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1.
西双版纳地区土地利用的空间分析   总被引:2,自引:1,他引:1  
利用西双版纳地区2003年TM数据,对土地利用结构及土地利用与海拔、坡度、水系等自然地理要素相互关系的空间进行分析.结果表明,耕地、林地和草地是该地区土地利用的主体,其中林地面积13 420 km2,占研究区总面积的74%;草地面积3 251 km2,耕地面积2 332 km2,分别占13%和18%.林地、耕地和草地面积随海拔高度具有单峰变化的曲线特征,在海拔1 000~1 200 m处林地分布最多,耕地和草地面积达到峰值时的海拔约为900 m.受人为活动影响强的用地类型坡度指数较低,城乡建筑用地和耕地的坡度指数为5°和14°,人为活动影响较弱的林地草地坡度指数较高,分别为22°和20°.河谷内随缓冲距离增加,土地利用呈现规律性变化,耕地、城镇居民点、未利用地3种土地利用方式主要集中在河谷底部近水域处,远离河谷林地草地组分增加明显.西双版纳地区自然生态系统相对原生,具有林地为基质,河流为廊道,坝区、沟谷农业景观镶嵌分布的特点.  相似文献   

2.
北京地区不同地形条件下的土地覆盖动态   总被引:15,自引:2,他引:13       下载免费PDF全文
 利用MSS/TM影像和1∶250 000 高程数据分析了1978~2001年北京地区土地覆盖的变化。为研究人类活动对土地覆盖类型及植被变化的影响,根据植被的分布规律和人类活动影响,利用数字高程模型(DEM)将研究区遥感影像分为不同海拔段,分别建立标志进行解译。 通过转移概率矩阵计算、不同地形因子影响下的土地覆盖类型分布的GIS分析,得到如下结 果:1) 1978~2001年间北京市土地覆盖变化主要发生在平原和低海拔、小坡度的平缓地区 ,表现为农业用地向城镇用地的转变;高海拔地区主要为天然植被所覆盖,土地覆盖变化相对较小,主要是灌丛向林地的转变。2) 地形因子显著影响土地覆盖类型的分布及变化。随着海拔的升高和坡度的增大,农业用地和城镇用地减少,林地和灌丛逐渐增加。坡向对植被的分布也有较大影响。  相似文献   

3.
2000-2016年秦岭山地植被覆盖变化地形分异效应   总被引:5,自引:0,他引:5  
赵婷  白红英  邓晨晖  孟清  郭少壮  齐贵增 《生态学报》2019,39(12):4499-4509
利用2000-2016年MODIS NDVI数据,采用趋势分析及地形差异修正法,探讨秦岭山地植被覆盖变化在南北坡、不同海拔以及不同坡度坡向下的空间分异性。结果表明:近17年来,秦岭山地植被覆盖度良好,整体呈上升趋势,南北坡、不同海拔、不同坡度、不同坡向下植被覆盖度有所差异,植被变化趋势也不同。(1)就南北坡而言,近17年来秦岭南坡植被覆盖度上升趋势大于北坡,南坡植被覆盖以上升趋势为主,而北坡以稳定为主。(2)不同的海拔高度上秦岭山地植被覆盖变化在存在分异性:低海拔区域呈减少趋势,中海拔区呈明显的上升趋势,2000 m以上的高海拔区域北坡的植被覆盖度较为稳定,而南坡的2500到3100 m区域内有较明显的减小趋势。(3)从坡度来看,随着坡度的增加秦岭山地植被覆盖度由减少转为增加再转为稳定,南北坡植被变化分异性不明显。(4)不同坡向上,秦岭南北坡植被覆盖度变化差异明显,由阴坡转为阳坡时,北坡植被覆盖有明显的增长趋势,而南坡则不明显,植被覆盖度减小区在南北坡的分布呈相反趋势,分别分布在南坡的阳坡以及北坡的阴坡。  相似文献   

