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Proposta metodológica para o imageamento digital e modelagem virtual 3d de um bloco de rochas travertinas

机译:钙华岩块的数字成像和虚拟3D建模的方法学建议

摘要

In this paper we present the methodological procedures involved in the digital imaging in mesoscale of a block of travertines rock of quaternary age, originating from the city of Acquasanta, located in the Apennines, Italy. This rocky block, called T-Block, was stored in the courtyard of the Laboratório Experimental Petróleo "Kelsen Valente" (LabPetro), of Universidade Estadual de Campinas (UNICAMP), so that from it were performed Scientific studies, mainly for research groups universities and research centers working in brazilian areas of reservoir characterization and 3D digital imaging. The purpose of this work is the development of a Model Solid Digital, from the use of non-invasive techniques of digital 3D imaging of internal and external surfaces of the T-Block. For the imaging of the external surfaces technology has been used LIDAR (Light Detection and Range) and the imaging surface Interior was done using Ground Penetrating Radar (GPR), moreover, profiles were obtained with a Gamma Ray Gamae-spectômetro laptop. The goal of 3D digital imaging involved the identification and parameterization of surface geological and sedimentary facies that could represent heterogeneities depositional mesoscale, based on study of a block rocky with dimensions of approximately 1.60 m x 1.60 m x 2.70 m. The data acquired by means of terrestrial laser scanner made available georeferenced spatial information of the surface of the block (X, Y, Z), and varying the intensity values of the return laser beam and high resolution RGB data (3 mm x 3 mm), total points acquired 28,505,106. This information was used as an aid in the interpretation of radargrams and are ready to be displayed in rooms virtual reality. With the GPR was obtained 15 profiles of 2.3 m and 2 3D grids, each with 24 sections horizontal of 1.3 and 14 m vertical sections of 2.3 m, both the Antenna 900 MHz to about 2600 MHz antenna. Finally, the use of GPR associated with Laser Scanner enabled the identification and 3D mapping of 3 different radarfácies which were correlated with three sedimentary facies as had been defined at the outset. The 6 profiles showed gamma a low amplitude variation in the values of radioactivity. This is likely due to the fact of the sedimentary layers profiled have the same mineralogical composition, being composed by carbonate sediments, with no clay in siliciclastic pellitic layers or other mineral carrier elements radioactive
机译:在本文中,我们介绍了来自意大利亚平宁山脉Acquasanta市的第四纪钙华岩石块中尺度数字成像的方法学步骤。这个岩石块被称为T形块,被存放在坎皮纳斯大学(UNICAMP)的实验实验室Petróleo“ Kelsen Valente”(LabPetro)的院子里,因此从那里进行了科学研究,主要是针对研究型大学在巴西的储层表征和3D数字成像领域设有研究中心。这项工作的目的是通过使用T型块内表面和外表面的数字3D成像非侵入性技术来开发Model Solid Digital。对于外表面的成像,使用了LIDAR(光检测和测距)技术,而成像表面的内部使用了探地雷达(GPR)进行了成像,此外,还使用Gamma RayGamae-spectômetro笔记本电脑获得了轮廓。基于对尺寸约为1.60 m x 1.60 m x 2.70 m的块状岩石的研究,3D数字成像的目标涉及识别和参数化可以表示异质沉积中尺度的表面地质和沉积相。通过地面激光扫描仪获取的数据可获取块表面(X,Y,Z)的地理参考空间信息,并改变返回激光束的强度值和高分辨率RGB数据(3 mm x 3 mm) ,获得的总积分为28,505,106。该信息被用作雷达图解释的辅助,并准备在房间虚拟现实中显示。利用GPR获得了15个2.3 m的轮廓和2个3D栅格,每个栅格的水平部分为1.3 m,垂直部分为2.3 m,垂直部分为1.3 m和14 m,天线均为900 MHz至2600 MHz左右。最后,与激光扫描仪相关联的GPR的使用实现了3种不同雷达相的识别和3D绘图,这些雷达相与一开始就定义的3个沉积相相关。这6个剖面图表明γ的放射性值振幅低。这可能是由于以下事实:剖面的沉积层具有相同的矿物学组成,由碳酸盐沉积物组成,硅质碎屑弹性层中没有粘土或其他放射性矿物元素

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