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On the Potential of the RST-FLARE Algorithm for Gas Flaring Characterization from Space

机译:RST-FLARE算法从空间进行气体燃烧表征的潜力

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摘要

An effective characterization of gas flaring is hampered by the lack of systematic, complete and reliable data on its magnitude and spatial distribution. In the last years, a few satellite methods have been developed to provide independent information on gas flaring activity at global, national and local scale. Among these, a MODIS-based method, aimed at the computation of gas flared volumes by an Italian plant, was proposed. In this work, a more general version of this approach, named RST-FLARE, has been developed to provide reliable information on flaring sites localization and gas emitted volumes over a long time period for the Niger Delta region, one of the top five gas flaring areas in the world. Achieved results showed a good level of accuracy, in terms of flaring sites localization (95% of spatial match) and volume estimates (mean bias between in 16% and 20%, at annual scale and 2–9% in the long period) when compared to independent data, provided both by other satellite techniques and national/international organizations. Outcomes of this work seem to indicate that RST-FLARE can be used to provide, at different geographic scales, quite accurate data on gas flaring, suitable for monitoring purposes for governments and local authorities.
机译:缺乏有关其大小和空间分布的系统,完整和可靠的数据,阻碍了瓦斯燃烧的有效表征。在过去的几年中,已经开发了一些卫星方法来提供有关全球,国家和地方规模的天然气燃烧活动的独立信息。在这些方法中,提出了一种基于MODIS的方法,该方法旨在计算意大利工厂的瓦斯燃烧量。在这项工作中,已开发出一种更通用的方法,称为RST-FLARE,以提供有关尼日尔三角洲地区火炬位点本地化和长时间内气体排放量的可靠信息,尼日尔三角洲地区是前五名火炬气之一世界各地。取得的结果显示出良好的准确性,包括喇叭口的定位(95%的空间匹配)和体积估计(平均偏差在16%和20%之间,在年度范围内,长期偏差在2-9%之间)与其他卫星技术和国家/国际组织提供的独立数据相比。这项工作的结果似乎表明,RST-FLARE可用于在不同的地理范围内提供非常准确的瓦斯燃烧数据,适合用于政府和地方当局的监控目的。

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