首页> 外文会议>ICONE18;International conference on nuclear engineering >DEMOCRATIZATION OF 3D APPLICATIONS IN NUCLEAR POWER PLANTS; LASER SCANNING 3D TECHNOLOGY IMPLEMENTATION IN SPANISH PWRS
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DEMOCRATIZATION OF 3D APPLICATIONS IN NUCLEAR POWER PLANTS; LASER SCANNING 3D TECHNOLOGY IMPLEMENTATION IN SPANISH PWRS

机译:核电厂中3D应用程序的去民主化;西班牙PWRS中的激光扫描3D技术实施

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On January 2008, the US NRC issued the Generic Letter 2008-01 [1], "Managing gas accumulation in emergency core cooling, decay heat removal and containment spray systems". Among other responses, this letter requires an evaluation of locations sensitive to accumulate gases in several safety systems.In order to get accurate data related to the real slope of horizontal pipes and other geometrical parameters needed for this evaluation, laser scanning and 3D modeling techniques have been applied in Spanish Nuclear Power Plants. From October 2008 to December 2009, five Spanish units have been scanned and modeled. As a result of these activities, the plants have obtained detailed 3D models as well as 2D as-built drawings of the selected components. These models were integrated in 3D web servers which give a panoramic view of the scanned areas and permitted measurements in the local coordinate system of the plant. Moreover, the 2D elevation drawings included accurate and useful information for the plants in order to make decisions related to the GL-2008-01 requirements.The geometric information generated in the frame of the GL-2008-01 activities is being currently used for alternative applications. For instance, laser scanning technology is being used to enhance design modification procedures. A pilot project on the MSRs replacement is being currently carried out with successful results. This technology has the advantage that new components from CAD software can be updated in the as-built models obtained through laser scanning. In addition to this, it's very easy to check fitting and interferences, and also to make accurate measurements and handling simulations.The potential applications in personnel training and radiological protection are also very important. The panoramicviewers on 3D web servers are versatile and could fit the specific requirements of each organization. Regarding staff training, virtual tours and component seekers are being currently developed. These tools provide a significant save of time and dose and also give independence for each person to get to the working place without external help or time-consuming paper consulting. Integration with existing plant databases is also possible through the panoramic viewers and is currently being developed for In-Service Inspections and Maintenance applications.The main advantage of these products is their accessibility with free visors which don't need specific training. Therefore, the implementation of these tools doesn't need additional investments. In conclusion, Laser 3D Technology Applications set the first step on the democratization of these powerful 3D environments among common users as integrated tools in their daily work.
机译:2008年1月,美国NRC发出了通用信函2008-01 [1],“管理应急堆芯冷却,衰变除热和安全壳喷淋系统中的气体累积”。除其他答复外,这封信还要求对几个安全系统中对积聚气体敏感的位置进行评估。 为了获得与水平管的实际坡度和此评估所需的其他几何参数有关的准确数据,激光扫描和3D建模技术已在西班牙核电站中得到应用。从2008年10月到2009年12月,对五个西班牙单位进行了扫描和建模。这些活动的结果是,工厂获得了选定组件的详细3D模型以及2D竣工图。这些模型已集成在3D Web服务器中,该服务器可提供扫描区域的全景图,并允许在工厂的本地坐标系中进行测量。此外,二维立面图包括有关工厂的准确和有用的信息,以便做出与GL-2008-01要求有关的决策。 GL-2008-01活动框架中生成的几何信息当前正用于替代应用程序。例如,激光扫描技术被用于增强设计修改程序。目前正在开展有关MSR替换的试点项目,并取得了成功的结果。该技术的优势在于,可以在通过激光扫描获得的建成模型中更新CAD软件中的新组件。除此之外,检查装配和干涉以及进行准确的测量和处理模拟非常容易。 在人员培训和放射防护中的潜在应用也非常重要。 3D Web服务器上的全景查看器功能多样,可以满足每个组织的特定要求。关于人员培训,目前正在开发虚拟游览和组件搜寻器。这些工具可节省大量时间和精力,并且无需外部帮助或耗时的纸张咨询,就使每个人都能独立上班。也可以通过全景查看器与现有工厂数据库集成,并且目前正在开发中,用于在役检查和维护应用程序。 这些产品的主要优点是可以使用不需要特定培训的免费遮阳板进行操作。因此,这些工具的实施不需要额外的投资。总而言之,Laser 3D技术应用程序将这些强大的3D环境民主化,作为日常工作中的集成工具,迈出了第一步。

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