4.
植被覆盖度是衡量地表植被状况和指示生态环境变化的一个重要指标。基于像元二分模型,利用Landsat5/8遥感影像和DEM数据,对岷江汶川-都江堰段植被覆盖动态变化进行了监测,并结合高程、坡度和坡向数据,分析了汶川地震前后植被受损与恢复的空间动态格局变化。研究表明:植被覆盖总体良好,大部分区域的植被覆盖度均在中、高度以上,空间格局上呈现由汶川县东部、都江堰市西北部的龙门山区向两侧减少的总体趋势;地震造成植被受损面积达63808.7 hm~2,且集中分布于海拔567—4331 m、坡度26—51°的范围以及东坡、北坡、南坡和西坡;震后5a,植被恢复面积17786.47 hm~2,主要分布在海拔576—2180 m与3256—3793 m、坡度小于9°和26—51°以及东坡、东南坡和和南坡;高程和坡度对植被损毁与恢复的影响明显高于坡向。  相似文献   

5.
长江源区土地覆盖变化与草地退化格局的时空分异   总被引:1,自引:0,他引:1  
基于野外调查、遥感影像和统计资料,分析了1987-2007年长江源头地区土地覆盖变化和草地退化格局的时空分异特点,并从海拔、坡度和坡向3方面探讨了导致长江源区草地生态环境变化的主要自然因素.结果表明:研究期间,长江源头地区土地类型破碎化整体呈增加趋势,自然地理条件和气候变化是导致土地格局变化的主要驱动因素;不同海拔草地退化面积差异显著,研究区草地退化主要发生在海拔4800~5100 m范围内,且退化面积随海拔的升高呈增加趋势,退化面积比重在不同坡度和坡向的差异较大.1987-2007年,长江源头地区气候呈暖干化趋势,区域土地覆盖类型空间结构变化明显;不同坡向、坡度和海拔的草地退化分布格局与高寒环境和人为干扰的格局基本一致,高寒环境和气候演化对草地生态系统格局起决定作用.  相似文献   

6.
长江三峡库区土地利用/覆盖的长期变化   总被引:1,自引:0,他引:1  
了解土地利用/覆盖的时空变化有助于揭示气候变化和人类活动对生态系统的影响,是开展生态系统管理的重要前提.长江三峡库区是我国重要的生态脆弱区,环境变化影响的复杂性显著,但目前对此仍缺乏系统了解.本文通过解译Landsat时序遥感影像,获取三峡库区土地利用/覆盖数据,研究土地利用/覆盖构成结构及其分布的长期时空变化特征,以揭示三峡库区土地利用/覆盖的演变规律,为深入了解生态脆弱区生态系统变化复杂性和区域生态系统管理提供科学依据.结果表明: 1990—2015年间,三峡库区土地利用/覆盖结构的空间异质性和变化显著,农田面积比例由66.2%降至40.4%,林地面积比例由31.3%增至53.5%,库区由农业景观转变为以森林、灌木林等为主的林地景观,建设用地和水体逐渐增加;林地逐渐向库区中部扩张,建设用地点状扩张;海拔500~1000 m和坡度15°~25°区域林地面积比例增长最明显,针叶林、针阔混交林和灌木林等植被类型增长最快.研究期间,三峡水库建设和各类生态恢复工程的实施促使区域土地利用/覆盖结构呈阶段性变化,总体表现为生态恢复趋势.积极的生态恢复措施有助于消减工程建设对区域生态环境的负面影响.  相似文献   

