Master's Degree in Continuing Education in Integrated Water Cycle Engineering
PRESENTATION
Objectives
• You will gain a comprehensive understanding of the urban water cycle, its processes, and the interconnections among its components. • You will design innovative infrastructure strategies to ensure the resilience of water systems in the face of climate change scenarios. • You will manage the operation and advanced maintenance of water infrastructure, optimizing its performance and service life. • You will lead complex projects involving the design, expansion, and operation of water resource management systems, from conception through implementation. • You will make strategic decisions regarding the selection and implementation of business management and operational models in the water sector. • You will assess the impact of climate variability and global change on water resources, applying models and future projections. • You will implement decarbonization and climate-neutral solutions in water infrastructure management. • You will oversee the adaptation of water systems in response to the depletion of non-renewable resources, promoting sustainability.
Methodology
At Educa PHAROS, we use a highly practical methodology focused on the direct application of knowledge in the student’s professional environment, combining theoretical content with real-world cases, digital tools, and support from a team of specialized instructors.
Program
- Climate: Definition
- Climate: Elements and Factors
- Climatology: Methods of Study
- The Climate System
- General Concepts
- Radiation
- Solar-type radiation
- Earth's Energy Balance
- Solar Radiation and Its Spatial Distribution
- Incident Radiation at a Point: Calculation
- Temperature
- Natural Greenhouse Effect: Gases and Mechanisms
- Disruptions in the Energy Balance: Natural and Human Causes
- Climate and General Information
- Climate classification based on temperature and precipitation
- The Köppen Classification
- Strahler's Classification
- Types of Climates
- Mountain Climates
- Historical Climate Events: Little Ice Age, Medieval Climate Optimum
- Methods for Reconstructing Past Climate: Climate Proxies
- Biodiversity, the “finiteness” of natural resources, and “irreversibility” linked to extinction
- Renewable resources. Their current overexploitation
- Conflicts Over Renewable Resources and Environmental Refugees
- Non-renewable resources, minerals, and energy resources
- The problems caused by its use and the conflicts over control of it
- Evidence of Current Climate Change
- Future Projections for the Planet's Average Temperature Based on Changes in Greenhouse Gas Emissions
- Impoverished countries are and will continue to be the hardest hit; the regions and ecosystems that will be particularly affected by climate change; and projections of the global economic impacts of climate change
- The fight against climate change is possible, and it relies on global action, mitigation, and adaptation
- History and Evolution of Climate Modeling
- Components of Climate Models
- Types of Climate Models
- Reference Scenarios
- IPCC and CMIP6 Simulations
- Projections of Key Climate Variables
- The Evolution of the Concept of the Carbon Footprint
- International Regulations and Standards
- Carbon Footprint Categories
- Scope of Application and Calculation Bases
- What Is Life Cycle Assessment?
- Climate Neutrality and Net-Zero Goals
- Reduction or Offset Strategies?
- Carbon Offset Mechanisms
- Carbon Markets and Emissions Trading Systems
- Difference Between Mitigation and Adaptation
- Local, National, and Global Adaptation Strategies
- Climate-Resilient Infrastructure and Ecosystem-Based Solutions
- Integrating Climate Change into Territorial and Sectoral Planning
- The Water Cycle. Hydrology (I)
- The Water Cycle. Hydrology (II)
- General Concepts of Water Collection Infrastructure
- Assessment of Dams
- Flood control in reservoirs
- Surface Water Collection. Infrastructure
- Engineered dams. Gravity dam
- Dams Made of Loose Materials
- Groundwater Abstraction: Wells and Aquifers
- Water Supply to Vulnerable Communities
- Dam Safety: Intakes, Bottom Outlets, and Spillways
- Dam Safety. Types of Spillways
- Dam Construction: Design Considerations and Maintenance
- Extensions and Reinforcements
