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首页> 外文期刊>International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences >THE USE OF MULTI-TEMPORAL SENTINEL SATELLITESIN THE ANALYSIS OF LAND COVER/LAND USE CHANGESCAUSED BY THE NUCLEAR POWER PLANT CONSTRUCTION
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THE USE OF MULTI-TEMPORAL SENTINEL SATELLITESIN THE ANALYSIS OF LAND COVER/LAND USE CHANGESCAUSED BY THE NUCLEAR POWER PLANT CONSTRUCTION

机译:使用多时间哨兵卫星卫星土地覆盖/土地利用的分析由核电厂建设

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Turkey, due to increased demand for energy has made plans for nuclear power generation since 1970. Sinop Nuclear Power Plant, which will be built on Sinop ?nceburun peninsula at the Black Sea coast of Turkey, is one of the three different nuclear power plants planned to be built in Turkey. The Sinop Nuclear Power Plant consist of four different reactors. The construction of the first unit is expected to be completed by 2023, and the fourth unit is planned to be activated by 2028. On the other hand, the construction of the nuclear power plant will alter the land use at the actual plant site and its surroundings and hence may cause significant environmental changes. As an indicator, more than 650000 trees have been cut so far for the construction of nuclear power plant, and this can adversely affect the ecological balances of the region by endangering habitats and creating ecological damages. The aim of this study is to analyse the land use/land cover changes (LULC) in the forestry-dominated areas due to the construction of nuclear power plants using the multi-temporal Synthetic Aperture Radar (SAR) and optical satellite images. For this purpose, different change detection methods such as SAR intensity image differencing, supervised image classification method (Support Vector Machine algorithm) were applied to Sentinel 1 satellite image datasets (2016-2019) to evaluate the annual changes due to construction. In addition, a correlation analysis was performed between the canopy structure and vegetation biomass using Sentinel 2 NDVI dataset (2016-2019) and calibrated Sentinel 1 backscatter values. Furthermore, using the Google Earth Engine (GEE), the Landsat 8 NDVI time series of the affected forest area, generated at 8-day intervals, was used to validate changes in vegetation.
机译:由于对能源的需求增加,土耳其提出了自1970年以来的核发发电计划。辛博核电站将在稻田(土耳其黑海海岸的Nceburun半岛)是三种不同的核电厂之一建造在土耳其。辛亥核电站由四种不同的反应器组成。预计第一单位的建造预计将于2023年完成,计划在2028年激活第四个单位。另一方面,核电站的建设将改变实际工厂现场的土地使用周围环境,因此可能会造成重大的环境变化。作为指标,迄今为止核电站建造了超过650000棵树,这可能会通过危及栖息地并创造生态损害来对该地区的生态平衡产生不利影响。本研究的目的是通过使用多时间合成孔径雷达(SAR)和光学卫星图像,分析林业主导地区的土地使用/陆地覆盖变化(LULC)。为此目的,不同的改变检测方法,例如SAR强度图像差异,监督图像分类方法(支持向量机算法)被应用于Sentinel 1卫星图像数据集(2016-2019)以评估施工导致的年度变化。另外,使用哨兵2 NDVI数据集(2016-2019)和校准的哨兵1反向散射值,在冠层结构和植被生物量之间进行相关分析。此外,使用谷歌地球发动机(GEE),在8天间隔产生的受影响森林面积的Landsat 8 NDVI时间序列,用于验证植被的变化。

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