Hydrology, hydraulics and sediments

  • Characterization of precipitation and peak flows for the design of hydroelectric projects or river infrastructure
  • Multi-temporal analysis of average flow series for hydroelectric development
  • Analysis of water availability for aqueducts, irrigation districts, and energy project development
  • Integrated management model for water resource management and use
  • Studies for the definition of environmental flow, national and international regulations
  • Analysis of flood events using satellite information
  • Average flow prediction systems for energy use, aqueducts or irrigation systems
  • Support to sectors for research, planning, and environmental management of watersheds
  • One-, two- and three-dimensional modeling of rivers and streams
  • Modeling of shorelines and river-sea interactions
  • Modeling and optimization of hydraulic works
  • Design of channels and of other hydraulic works for stabilization of erosive processes in rivers and streams
  • Design of catchment works
  • Design of hydraulic works for road infrastructure projects
  • Design of works for erosion control in bridges
  • Design of spurs, groins and complementary works for shore defense or erosion control
  • Design of flood control works
  • Dam breakage analysis, hydraulic transit and definition of risk zones
  • Delimitation, mapping and risk analysis for flood events
  • Design of dikes, swales and flood control platforms
  • Hydraulic studies to characterize flood zones and swamp complexes.
  • Water quality studies for rivers, reservoirs and swamp complexes
  • Pollutant dispersion studies in water bodies
  • Advice on water quality monitoring and sampling plans
  • Preparation of discharge permits for discharges into water bodies
  • Diversion systems – Bottom discharges – Spillways
  • Hydraulic studies to analyze alternatives for mining exploitation.
  • River navigability studies
  • River relocation design
  • Studies of sediment production, management and control in hydrographic basins.
  • River morphodynamic response analysis.
  • Studies of aggradation and sediment delta evolution in reservoirs.
  • Studies of aggradation effects and degradation of river and stream beds.
  • Derivation structure, diversion dam, bottom discharge, catchments, sand trap.
  • Hydrological and hydraulic calculations for road drainage in rural, urban and mining areas
  • Road tunnel drainage
  • Hydrological and hydraulic calculations in urban area designs and for environmental management works
  • Design and modernization of water and sewage networks for high, medium and low complexity populations
  • Design of wet networks for urban road infrastructure projects, hydroelectric projects and mining projects
  • Water and sewerage master plans
  • Modeling of water and sewerage networks
  • Implementation of water and sewer network design using BIM methodology
  • Design of drinking water and wastewater treatment plants

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