The durability of facades is heavily affected by multiple factors like microbial growth and weather conditions among others. Biocides are often used to resist these factors and protect the facades. However, the biocides get washed out due to rains and other factors like geometric structure of the facade, orientation of the building. It is therefore, important to understand how these factors affect the durability of facades, leading to a requirement of expert analysis. In this paper, we propose a technical pipeline and a set of interaction techniques to support data analysis within the immersive environment for our case study. Our technical pipeline mainly consists of three steps: 3D reconstruction, embedding sensor data and visualization and interaction techniques. We made a formative evaluation of our prototype to get insights from microbiology, biology and VR experts. The remarks from the experts and the results of the evaluation suggest that an immersive analytic system in our case study could be beneficial for both experts and non-expert users.
翻译:显形物的持久性受到微生物生长和天气条件等多种因素的严重影响; 生物杀灭剂常常被用来抵制这些因素和保护表面; 然而,由于降雨和外表的几何结构、建筑物方向等其他因素,生物杀灭剂被冲走; 因此,必须了解这些因素如何影响显形物的持久性,从而需要专家分析; 在本文件中,我们为我们的案例研究提议了一个技术管道和一套互动技术,用以支持浸入环境内的数据分析; 我们的技术管道主要由三个步骤组成:3D重建、嵌入传感器数据以及可视化和互动技术; 我们对原型进行了成型评估,以便从微生物学、生物学和VR专家那里获得洞察力。 专家们的评论和评价结果表明,我们案例研究中的浸入式分析系统对专家和非专家用户都有好处。