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Thermal pollution assessment in nuclear power plant environment by satellite remote sensing data

机译:卫星遥感数据核电站环境中的热污染评估

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The main environmental issues affecting the broad acceptability of NPP (Nuclear Power Plant) are the emission of radioactive materials, the generation of radioactive and heat waste, and the potential for nuclear accidents. Satellite remote sensing is an important tool for spatio-temporal analysis and surveillance of environment, thermal heat waste of waters being a major concern in many coastal ecosystems involving nuclear power plants, as sharp changes in water temperature can significantly affect the distribution and physiology of aquatic biota and contribute to global warming. The thermal plume signature in the NPP hydrological system in TIR (Thermal Infrared) spectral bands of Landsat TM and ETM TIR band 6, ASTER, and MODIS TIR bands time series satellite have been used for WST (Water Surface Temperature) detection, mapping and monitoring. As a test case the methodology was applied for NPP Cernavoda, Romania during period of 1990-2011 years. Thermal discharge from two nuclear reactors cooling is dissipated as waste heat in Danube-Black -Sea Channel and Danube River. If during the winter thermal plume is localized to an area of a few km of NPP, the temperature difference between the plume and non-plume areas being about 1.5 °C, during summer and fall, is a larger thermal plume up to 5- 6 km far along Danube Black Sea Channel, the temperature change being of about 1.0 °C.
机译:影响NPP(核电站)广泛可接受性的主要环境问题是放射性物质的排放,放射性和热废物的产生,以及核事故的潜力。卫星遥感是一种重要的时空分析和环境监测的重要工具,水域的热量浪费是许多涉及核电站的沿海生态系统中的主要问题,随着水温的急剧变化会显着影响水生的分布和生理学Biota并有助于全球变暖。达雷斯特TM和ETM TIR带6,ASTER和MODIS TIR带时间序列卫星的TIR(热红外线)光谱带中的热羽流量签名已用于WST(水表面温度)检测,映射和监控。作为一个测试案例,该方法是在1990 - 2011年期间的罗马尼亚申请NPP Cernavoda。来自两种核反应堆冷却的热量排放在多瑙河 - 黑色--SEA通道和多瑙河中的废热散发。如果在冬季热羽流量局部地定位到NPP的几百万公里的面积,羽流和非羽流区域之间的温差为约1.5°C,在夏季和秋季期间,较大的热羽流量高达5-6沿着多瑙河黑海频道远远,温度变化为约1.0°C。

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