7.
《植物生态学报》2018,42(12):1145
为揭示雌雄异株植物种群的空间分异现象的内在原因, 以河北小五台山天然青杨(Populus cathayana)种群为研究对象, 采用平均最近邻指数、核密度、方差分析等方法分析了青杨雌雄群体的聚集程度、群体密度和分布格局以及其与到河岸的距离(河距)、海拔和土壤理化性质间的内在关系。结果显示: 1)青杨种群总体上沿金河沟呈狭长带状集聚分布, 中海拔区域个体数量最多, 密度最大; 2)随海拔增加, 雌雄个体数与密度均表现“先增后减”的特点, 而平均胸径的变化正好相反; 3)海拔对性比具有显著影响: 低海拔区域(1 300-1 400 m)偏雌, 中低海拔区域(1 400-1 500 m)偏雄, 其他海拔段的性比接近1:1; 4)随河距增加, 雌雄个体数、密度和平均胸径均表现出逐渐减少或减小的特点, 并且雌株优势分布区内的土壤有机质和全氮含量显著高于雄株优势分布区; 5)局部区域由于海拔和河距改变了土壤理化性质和生长环境, 导致了该区域内的性比发生偏倚。上述结果表明, 青杨雌雄群体的空间分布、动态变化以及性比受海拔、河距以及所在区域的土壤理化性质的综合影响, 雌雄植株在资源需求和环境适应力方面存在的差异会导致局部区域内的性比发生偏倚。  相似文献   

8.
榆神府矿区植被覆盖的动态变化及其影响因素   总被引:2,自引:0,他引:2  
为了研究榆神府矿区植被覆盖度的时空演化规律,基于2005—2016年12期MOD13Q1数据,采用像元二分法、线性回归趋势线法和地形面积差异修正系数等方法,研究榆神府矿区植被覆盖度的时空分布特征和变化趋势,并结合地形地貌、土地利用和采矿活动等数据分析其与植被覆盖度变化的关系。结果表明:(1)在研究时段内,榆神府矿区植被覆盖度变化幅度比较剧烈。植被覆盖度低的区域分布在矿区乌兰木伦河以南、无定河以北的范围内;植被覆盖度高的区域分布在神府新民矿区和榆横矿区南部。(2)植被覆盖度年际变化趋势呈东北向西南先下降后上升的改善趋势,植被改善区域占榆神府矿区总面积的90%以上。(3)在海拔899~1000 m、坡度8°~12°和平原地区植被覆盖度的平均值最高;在海拔1000~1437 m、坡度4°~28°和丘陵地区植被改善类型的面积比最大。2010—2015年土地利用转换类型对于植被的影响要好于2005—2010年,且植被均以改善型为主。(4)由煤矿点、厂房、排土场、塌陷地以及缓冲区内植被覆盖分析可知,采矿活动对矿区植被影响比较明显。  相似文献   

9.
《植物生态学报》2019,43(9):825
生境差异是影响植物群落及其物种多样性分布格局的重要因素。该研究基于370个荆条(Vitex negundo var. heterophylla)灌丛的野外调查样方, 结合多元回归树(MRT)、显著性分析、Pearson相关分析等技术手段, 分析了华北地区荆条灌丛及其物种多样性的空间分布格局。结果表明: 荆条灌丛的经纬度均跨越10°以上, 可分为高、中、低纬度分布区; 分布海拔则从117 m至1 248 m跨越了1 000 m以上, 也可分为高、中、低海拔分布区。所有分布区中荆条灌丛草本层的Shannon-Wiener指数、Simpson指数和均匀度指数均高于灌木层。灌木层物种多样性随着纬度的降低而降低, 随着海拔的升高而降低; 草本层相反, 物种多样性随着纬度降低而升高, 随着海拔升高而升高。灌木层和草本层的物种丰富度(Shannon-Wiener指数)与水、热、地形等环境因子显著相关, 其中灌木层物种多样性随着气温、坡位升高而显著减少, 随着降水的增加而显著增加;草本层则相反。  相似文献   

