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GIS-based multi-criteria earthquake hazards evaluation using analytic hierarchy process for a nuclear power plant site, west Alexandria, Egypt

机译:基于层次分析法的基于GIS的多准则地震危险性评估,用于埃及西部亚历山大港的核电站站点

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Nuclear power plants are designed to prevent the hazardous effects of the earthquakes and any external events to keep the safety of the plant. Ninety-one shallow seismic refraction profiles were performed to determine shear wave velocity of the engineering layers at the site of El Dabaa area that is situated to the northern coastline of Egypt for seismic hazard micro-zonation evaluation according to hazard index values. A microzonation is a procedure of delineating an area into individual zones having different ranks of numerous seismic hazards. This will aid in classifying areas of high seismic risk which is vigorous for industrial design of nuclear structures. The site response analysis requires the characterization of subsurface materials considering local subsurface profiles of the site. Site classification of the area under investigation was undertaken using P-and S-waves and available borehole data. The studied nuclear power plant site has been characterized as per NEHRP site classification using an average velocity of transverse wave (V-s(30)) of depth 30 m which acquired from seismic survey. This site was categorized into two site classes: the major one is "site class B," and the minor one is "site class A." The attenuation coefficient, the damping ratio and the liquefaction potential are geotechnical parameters which were derived from P-and S-waves, and have their major effects on the seismic hazard contribution. 1D ground response analysis was carried out in the places of seismic profiles inside the site for estimating the amount of ground quaking using peak ground acceleration (PGA), site amplification, predominant frequency and spectral accelerations on the surface of ground by the DEEPSOIL software package. Seven factors (criteria) deliberated to assess the earthquake hazard index map are: (1) the peak ground acceleration at the bedrock, (2) the amplification of the site, (3) the liquefaction potential, (4) the main frequency of the earthquake signal, (5) the average Vs of the first 30 m from the ground surface, (6) the depth to the groundwater and (7) the depth to the bedrock. These features were exemplified in normalized maps after uniting them to 0-1 scores according to some criteria by the minimum and maximum values as linear scaling points. Multi-criteria evaluation is an application of multi-criteria decision analysis theory that used for developing a seismic hazard index map for a nuclear power plant site at El Dabaa area in ArcGIS 10.1 software. Two models of decision making were used in this work for seismic hazard microzonation. The analytic hierarchy process model was applied to conduct the relative weights of the criteria by pairwise comparison using Expert Choice Software. An earthquake hazard index map was combined using Weighted Linear Combination model of the raster weighted overlay tool of ArcGIS 10.1. The results indicated that most of the study site of the nuclear power plant is a region of low to moderate hazard; its values are ranging between 0.2 and 0.4.
机译:核电厂的设计旨在防止地震和任何外部事件的危害,以保持电厂的安全。进行了九十一个浅层地震折射剖面图,以确定位于埃及北部海岸线的El Dabaa地区站点的工程层的剪切波速度,以便根据灾害指数值进行地震灾害微区划评估。微区划是将区域划分为具有不同等级的众多地震危险的各个区域的过程。这将有助于对地震危险性高的区域进行分类,这对核结构的工业设计很有用。场地响应分析需要考虑场地的局部地下剖面来表征地下材料。使用P波和S波以及可用的井眼数据对调查区域进行现场分类。根据NEHRP场地分类,使用从地震勘探获得的深度为30 m的平均横波速度(V-s(30))对所研究的核电厂场地进行表征。该网站分为两个网站类别:主要的一个是“网站类别B”,次要的是“网站类别A”。衰减系数,阻尼比和液化势是从P波和S波推导出来的岩土参数,它们对地震危害的贡献有很大影响。在场地内部的地震剖面处进行了一维地面响应分析,以使用DEEPSOIL软件包在地面上的峰值地面加速度(PGA),场地放大,主要频率和频谱加速度来估计地震的程度。评估地震危险指数图的七个因素(标准)是:(1)基岩处的峰值地面加速度;(2)场地的放大;(3)液化潜力;(4)地震的主要频率。地震信号,(5)距地面前30 m的平均Vs,(6)到地下水的深度,(7)到基岩的深度。在根据一些标准将最小值和最大值作为线性缩放点将它们组合为0-1分数后,这些特征在标准化地图中得到了举例说明。多准则评估是多准则决策分析理论的一种应用,用于在ArcGIS 10.1软件中为El Dabaa地区的核电站现场开发地震危险指数图。在这项工作中,有两种决策模型用于地震灾害微区划。使用专家选择软件,通过成对比较,将层次分析过程模型应用于准则的相对权重。使用ArcGIS 10.1栅格加权叠加工具的“加权线性组合”模型组合了地震灾害指数地图。结果表明,核电站的大部分研究地点都处于低至中度危险区域。其值在0.2到0.4之间。

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