4) effectiveness of the "Grain for Green" project in the southern agricultural-pastoral ecotones of Inner Mongolia,the Loess Plateau,and southwestern mountainous areas. In the last two decades,although climate change in the north affected the change in cropland,policy regulation and economic driving forces were still the primary causes of LUC across China. During the first decade of the 21st century,the anthropogenic factors that drove variations in land-use patterns have shifted the emphasis from one-way land development to both development and conservation.The "dynamic regionalization method" was used to analyze changes in the spatial patterns of zoning boundaries,the internal characteristics of zones,and the growth and decrease of units. The results revealed "the pattern of the change process," namely the process of LUC and regional differences in characteristics at different stages. The growth and decrease of zones during this dynamic LUC zoning,variations in unit boundaries,and the characteristics of change intensities between the former and latter decades were examined. The patterns of alternative transformation between the "pattern" and "process" of land use and the causes for changes in different types and different regions of land use were explored.  相似文献   

8.
1IntroductionThe quantity and quality of cropland guarantees the grain production (Feng, 2000), and the essence of cropland security is food security. Cropland security means the stability of total quantity of cropland, which also means stable quality, potential productivity and regional balance (Feng, 2000). With the development of urbanization and industrialization, more and more cropland is encroached, especially the cropland with great market-value (Cai, 2000; Ge, 2002; Richard, 2002), w…  相似文献   

9.
李美娇  何凡能  刘浩龙 《地理研究》2016,35(12):2322-2332
基于历史文献研究的方法,利用北宋中期垦田数据及宋代人口粮食需求量、粮食亩产量等史料,考察了北宋中期南北方的垦田隐匿特点、北宋户均垦田数的合理范围及西南五路的户均基本垦田需求,并据此对北宋中期路域耕地面积进行了再估算。主要结论:北宋垦田隐匿比例不具有北高南低的区域分异特征;北宋户均垦田数的合理范围为20~100亩;西南五路的户均基本垦田需求数约为20~30亩;北宋中期境内耕地面积约为731.9×106今亩,土地垦殖率为16.9%,其中,北方耕地面积约占29.7%,南方约占70.3%;黄淮海平原、长江中下游平原、两湖平原和成都平原等是北宋耕地的主要分布区,而西南地区垦殖率较低。合理订正北宋中期路域耕地面积,对重建中国过去千年LUCC数据集具有重要意义。  相似文献   

10.
The quantity and quality changes of cropland in Jilin province are analyzed by combining the statistics from 1949 to 1999 and land-use maps interpreted from TM images in 1986 and in 2000. In general, the decreasing trend of the cropland in Jilin province was derived from the statistic data in 1949-1999. While since 1983, the cropland area has increased slightly, because of the conversion from other land-use types to cropland. It is showed that the net increase of cropland was about 43.40×104 ha. While the quality change of the cropland can be seen from that mainly caused by the conversion from forestland, grassland to cropland and the change mainly took place in the west, where it is ecologically fragile. According to the spatial distribution model, the centroids' move of the cropland and the grain production are calculated, whose directions are not consistent. The impact of the dynamic change of the cropland on food security is further analyzed.  相似文献   

11.
李秀梅  白涛 《中国沙漠》2014,34(3):919-926
冷凉型绿洲是干旱区的主要景观类型之一,其景观结构的变化机制是理解干旱区生态环境变化的重要补充。位于祁连山北麓的冷凉绿洲(张掖市民乐县)是干旱区具有代表性的区域,在黑河流域具有重要的生态功能。据此,本文以1987、1995、2000、2005年的TM数据为信息源,采用景观结构的分析方法,分析了该绿洲1987—2005年间的景观变化。结果表明:在干旱区的冷凉型绿洲中,农田是景观优势斑块类型,斑块面积占研究区的比例为28.6%~34.6%。景观斑块类型的转化主要发生在农田和草地之间,1987—2005年间农田转换为草地的比例为43.6%,而草地转换为农田高达72.9%。与同期平原型绿洲景观变化特点相比较,冷凉型绿洲的农田面积扩增速度大于平原型绿洲。分布面积最小的水域和居工地斑块有最高的景观变化速率,说明该干旱区河流水文过程季节性变化和持续的城镇化过程对该类景观类型的影响显著。  相似文献   