10.
《植物生态学报》2014,38(5):452
权衡关系是植物生活史对策理论的基础, 花大小-数量的权衡关系对理解花的生物量分配具有重要的意义。该文利用实验生态学方法, 研究了祁连山北坡高寒退化草地4个不同海拔狼毒(Stellera chamaejasme)种群花大小与花数量间的关系。结果表明: 随着海拔升高, 草地群落的高度、密度和地上生物量均呈先升高后降低的倒U型分布, 狼毒花大小呈逐渐增大的趋势, 而花数量呈相反的变化趋势; 不同海拔样地狼毒花大小与花数量间的相关性存在差异, 海拔2700、2900和3000 m样地狼毒花大小和花数量之间均存在极显著的负相关关系(p < 0.01), 海拔2800 m样地二者之间存在显著的负相关关系(p < 0.05), 狼毒植株分配给花大小与花数量的资源间存在着“此消彼长”的权衡关系; 海拔2800 m样地是狼毒植株花大小与花数量权衡关系由低海拔的花数量多而单花生物量低向高海拔的花数量少而单花生物量高转变的区域。狼毒植株通过合理权衡花数量和花大小的资源配置, 以补偿在海拔梯度上不利因素对种群繁衍带来的影响, 从而实现种群的繁殖成功, 反映了毒杂草对异质性生境的表型可塑性机制。  相似文献   

11.
The rapidly growing car industry in China has led to an equally rapid expansion of monoculture rubber in many regions of South East Asia. Xishuangbanna, the second largest rubber planting area in China, located in the Indo-Burma biodiversity hotspot, supplies about 37% of the domestic natural rubber production. There, high income possibilities from rubber drive a dramatic expansion of monoculture plantations which poses a threat to natural forests. For the first time we mapped rubber plantations in and outside protected areas and their net present value for the years 1988, 2002 (Landsat, 30 m resolution) and 2010 (RapidEye, 5 m resolution). The purpose of our study was to better understand the pattern and dynamics of the expansion of rubber plantations in Xishuangbanna, as well as its economic prospects and conservation impacts. We found that 1) the area of rubber plantations was 4.5% of the total area of Xishuangbanna in 1988, 9.9% in 2002, and 22.2% in 2010; 2) rubber monoculture expanded to higher elevations and onto steeper slopes between 1988 and 2010; 3) the proportion of rubber plantations with medium economic potential dropped from 57% between 1988 and 2002 to 47% in 2010, while the proportion of plantations with lower economic potential had increased from 30% to 40%; and 4) nearly 10% of the total area of nature reserves within Xishuangbanna has been converted to rubber monoculture by 2010. On the basis of our findings, we conclude that the rapid expansion of rubber plantations into higher elevations, steeper terrain, and into nature reserves (where most of the remaining forests of Xishuangbanna are located) poses a serious threat to biodiversity and environmental services while not producing the expected economic returns. Therefore, it is essential that local governments develop long-term land use strategies for balancing economic benefits with environmental sustainability, as well as for assisting farmers with the selection of land suitable for rubber production.  相似文献   

12.
As the economies of developing countries grow, and the purchasing power of their inhabitants increases, the pressure on the environment and natural resources will continue to increase. In the specific case of China, impressive economic growth during the last decades exemplifies this process. Specifically, we focus on how changing economic dynamics are influencing land-use and land-cover change in Xishuangbanna, China. Xishuangbanna has the richest flora and fauna of China, but increasing demand for natural rubber and the expansion of rubber plantations is threatening this high-diversity region. We quantified land-use/land-cover change across Xishuangbanna using Landsat images from 1976, 1988, and 2003. The most obvious change was the decrease in forest cover and an increase in rubber plantations. In 1976, forests covered approximately 70% of Xishuangbanna, but by 2003 they covered less than 50%. Tropical seasonal rain forest was the forest type most affect by the expansion of rubber plantations, and a total of 139,576 ha was lost. The increase of rubber plantations below 800 m, shifted agricultural activities to higher elevations, which resulted in deforestation of mountain rain forest and subtropical evergreen broadleaf forest. Although these changes have affected the biodiversity and ecosystem services, we believe that long-term planning and monitoring can achieve a balance between economic and social needs of a growing population and the conservation of a highly diverse flora and fauna. Below 800 m , we recommend that no more rubber plantations be established, existing forest fragments should be protected, and riparian forests should be restored to connect fragments. Future rubber plantations should be established in the abandoned arable or shrublands at higher elevations, and tea or other crops should be planted in the understory to improve economic returns and reduce erosion.  相似文献   

