首页> 外文期刊>International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences >MULTITEMPORAL ANALYSIS OF FOREST COVER CHANGE USING REMOTE SENSING AND GIS OF KANHA TIGER RESERVE, CENTRAL INDIA
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MULTITEMPORAL ANALYSIS OF FOREST COVER CHANGE USING REMOTE SENSING AND GIS OF KANHA TIGER RESERVE, CENTRAL INDIA

机译:基于印度中部坎哈老虎保护区遥感和GIS的森林覆盖变化多时相分析

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Forest ecosystems play a key role in global ecological balance and provide a variety of tangible and intangible ecosystem services that support the livelihoods of rural poor. In addition to the anthropogenic pressure on the forest resources, climate change is also impacting vegetation productivity, biomass and phenological patterns of the forest. There are many studies reported all over the world which use change in Land Use Land Cover (LULC) to assess the impact of climate change on the forest. Land use change (LC) refers to any anthropogenic or natural changes in the terrestrial ecosystem at a variety of spatial or temporal scale. Changes in LULC induced by any causes (natural/anthropogenic) play a major role in global as well as regional scale pattern which in turn affects weather and climate. Remote sensing (RS) data along with Geographic Information System (GIS) help in inventorying, mapping and monitoring of earth resources for effective and sustainable landscape management of forest areas. Accurate information about the current and past LULC including natural forest cover along with accurate means of monitoring the changes are very necessary to design future adaptation strategies and formulation of policies in tune of climate change. Therefore, this study attempts to analyze the changes of LULC of Kanha Tiger Reserve (KTR) due to climate change. The rationale for selecting KTR is to have a largely intact forest area without any interference so that any change in LULC could be attributed to the impact of climate change. The change analysis depicted changes in land use land cover (LULC) pattern by using multi-temporal satellite data over a period of time. Further, these detected changes in different LULC class influence the livelihoods of forest-dependent communities. As the study site is a Sal dominated landscape; the findings could be applied in other Sal dominated landscape of central India in making future policies, adaptation strategies and silvicultural practices for reducing the vulnerability of forest-dependent communities.
机译:森林生态系统在全球生态平衡中发挥关键作用,并提供各种有形和无形的生态系统服务,以支持农村贫困人口的生计。除了人为的森林资源压力外,气候变化还影响着森林的植被生产力,生物量和物候模式。全世界有许多研究报告利用土地利用土地覆被(LULC)的变化来评估气候变化对森林的影响。土地利用变化(LC)是指陆地生态系统在各种空间或时间尺度上的任何人为或自然变化。由任何原因(自然/人为因素)引起的LULC变化在全球和区域尺度格局中都起着重要作用,进而影响天气和气候。遥感(RS)数据与地理信息系统(GIS)一起有助于对地球资源进行清点,制图和监测,以实现对森林地区的有效和可持续景观管理。关于当前和过去的土地利用,土地利用变化的准确信息,包括自然森林覆盖率以及监测变化的准确方法,对于设计未来的适应策略和制定适应气候变化的政策非常必要。因此,本研究试图分析由于气候变化而引起的卡纳老虎保护区土地利用变化的变化。选择KTR的理由是拥有一个完整的森林区域,没有任何干扰,以便LULC的任何变化都可以归因于气候变化的影响。变化分析通过一段时间内使用多时相卫星数据描述了土地利用土地覆被(LULC)模式的变化。此外,这些在不同LULC类别中检测到的变化会影响依赖森林的社区的生计。由于研究地点是萨尔占主导地位的景观;该发现可应用于印度中部其他萨尔省主导的地区,以制定未来的政策,适应策略和造林实践,以减少依赖森林的社区的脆弱性。

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