12.
In recent years, land use and land cover have under gone tremendous change on the Loess Plateau, leading to temporal and spatial variation over many ecological factors, such as carbon storage. Based on four series of land-use data from remote-sensing imaging, spatiotemporal changes of land-use types and volume changes were analyzed. Combined with carbon-stock-assessment modules of the In VEST(integrated valuation ecosystem services and tradeoffs) model, the carbon-storage change was estimated and analyzed at the subcounty and subbasin scales. The results show that(1) cultivated land and grassland area decreased, while woodland and urban land area increased in northern Shaanxi;(2) the average carbon storage in Huangling County and the Beiluo River Basin is the largest, while that of Yuyang County and the Xinshui River Basin is the minimum, and that of Wuqi County showed the greatest growth;(3) carbon storage in the study area showed a definite decrease in 2000, but in general has increased from 1995 to 2010;(4) carbon-storage figures of subbasins and counties are all restricted by the natural status and land-use landscape of the whole study area. From the results,it can be seen that the effect of ecological policies is remarkable. This study has important implications for the rational planning of land use, adjustment of the ecosystem carbon cycle, and related policies.  相似文献   

13.
2010-2015年中国土地利用变化的时空格局与新特征   总被引:24,自引:4,他引:20  
土地利用/覆被变化是人类活动对地球表层及全球变化影响研究的重要内容。本文基于Landsat 8 OLI、GF-2等遥感图像和人机交互解译方法,获取的土地利用数据实现了中国2010-2015年土地利用变化遥感动态监测。应用土地利用动态度、年变化率等指标,从全国和分区角度揭示了2010-2015年中国土地利用变化的时空特征。结果表明:2010-2015年中国建设用地面积共增加24.6×103 km2,耕地面积共减少4.9×103 km2,林草用地面积共减少16.4×103 km2。2010-2015年与2000-2010年相比,中国土地利用变化的区域空间格局基本一致,但分区变化呈现新的特征。东部建设用地持续扩张和耕地面积减少,变化速率有所下降;中部建设用地扩张和耕地面积减少速度增加;西部建设用地扩张明显加速,耕地面积增速进一步加快,林草面积减少速率增加;东北地区建设用地扩展持续缓慢,耕地面积稳中有升,水旱田转换突出,林草面积略有下降。从“十二五”期间国家实施的主体功能区布局来看,东部地区的土地利用变化特征与优化和重点开发区的国土空间格局管控要求基本吻合;中部和西部地区则面临对重点生态功能区和农产品主产区相关土地利用类型实现有效保护的严峻挑战,必须进一步加大对国土空间开发格局的有效管控。  相似文献   

14.
黄河流域NDVI/土地利用对蒸散发时空变化的影响   总被引:2,自引:0,他引:2  
基于蒸散发(ET)、归一化植被指数(NDVI)及土地利用数据利用M-K检验、Sen趋势分析等方法,研究2001—2015年黄河流域ET时空分布及不同植被覆盖/土地利用下的ET变化规律.结果 表明:(1)黄河流域年均ET呈东南高西北低的空间分布格局,与植被覆盖和土地利用的关系具有较好的一致性;(2)黄河流域ET、NDVI...  相似文献   

15.
Land use/cover change is an important theme on the impacts of human activities on the earth systems and global environmental change. National land-use changes of China during 2010–2015 were acquired by the digital interpretation method using the high-resolution remotely sensed images, e.g. the Landsat 8 OLI, GF-2 remote sensing images. The spatiotemporal characteristics of land-use changes across China during 2010–2015 were revealed by the indexes of dynamic degree model, annual land-use changes ratio etc. The results indicated that the built-up land increased by 24.6×103 km2 while the cropland decreased by 4.9×103 km2, and the total area of woodland and grassland decreased by 16.4×103 km2. The spatial pattern of land-use changes in China during 2010–2015 was concordant with that of the period 2000–2010. Specially, new characteristics of land-use changes emerged in different regions of China in 2010–2015. The built-up land in eastern China expanded continually, and the total area of cropland decreased, both at decreasing rates. The rates of built-up land expansion and cropland shrinkage were accelerated in central China. The rates of built-up land expansion and cropland growth increased in western China, while the decreasing rate of woodland and grassland accelerated. In northeastern China, built-up land expansion slowed continually, and cropland area increased slightly accompanied by the conversions between paddy land and dry land. Besides, woodland and grassland area decreased in northeastern China. The characteristics of land-use changes in eastern China were essentially consistent with the spatial govern and control requirements of the optimal development zones and key development zones according to the Major Function-oriented Zones Planning implemented during the 12th Five-Year Plan (2011–2015). It was a serious challenge for the central government of China to effectively protect the reasonable layout of land use types dominated with the key ecological function zones and agricultural production zones in central and western China. Furthermore, the local governments should take effective measures to strengthen the management of territorial development in future.  相似文献   