13.
Land cover dynamics of different topographic conditions in Beijing, China   总被引:1,自引:0,他引:1  
Topographic conditions play an important role in controlling land cover dynamic processes. In this study, remotely sensed data and the geographic information system were applied to analyze the changes in land cover along topographic gradients from 1978 to 2001 in Beijing, a rapidly urbanized mega city in China. The study was based on five periods of land cover maps derived from remotely sensed data: Landsat MSS for 1978, Landsat TM for 1984, 1992, 1996 and 2001, and the digital elevation model (DEM) derived from 1:250,000 topographic map. The whole area was divided into ten land cover types: conifer forest, broadleaf forest, mixed forest, shrub, brushwood, meadow, farmland, built-up, water body and bare land. The results are summarized as follows. (1) Shrub, forest, farmland and builtup consist of the main land cover types of the Beijing area. The most significant land cover change from 1978 to 2001 was the decrease of the farmland and expansion of the builtup area. Farmland decreased from 6354 to 3813 km2 in the 23 years, while the built-up area increased from 421 to 2642 km2. Meanwhile, the coverage of forest increased from 17.2% to 24.7% of the total area. The conversion matrix analysis indicated that the transformation of farmland to the built-up area was the most significant process and afforestation was the primary cause of the replacement of shrub to forest. (2) Topographic conditions are of great importance to the distribution of land cover types and the process of land cover changes. Elevation has an intensive impact on the distribution of land cover types. The area below 100 m mostly consists of farmland and built-up areas, while the area above 100 m is mainly covered by shrub and forest. Shrub has the maximum frequency in areas between 100 and 1000 m, while forest has dominance in areas above 800 m. According to the analysis of land cover changes in different ranges of elevation, the greatest change below 100 m was the process of urbanization. The process of the main land cover change occurred above 100 m was the transformation from shrub to forest. This result was consistent with the vertical change of natural vegetation distribution in Beijing. (3) Slope has a great influence on the distribution of land cover. Farmland and built-up areas are mostly distributed in flat areas, while shrub and forest occupy steeper areas compared with other land cover types. Forest frequency increased with the increasing slope. Land cover changes differed from the slope gradients. In the plain area, the land cover change occurred as the result of urbanization. With the increasing of the slope gradient, afforestation, which converts shrub to forest, was the process of the primary land cover change. __________ Translated from Journal of Plant Ecology, 2006, 30(2): 239–251 [译自: 植物生态学报]  相似文献   

14.
Topographic conditions play an important role in controlling land cover dynamic processes.In this study,remotely sensed data and the geographic information system were applied to analyze the changes in land cover along topographic gradients from 1978 to 2001 in Beijing,a rapidly urbanized mega city in China.The study was based on five periods of land cover maps derived from remotely sensed data:Landsat MSS for 1978,Landsat TM for 1984,"1992,1996 and 2001,and the digital elevation model (DEM) derived from 1:250,000 topographic map.The whole area was divided into ten land cover types:conifer forest,broadleaf forest,mixed forest,shrub,brushwood,meadow,farmland,built-up,water body and bare land.The results are summarized as follows.(1) Shrub,forest,farmland and builtup consist of the main land cover types of the Beijing area.The most significant land cover change from 1978 to 2001 was the decrease of the farmland and expansion of the builtup area.Farmland decreased from 6354 to 3813 km2 in the 23 years,while the built-up area increased from 421 to 2642 km2.Meanwhile,the coverage of forest increased from 17.2% to 24.7% of the total area.The conversion matrix analysis indicated that the transformation of farmland to the built-up area was the most significant process and afforestation was the primary cause of the replacement of shrub to forest.(2) Topographic conditions are of great importance to the distribution of land cover types and the process of land cover changes.Elevation has an intensive impact on the distribution of land cover types.The area below 100 m mostly consists of farmland and built-up areas,while the area above 100 m is mainly covered by shrub and forest.Shrub has the maximum frequency in areas between 100 and 1000 m,while forest has dominance in areas above 800 m.According to the analysis of land cover changes in different ranges of elevation,the greatest change below 100 m was the process of urbanization.The process of the main land cover change occurred above 100 m was the transformation from shrub to forest.This result was consistent with the vertical change of natural vegetation distribution in Beijing.(3) Slope has a great influence on the distribution of land cover.Farmland and built-up areas are mostly distributed in fiat areas,while shrub and forest occupy steeper areas compared with other land cover types.Forest frequency increased with the increasing slope.Land cover changes differed from the slope gradients.In the plain area,the land cover change occurred as the result of urbanization.With the increasing of the slope gradient,afforestation,which converts shrub to forest,was the process of the primary land cover change.  相似文献   

