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GIS Database Applications to Evaluation of Marine Geohazards: New Los Angeles County Ocean Outfall Project

机译:GIS数据库在评估海洋地质灾害中的应用:新洛杉矶县海洋排污口项目

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Marine infrastructure projects are becoming larger and more complex as technology improves. Existing and proposed structures are often located in areas subject to marine geohazards that may include active faulting, submarine landslides, shallow gas, turbidity currents, and complex subsurface stratigraphy. Large amounts of data must be acquired, stored, analyzed, interpreted, and presented to evaluate these geohazards during all stages of project work from feasibility to construction. Utilizing a GIS database is the most efficient way to complete these tasks.The Sanitation Districts of Los Angeles County (LACSD) are evaluating the feasibility of a new tunnel and ocean outfall offshore the Port of Los Angeles, California. This project serves as a case study on the essential role of the GIS database in storing and analyzing various types of data, allowing integrated marine geohazard evaluation of potential tunnel alignments and diffuser locations. A GIS database containing data from previous work in the area served as the starting point for the project GIS database as the feasibility phase began in 2006.Geological, geophysical, and geotechnical data were added to the project GIS database during this feasibility phase. The project area lies in a region characterized by complex geology due to interaction between the Pacific and North American Tectonic Plates. Seismicity and geologic structure, as well as fault data for the Palos Verdes and Cabrillo faults which traverse the project area were incorporated into the GIS database. Geophysical data in the project GIS database included multibeam bathymetry and seismic reflection data with interpreted geologic contacts. Geotechnical GIS data consisted of logs from borings, Cone Penetrometer Tests and vibracores performed in various portions of the project area.These data were integrated using GIS to evaluate marine geohazards in the project area. Geologic contacts interpreted in the seismic data were ground truthed with the geotechnical data, exported to GIS, gridded and contoured. Areas characterized by faulting, shallow gas, hard rock, possible gas vent craters, potentially unstable slopes, and sediments possibly prone to liquefaction were mapped by integrating the GIS data.This mapped information was provided to the LACSD to assist in tunnel alignment/diffuser evaluation, cost/risk analysis, preliminary diffuser and tunnel design, tunneling equipment selection, and assessing construction methods and risks. As the project moves toward design in later phases, new data will be obtained and added to the project GIS database. Therefore, this GIS database will continue its role as an essential tool in helping to determine the final tunnel alignment and diffuser locations for this critical infrastructure project.
机译:随着技术的提高,海洋基础设施项目变得更大,更复杂。现有和拟议的结构通常位于可能包括主动故障,潜艇滑坡,浅气体,浊度电流和复杂的地下地层的区域受海洋地质血清的区域。必须获取大量数据,存储,分析,解释,并提出,并在项目的所有阶段从可行性施工时评估这些地质锯齿。利用GIS数据库是填写这些任务的最有效方法。 洛杉矶县(LACSD)的卫生区正在评估加利福尼亚州洛杉矶港的新隧道和海洋排出场所的可行性。该项目是关于GIS数据库在存储和分析各种类型数据时的基本作用的案例研究,允许集成海洋地质曲程评估潜在的隧道对准和扩散器位置。作为项目GIS数据库的前一个工作中的数据库包含来自以前的工作的数据库,因为2006年开始的可行性阶段是项目GIS数据库的起点。 在这种可行性阶段,将地质,地球物理和岩土学数据添加到项目GIS数据库中。由于太平洋和北美构造板材之间的相互作用,该项目区域位于特征的区域,其特征在于,由于太平洋和北美构造板之间的互动。地震性和地质结构,以及遍历项目区域的PALOS verdes和Cabrillo故障的故障数据被纳入GIS数据库。项目GIS数据库中的地球物理数据包括具有解释性地质接触的多滨沐浴浴和地震反射数据。岩土内的GIS数据包括来自项目区域的各个部分中的硼管,锥形孔隙计测试和Vibracores的日志。 这些数据综合使用GIS进行评估项目区域的海洋地质曲线。在地震数据中解释的地质触点是与岩土数据进行判断,出口到GIS,网格和轮廓。通过整合GIS数据映射出故障,浅气体,硬岩,可能的气体通风口,可能不稳定的斜坡和沉积物的区域。 该映射信息被提供给LACSD,以协助隧道对准/扩散器评估,成本/风险分析,初步扩散器和隧道设计,隧道设备选择和评估施工方法和风险。由于项目在稍后的阶段向设计移动时,将获得新数据并将其添加到项目GIS数据库中。因此,此GIS数据库将作为帮助确定该关键基础架构项目的最终隧道对准和扩散器位置的基本工具,继续实现其作用。

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