By Martin Breunig, Mulhim Al-Doori, Edgar Butwilowski, Paul V. Kuper, Joachim Benner, Karl Heinz Haefele
Nowadays 3D Geoinformation is required for plenty of making plans and research initiatives. for instance, 3D urban and infrastructure types are paving the way in which 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 equivalent to the geo-sciences, civil engineering, 3D urban modeling, 3D geological and geophysical modeling, and, final yet now not least, desktop technological know-how. the varied demanding situations of 3D Geoinformation technological know-how problem new ways and the advance of criteria for above- and under-ground 3D modeling, effective 3D info administration, visualization and research. eventually, the mixing of alternative 3D ways and knowledge types is obvious as essentially the most very important demanding situations to be solved.
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Additional info for 3D Geoinformation Science: The Selected Papers of the 3D GeoInfo 2014
Earthquake simulation is one area with spectacular advances in recent years, and material scientists start to understand structural behaviour by micro-macroscopic simulation based on ﬁrst geometric and physical principles. In this paper, we will present recent results on coupling geographic, infrastructure, and building models to multi-resolution numerical simulations. In order to achieve this, a parallel data access framework with interfaces to all parts of the simulation pipeline such as pre-processing, numerical simulation, and post-processing has been developed.
The whole simulation is performed on three levels of resolution, each of which is discretised by a fast voxelisation algorithm to generate a computational grid for the CFD simulation. V. -P. Mundani Á E. de E. de © Springer International Publishing Switzerland 2015 M. Breunig et al. 1007/978-3-319-12181-9_4 55 56 V. Varduhn et al. 1 Introduction Many important scientiﬁc and technological developments in the last few decades have resulted in a tremendous increase in availability of 3D geometric models on different scales.
The combined representation of topology in different spatial dimensions has not been investigated systematically. In n-d space, a multitude of different representations from simplicial complexes to boundary representations and Constructive Solid Geometry are used (Schaeben et al. 2003; Van Oosterom and Stoter 2010). In this paper, we investigate how a more general concept, namely oriented hierarchical G-Maps, can be used to handle the topology of digital spatial models in a more generic way. The approach is general enough to support 2- and 3-dimensional models, as well as 2-d manifolds in 3-d space.
3D Geoinformation Science: The Selected Papers of the 3D GeoInfo 2014 by Martin Breunig, Mulhim Al-Doori, Edgar Butwilowski, Paul V. Kuper, Joachim Benner, Karl Heinz Haefele