15.
西双版纳橡胶抗寒种质资源的生态问题和流失风险   总被引:1,自引:0,他引:1  
基于实地调查和文献资料, 系统分析了西双版纳培育使用高抗寒、高产橡胶品种的生态问题和种质资源流失.结果表明:胶农以建立橡胶苗圃和经营橡胶种植地的循环模式发展橡胶产业;滥用高抗寒、高产品种使橡胶种植扩张到海拔1300 m的高地,导致了天然森林及物种遭到破坏、土壤肥力降低、区域性干旱、病虫害爆发、人象冲突;西双版纳橡胶高抗寒、高产种质资源及其知识产权正在无控制的向境外流出,潜在的生态风险和经济风险更大.天然橡胶产业部门和政府机构对此应给予足够的重视,并采取相应措施保护橡胶种质资源,减少生态风险.  相似文献   

16.
西双版纳勐仑地区景观格局变化定量分析   总被引:11,自引:1,他引:10       下载免费PDF全文
利用景观空间格局定量化分析软件FRAGSTATS和西双版纳勐仑地区1988、2003年两期Landsat影像解译结果,定量分析和比较了两时期景观格局的组成、各类型斑块特征、不同类型斑块间空间分布关系及其动态变化,并进一步分析了其生态效应.结果表明,15年来研究区内以经济林为主的人工景观组分剧烈增加,景观多样性上升;橡胶园等人工种植园地的扩张使得有林地破碎化:平均斑块面积由44km2减至21km2,斑块数由368增至441,同时边缘密度增加;导致其核心区缩小,斑块连接度下降;城镇建设用地的扩展也使得耕地(主要是水田)趋于破碎化.景观中不同斑块的交错分布格局也趋于简单.人工经济林的大面积发展和城市化使该区景观中人为影响显著增强,并产生了生物生境恶化及生态环境质量下降等不良生态效应.未来土地利用规划中应借鉴景观生态学原则,以尽量减少对生态环境的进一步破坏.  相似文献   

17.
The spread of non‐native conifers into areas naturally dominated by other vegetation types is a growing problem in South America. This process results in a landscape transformation as the conifers suppress native vegetation leading to reduced biodiversity, lower water availability and altered nutrient dynamics. Previous research highlights the broad spatial extents of land cover change in parts of Chile. However, in Southern Chile, the extent of plantations and the landscape characteristics associated with plantations and ongoing pine invasions are poorly understood. Here, we characterised non‐native pine land cover within one Landsat scene (World Reference System 2 Path 232/Row 92; ~34 000 km2) in Southern Chile. We created training data based on historical high‐resolution imagery, derived land cover predictors from time series of Landsat observations and used a Random Forest classifier to map the distribution of non‐native pines. The overall classification accuracy was 88%, and the accuracy of the non‐native pine class exceeded 90%. Although 71% of non‐native pine patches were within 500 m of other non‐native pine patches, isolated non‐native pine patches were found to occur up to 55 km from the nearest neighbour. These distant plantations could exacerbate invasion risk by creating propagule sources for novel invasion fronts. In relation to landscape characteristics, non‐native pines were found to be more likely to occur in low slope and mid‐elevation areas. Because most of the study area is native forest, most non‐native pine patches border native forest. However, non‐native pine patches were almost three times more likely than random patches to border grass/agriculture. This suggests that grasslands and disturbed sites, which have low resistance to non‐native pine invasion, are disproportionately exposed to pine propagules. Our results indicate that non‐native pine plantations are extensive across Southern Chile, and well poised to cause future invasion.  相似文献   