16.
20世纪80年代末以来中国土地利用变化的基本特征与空间格局   总被引:105,自引:19,他引:86  
土地利用/土地覆被变化(LUCC)是人类活动与自然环境相互作用最直接的表现形式,本文采用相同空间分辨率的卫星遥感信息源和相同的技术方法,对中国1980 年代末到2010 年土地利用变化数据进行定期更新。在此基础上,提出并发展土地利用动态区划的方法,研究土地利用变化的空间格局与时空特征。我们发现:1990-2010 年的20 年间,中国土地利用变化表现出明显的时空差异。“南减北增,总量基本持衡,新增耕地的重心逐步由东北向西北移动”是耕地变化的基本特征;“扩展提速,东部为重心,向中西部蔓延”是城乡建设用地变化的基本特征;“林地前减后增,荒漠前增后减,草地持续减少”是非人工土地利用类型变化的主要特征。20 世纪末与21 世纪初两个10 年相比,中国土地利用变化空间格局出现了一些新特征,原有的13 个土地利用变化区划单元演变为15 个单元,且部分区划单元边界发生变化。主要变化格局特征为黄淮海地区、东南部沿海地区、长江中游地区和四川盆地城镇工矿用地呈现明显的加速扩张态势;北方地区耕地开垦重心由东北地区和内蒙古东部转向西北绿洲农业区;东北地区旱作耕地持续转变为水田;内蒙古农牧交错带南部、黄土高原和西南山地退耕还林还草效果初显。近20 年间,尽管气候变化对北方地区的耕地变化有一定的影响,但政策调控和经济驱动仍然是导致我国土地利用变化及其时空差异的主要原因。2000 年后的第一个10 年,土地利用格局变化的人为驱动因素已由单向国土开发为主,转变为开发与保护并重。在空间格局变化的分析方法方面,应用“动态区划法”开展世纪之交两个10 年中国LUCC空间格局变化的分析,有效揭示了20 年来中国LUCC“格局的变化过程”,即动态区划边界的推移、区划单元内部特征的变化与单元的消长等;以及“变化过程的格局”,即土地利用变化过程与特征的分阶段区域差异,清晰刻画了LUCC动态区划中区划单元的消长,单元边界的变动,以及前后10 年的变化强度特征,揭示了土地利用“格局”与“过程”之间的交替转化规律,以及不同类型和区域的变化原因,证明了该分析方法的有效性。  相似文献   

17.
Rapid landscape pattern change has taken place in many arid and semi-arid regions of China such as Yellow River Basin over the past decade. In this article, the physical suitability of cropland and its change were evaluated and analyzed by the combined use of satellite remote sensing, geographical information system, and landscape modeling technologies. The aim was to improve our understanding of cropland change so that sustainable cropland utilization could be established. First, the spatial pattern change of cropland was analyzed using the 1-km2 area percentage model; second, the numerical model for cropland suitability assessment was explored and developed using analytical hierarchy process analysis method. Using this model, cropland suitability index was computed for the whole of the basin from 1990 to 2005. The cropland suitability index was classified into five levels: better, good, middle, bad, and worse, following the natural breaks classification. The spatial distribution of cropland suitability level and its changes over the 15 years from 1990 to 2005 were analyzed and the driving factors of cropland change were investigated. The results showed that the cropland suitability in the study area was at good level, and the cropland quality had been gradually improved on the whole. However, the cropland quality had become worse over the 15 years in some regions. In the study area, governmental policies for eco-environmental protection and population growth were found to be the major factors that caused the cropland change over the past 15 years.  相似文献   

