By Martin Breunig, Mulhim Al-Doori, Edgar Butwilowski, Paul V. Kuper, Joachim Benner, Karl Heinz Haefele
Nowadays 3D Geoinformation is required for lots of making plans and research projects. for instance, 3D urban and infrastructure versions are paving the best way for complicated environmental and noise analyzes. 3D geological sub-surface types are wanted for reservoir exploration within the oil-, gas-, and geothermal undefined. hence 3D Geoinformation brings jointly researchers and practitioners from various fields resembling the geo-sciences, civil engineering, 3D urban modeling, 3D geological and geophysical modeling, and, final yet no longer least, computing device technological know-how. the varied demanding situations of 3D Geoinformation technological know-how crisis new methods and the advance of criteria for above- and under-ground 3D modeling, effective 3D facts administration, visualization and research. ultimately, the combination of other 3D techniques and knowledge types is visible as some of the most vital demanding situations to be solved.
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Extra resources for 3D Geoinformation Science: The Selected Papers of the 3D GeoInfo 2014
Sub-surface or city models are on the rise. The area of augmented reality, especially in the context of Smart Cities has enormous potential. At the Karlsruhe Institute of Technology (KIT) an Android based augmented reality viewer was developed in 2013 which is capable of presenting 3-d building models (Breunig et al. 2013a, b). For the further development in this research area still many challenges need to be solved. Precise location management, limited processing power and limited memory of the mobile devices are just some of the problems which must be resolved.
While the real life city model including the drainage system has been provided by the authorities of the city of Munich and comprises an area of about 2 by 2 km with detailed topography and a complete set of approximately 3,000 buildings modelled on LOD 1 of CityGML, IFC-models are the initial starting points for generating octrees on the level of individual buildings. In order to investigate the effects of the drainage system collapsing due to a heavy rain scenario, a fully three-dimensional parallel free surface flow simulation is incorporated with the interaction of the onedimensional pipe-network flow.
This applies in particular when model modiﬁcations are as frequent as in an ongoing planning process. In the context of the 3DTracks project, a logical framework has been developed for the multi-representation of tunnel Modeling and Managing Topology for 3-D … 47 planning models at several LoDs. Two sub-projects of the 3Dtracks research group at Munich University of Technology have developed a methodology and software system that aims at ensuring consistency across levels-of-detail during synchronous co-operative interactive tunnel planning (Borrmann et al.