18.
海南岛主要森林类型时空动态及关键驱动因子   总被引:3,自引:0,他引:3       下载免费PDF全文
天然林,橡胶林和浆纸林之间转化是海南岛森林生态系统演变的主要形式.以海南岛1988年(建省),1998年(提出生态省建设)和2008年(目前)3个年代的天然林,橡胶林和浆纸林遥感解译为基础,分析了三者的格局动态及关键驱动因子,得到以下结论:(1)1988-1998和1998-2008年间,天然林总面积呈现先明显增加(增加面积10.76万hm2),后明显减少(减少面积20.03万hm2)特点;橡胶林呈先小幅下降(下降面积7.14万hm2),后大幅度增加(增加面积20.03万hm2)的变化特点,浆纸林则一直呈增加的趋势;(2)三者年动态变化率在1998-2008年间最大(1.335%),1988-2008年间次之(0.965%),1988-1998年间最小(0.490%);(3)1988-1998年天然林空间范围转化呈内部增加,外部扩展的特征,增加的部分主要来自橡胶林和其他用地类型,同时,浆纸林空间转化呈局部增加和橡胶林呈局部减少的特点;1998-2008相比1988-1998年间,天然林空间范围呈外缘收缩,内部减少的特点,橡胶林和浆纸林则呈内外部都扩张的特点.类型间转化天然林向橡胶林,浆纸林和其他类型用地转化较明显;(4)不同时期的林地面积变化主要受政策,农业人口,农林产品市场价格等外在因素的作用,同时也受到道路,高程和坡度等内在因素的影响.最后,从林业监督,生态补偿,市场调节等角度提出海南省林业发展建议.  相似文献   

19.
基于Biome-BGC模型的西双版纳橡胶林碳收支模拟   总被引:1,自引:0,他引:1       下载免费PDF全文
以西双版纳橡胶适宜种植区(海拔550—600m)的橡胶林(Hevea brasiliensis)为研究对象,应用参数同化后的Biome-BGC模型模拟了1959—2012年橡胶林的碳循环。结果表明,(1)与涡度相关监测结果相比,橡胶林年总初级生产力(Gross Primary Productivity,GPP)、年总呼吸(Total Respiration,Rt)的模拟精度分别为98.37%和90%。由于对年GPP的过低估计和对年Rt的过高估计,年净生态系统交换量(Net Ecosystem Exchange,NEE)的模拟值比实测值低157.35 g C m~(-2)a~(-1)。但若考虑干胶碳(139g C m~(-2)a~(-1)),模拟值与实测值十分接近;(2)橡胶林在模拟进行的前8年里因异养呼吸较高,以碳排放为主,NEE平均约357 g C m~(-2)a~(-1);之后转为以碳固定为主,NEE平均约~(-1)46 g C m~(-2)a~(-1);(3)橡胶林在40年的更新周期中可固定碳1835 g C m~(-2),是一个弱的碳汇。但与热带雨林相同周期固碳6720 g C m~(-2)相比,仍为碳源。以上结果为深入了解橡胶种植对区域碳循环的影响提供了科学依据,建议当地政府一方面要有计划的对老胶林进行更新,以维持当前橡胶林生态系统中的碳平衡;另一方面要注重对热带雨林的保护,从而实现区域经济和生态环境保护的协调发展。  相似文献   

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