18.
刘爽  白洁  罗格平  吕娜娜  吴淼 《地理学报》2021,76(5):1257-1273
1960年以来咸海流域大规模的水土资源开发使得社会经济用水激增,致使至1990年咸海面积萎缩50%,引发咸海生态危机。目前对引起咸海生态危机的社会经济用水的时空变化特征和趋势尚不清楚。本文在整合了多途径获取的1960—2016年咸海流域国家/州级水资源和社会经济数据的基础上,利用系统动力学模型,仿真模拟和分析了1960—2016年咸海流域社会经济和用水时空变化特征,并多情景预测2016—2030年咸海流域社会经济用水。1960—2016年咸海流域人口增幅267%,GDP增幅1100%,社会经济用水量从410亿m3增长至910亿m3。咸海流域的工农业用水效益在1991年苏联解体后明显增加,但仍处于较低水平。对未来的情景预测表明:若延续现有社会经济用水效率、农作物种植面积持续扩张(S1),至2030年咸海流域社会经济用水量达到962亿m3;而在滴灌普及率达到70%、种植面积不变的情景下(S10),社会经济用水量降至681亿m3,可有效缓解咸海危机。  相似文献   

19.
The Koshi River Basin is in the middle of the Himalayas, a tributary of the Ganges River and a very important cross-border watershed. Across the basin there are large changes in altitude, habitat complexity, ecosystem integrity, land cover diversity and regional difference and this area is sensitive to global climate change. Based on Landsat TM images, vegetation mapping, field investigations and 3S technology, we compiled high-precision land cover data for the Koshi River Basin and analyzed current land cover characteristics. We found that from source to downstream, land cover in the Koshi River Basin in 2010 was composed of water body (glacier), bare land, sparse vegetation, grassland, wetland, shrubland, forest, cropland, water body (river or lake) and built-up areas. Among them, grassland, forest, bare land and cropland are the main types, accounting for 25.83%, 21.19%, 19.31% and 15.09% of the basin’s area respectively. The composition and structure of the Koshi River Basin land cover types are different between southern and northern slopes. The north slope is dominated by grassland, bare land and glacier; forest, bare land and glacier are mainly found on northern slopes. Northern slopes contain nearly seven times more grassland than southern slopes; while 97.13% of forest is located on southern slopes. Grassland area on northern slope is 6.67 times than on southern slope. The vertical distribution of major land cover types has obvious zonal characteristics. Land cover types from low to high altitudes are cropland, forest, Shrubland and mixed cropland, grassland, sparse vegetation, bare land and water bodies. These results provide a scientific basis for the study of land use and cover change in a critical region and will inform ecosystem protection, sustainability and management in this and other alpine transboundary basins.  相似文献   

20.
北宋中期耕地面积及其空间分布格局重建(英文)   总被引:3,自引:1,他引:2  
To understand historical human-induced land cover change and its climatic effects, it is necessary to create historical land use datasets with explicit spatial information. Using the taxes-cropland area and number of families compiled from historical documents, we esti-mated the real cropland area and populations within each Lu (a province-level political region in the Northern Song Dynasty) in the mid-Northern Song Dynasty (AD1004-1085). The es-timations were accomplished through analyzing the contemporary policies of tax, population and agricultural development. Then, we converted the political region-based cropland area to geographically explicit grid cell-based fractional cropland at the cell size of 60 km by 60 km. The conversion was based on calculating cultivation suitability of each grid cell using the topographic slope, altitude and population density as the independent variables. As a result, the total area of cropland within the Northern Song territory in the 1070s was estimated to be about 720 million mu (Chinese area unit, 1 mu = 666.7 m2), of which 40.1% and 59.9% oc-curred in the north and south respectively. The population was estimated to be about 87.2 million, of which 38.7% and 61.3% were in the north and south respectively, and per capita cropland area was about 8.2 mu. The national mean reclamation ratio (i.e. ratio of cropland area to total land area; RRA hereafter for short) was bout 16.6%. The plain areas, such as the North China Plain, the middle and lower reaches of the Yangtze River, Guanzhong Plain, plains surrounding the Dongting Lake and Poyang Lake and Sichuan Basin, had a higher RRA, being mostly over 40%; while the hilly and mountainous areas, such as south of Nanling Mountains, the southwest regions (excluding the Chengdu Plain), Loess Plateau and south-east coastal regions, had a lower RRA, being less than 20%. Moreover, RRA varied with topographic slope and altitude. In the areas of low altitude (≤250 m), middle altitude (250-100 m) and high altitude (1000-3500 m), there were 443 million, 215 million and 64 million mu of cropland respectively and their regional mean RRAs were 27.5%, 12.6% and 7.2% respectively. In the areas of flat slope, gentle slope, medium slope and steep slope, there were 116 million, 456 million, 144 million and 2 million mu of cropland respectively and their regional mean RRAs were 34.6%, 20.7%, 8.5% and 2.3% respectively.  相似文献   

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