首页> 外文会议>Remote Sensing and Modeling of Ecosystems for Sustainability IV; Proceedings of SPIE-The International Society for Optical Engineering; vol.6679 >Spatial distribution and temporal variation of ecological capital and their relation to climate change and the changes of land use and land cover on the northern slope of the Tianshan Mountain, China
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Spatial distribution and temporal variation of ecological capital and their relation to climate change and the changes of land use and land cover on the northern slope of the Tianshan Mountain, China

机译:天山北坡生态资本的时空分布及其与气候变化的关系以及土地利用和土地覆盖的变化

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Ecological capital of an ecosystem is the total value of the direct biological products in the system and the value of ecological service. The assessment of ecological capital is a new research area emerged from the challenge in the interdisciplinary research of ecology and social development. It is fundamental to establish a green national economy accounting system. Scientific evaluation of ecological capital is helpful for considering ecological cost in making the decision for economic development, and it is demanded for sustainable development. In this study, a quantitative assessment model of ecological property has been developed based on the analysis of per unit yield in the conventional ecology together with the utilization of remote sensing data from the Landsat TM, CBERS, MODIS, and NOAA database, land use and land cover data, and field measurements. The study area covers Changji Autonomous District, Xinjiang, China on the northern slope of Tianshan Mountain that is located in a typical arid area. Dynamic monitoring of ecological capital was performed using remote sensing techniques. Spatial distribution and temporal variation of ecological properties were characterized. The effects of land cover and land use as well as climate change on those variation and distribution were analyzed. The results show a significant increase in the ecological capital during 1990-2003. The spatial distribution of ecological properties is characterized by a negative gradient from higher altitudes to lower altitudes (plains) and from oases to deserts, which is consistent with the zonal distribution of vegetation in arid areas. Due to global warming, the climate in Xinjiang has been changed into a warmer and wetter environment during the last 50 years, which improves the plant growing conditions in the alpine regions, piedmont hilly regions, and the oases. On the other hand, the natural environment in the arid and semiarid regions in northwest China becomes more severe, and the stress to the natural ecosystems becomes more and more serious. Human activities affect the quality and the area of ecosystems and change the service functions of ecosystems. Consequently the fluctuation of ecological capital occurs.
机译:生态系统的生态资本是系统中直接生物产品的总价值和生态服务的价值。生态资本评估是生态学与社会发展跨学科研究面临的挑战中出现的一个新的研究领域。建立绿色国民经济核算体系是根本。对生态资本进行科学评估,有助于在决定经济发展决策时考虑生态成本,是可持续发展的要求。在这项研究中,在分析常规生态系统中每单位产量的基础上,结合Landsat TM,CBERS,MODIS和NOAA数据库,土地利用和土地覆盖数据和实地测量。研究区域覆盖了位于典型干旱地区天山北坡的中国新疆昌吉自治区。利用遥感技术对生态资本进行动态监测。表征了生态特性的空间分布和时间变化。分析了土地覆盖和土地利用以及气候变化对这些变化和分布的影响。结果表明,在1990年至2003年期间,生态资本显着增加。生态特性的空间分布特征是从高海拔到低海拔(平原)以及从绿洲到沙漠的负梯度,这与干旱地区植被的区域分布是一致的。由于全球变暖,在过去的50年中,新疆的气候已转变为更温暖和湿润的环境,从而改善了高山地区,山前丘陵地区和绿洲的植物生长条件。另一方面,中国西北干旱半干旱地区的自然环境越来越严峻,对自然生态系统的压力越来越大。人类活动影响生态系统的质量和面积,并改变生态系统的服务功能。因此,发生了生态资本的波动。

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