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THE USE OF ELECTRONIC DATA ANALYSIS AND 3-D MODELING TO MAKE US SMARTER

机译:利用电子数据分析和3D建模使我们更聪明

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Since 2004, AMEC has been involved in data compilation and analysis for several dams and certification of several levee systems, each with specific needs for data analysis. With respect to dams, there are the concrete structures, earthen embankments, previous geotechnical studies, instrumentation readings, ongoing studies and repair work, all requiring intensive data management in order to understand the system as a whole. To more easily analyze the various components, a digital model of the structure is constructed from the available data. Each individual element is constructed into its own distinct layer that can be activated and combined with any other element to provide a specific view. Individual screen captures can subsequently be animated for any reading period from one year to 50 years, which can rapidly present seepage related information. Information yielded can be analyzed to rapidly pinpoint specific areas of concern that may be investigated further, thus saving monies that would otherwise be spent on a broad generic study that may not yield significant information. Once the model has been constructed, data links can be established to display boring logs, stability analyses, laboratory tests, etc. available for each location on the model.rnAn interactive database system has been developed where querying features can display a list and a display of standardized boring logs, laboratory results, stability analyses, conventional and 3-D survey data, and photographs that are available at each boring location. With the hand-held GPS/camera/data logging unit, the geologist or engineer can conduct a walk-over of the levee system, or portions of the levee system, and identify areas of concern that should be studied in greater depth. This data can be loaded into the database model, located and used as a tool for planning and scheduling inspections, surveys, and geotechnical drilling, thus maximizing efforts in the field, reducing overall costs. A unique feature of the interactive database system is that the client and/or regulating agency can be granted access to the system so that they can review progress for any or all segments. Where multiple individuals are reviewing the data, access to the database system can be limited to those segments under review or for the entire system on an as need basis.
机译:自2004年以来,AMEC参与了多个大坝的数据汇编和分析以及多个堤防系统的认证,每个都有具体的数据分析需求。关于大坝,有混凝土结构,土堤,先前的岩土研究,仪器读数,正在进行的研究和维修工作,所有这些都需要大量的数据管理才能理解整个系统。为了更轻松地分析各种组件,从可用数据构建了结构的数字模型。每个单独的元素都被构造成其自己的独特层,可以激活该层并将其与任何其他元素组合以提供特定的视图。随后可以对单个屏幕截图进行动画处理,时间范围为一年到50年,可以快速显示与渗流相关的信息。可以对产生的信息进行分析,以快速查明可能需要进一步研究的特定关注领域,从而节省大量资金,否则这些钱将被花费在可能无法产生大量信息的广泛的通用研究中。一旦构建了模型,就可以建立数据链接以显示可用于模型上每个位置的钻探日志,稳定性分析,实验室测试等。rn已经开发了一种交互式数据库系统,其中的查询功能可以显示列表和显示标准钻孔记录,实验室结果,稳定性分析,常规和3-D调查数据以及每个钻孔位置可用的照片。借助手持式GPS /摄像机/数据记录仪,地质学家或工程师可以对堤防系统或堤防系统的一部分进行穿越,并确定需要深入研究的问题区域。可以将这些数据加载到数据库模型中,进行定位并用作规划和安排检查,勘测和岩土钻探的工具,从而最大程度地提高了现场工作量,降低了总体成本。交互式数据库系统的独特之处在于,可以授予客户和/或管理机构访问系统的权限,以便他们可以查看任何或所有部门的进度。如果有多个人正在审阅数据,则可以根据需要将数据库系统的访问权限限制为正在审阅的那些段或整个系统。

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