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UID:pretalx-foss4g-europe-2026-EVXR3K@talks.osgeo.org
DTSTART;TZID=EET:20260629T113000
DTEND;TZID=EET:20260629T120000
DESCRIPTION:Efficient management of the integrated water cycle requires adv
 anced digital tools capable of centrally integrating\, analyzing\, and opt
 imizing hydraulic\, operational\, and territorial information. In this con
 text\, Giswater 4 represents a qualitative leap in the digitalization of w
 ater services\, incorporating substantial improvements in its architecture
 \, interoperability\, and analytical capabilities. This work presents the 
 implementation and adaptation of Giswater 4 within the framework of the PE
 RTE project (Strategic Projects for Economic Recovery and Transformation) 
 for the digitalization of the water cycle at Aigues de Manresa. Version 4 
 introduces a more robust and intuitive interface\, greater integration wit
 h other platforms through the development of a REST API\, and enhanced cap
 acity to work with hydraulic digital twins. Additionally\, it includes new
  functionalities aimed at advanced management of water supply and sanitati
 on networks\, such as traceability analysis\, scenario evaluation\, leak d
 etection\, and prioritization of infrastructure investments.
DTSTAMP:20260604T211905Z
LOCATION:A12
SUMMARY:Giswater 4: Open Source Innovation in Water Network Planning - Davi
 d Cano
URL:https://talks.osgeo.org/foss4g-europe-2026/talk/EVXR3K/
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UID:pretalx-foss4g-europe-2026-ZSUR83@talks.osgeo.org
DTSTART;TZID=EET:20260630T150000
DTEND;TZID=EET:20260630T153000
DESCRIPTION:The IBERGIS platform integrates the 1D/2D hydrodynamic model of
  IBER and the SWMM urban drainage model into a single GIS environment insi
 de QGIS\, enabling an efficient workflow for urban flood analysis. Using a
  coupled 1D/2D approach\, both the drainage network and the surface runoff
  are modelled\, with depths\, velocity\, water elevation and extents obtai
 ned as outputs\, which can be visualised directly from the GIS interface. 
 This integration enables rapid interpretation of critical areas and automa
 ted post-processing without external tools. These results demonstrate how 
 GIS-based flood modelling can support urban planning and climate adaptatio
 n decisions. The applied case of Manresa provides a replicable workflow fo
 r municipalities seeking to enhance urban resilience through spatially int
 egrated hydraulic modelling.
DTSTAMP:20260604T211905Z
LOCATION:A13
SUMMARY:GIS Based 1D/2D Flood Modelling with IBERGIS: A Replicable Workflow
  for Urban Climate Resilience - David Cano
URL:https://talks.osgeo.org/foss4g-europe-2026/talk/ZSUR83/
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