- Hydroelectric Power Plants
- Water Supply and Regulation Infrastructure
- Pressure Conduction
- Channels (I)
- Channels (II)
- Water Lifting System
- The Origin of Water
- Water Chemistry
- Water Pollution
- Specific pollutants
- Treatment of Specific Contaminants
- Water Intake and Pretreatment Facility
- Coagulation and Flocculation
- Sedimentation
- Filtration Using Granular Media
- Advanced Filtration
- Water Disinfection Technologies
- Chlorine and sodium hypochlorite
- Chlorine dioxide and chloramines
- Ozone and Potassium Permanganate
- Case Study: Design of a Water Treatment Plant
- Desalination Systems
- Water Quality and Intake Structure
- Pretreatment
- Reverse Osmosis Membrane Filtration
- Post-treatment and auxiliary systems
- General Terms and Conditions
- Service Connection Components (I)
- Service Connection Components (II)
- Service Connection Components (III)
- Sizing and Installation of the Service Connection
- General Considerations. Pipes (I)
- General Considerations: Pipes (II)
- General Considerations. Pipes (III)
- Fittings and Special Parts
- Operating and Control Elements
- Design and Layout Criteria
- Hydraulic Sizing of Piping Systems
- Calculation of Cathodic Protection
- Pipe Protection and Cleaning
- Practical Exercises in Piping Networks
- Design Considerations
- Underground Trench Installations (I)
- Underground Trench Installations (II)
- Quality Management (I)
- Quality Management (II)
- Network Structure and Types
- Pipelines
- Materials and Sections. Joints and Special Components
- Structures: manholes, wells, service connections
- Urban Drainage
- Underground Piping Systems
- Trenchless Pipeline Installation
- Maintenance of the Sewer System
- Rehabilitation of the sewer system
- Advanced Network Operations
- General EBAR Settings
- Propulsion and Supporting Components
- Centrifugal Pumps
- How a Centrifugal Pump Works
- Additional Facilities
- Spillways and Retention Basins
- Components of a storm water tank
- Components of the retention chamber
- Stormwater Tank Design
- Design of Storm Water Tank Components
- Wastewater
- Schematic Diagram of the Wastewater Treatment Plant
- Pretreatment
- Primary treatment
- Secondary treatment
- Conventional activated sludge systems
- Equipment and Process Types in Activated Sludge Systems
- Advanced Treatments
- Biofilm Process
- Wastewater Treatment in Small Towns
- Sizing of a biological reactor at a wastewater treatment plant for nitrogen removal in accordance with the ATV-131 standard
- Quality and Uses of Reclaimed Water
- Regenerative Technologies
- Filtration
- Disinfection
- Mud
- Thickening
- Stabilization
- Dehydration
- Gas line
- Types of pumps used in wastewater treatment plants.
- Submersible pumps.
- Surface-mounted or dry-chamber centrifugal pumps
- Surface-mounted or dry-chamber screw pumps
- Isolation Systems (Valves)
- Pre-treatment at Water Treatment Plants
- Equipment in a sand and grease separator.
- Equipment for decanters and thickeners.
- Anaerobic Sludge Digestion Systems
- Sludge dewatering equipment
- Agitation and Aeration in Biological Reactors
- Agitation of coagulation and flocculation tanks, and preparation of the chemicals used
- Air-generating equipment (blowers, turbo blowers).
- Fine and coarse bubble aeration.
- Types of Chemicals and Storage Systems
- Flow and Level Measurement
- Pressure Measurement and Water Analysis
- Control Processes (Automation)
- SCADA Control System (I)
- SCADA Control System (II)
- The Concept and Implications of Sustainable Drainage.
- Multidisciplinary design.
- Assessment of the environment.
- Flood Risk Management.
- Non-structural measures
- Hydraulics for SUDS Design.
- Rainwater collection systems.
- Green roofs and vertical gardens.
- Gravel trenches and filter drains.
- Green roadside ditches.
- Hydrology.
- Bioretention systems.
- Permeable surfaces.
- Trenches and infiltration wells.
- Citizen Inquiries.
- Landscaping.
- Detention tanks.
- Retention basins.
- Artificial wetlands.
- Design Process for an Integrated System.
- Water balance.
- Climatology.
- Precipitation
- Evaporation and Transpiration
- Geology and hydrology.
- Definition of Droughts
- Ecological flow rates.
- Groundwater.
- Special Drought Plans.
- Indicator Systems for Special Drought Plans
- Introduction and Concepts.
- Precipitation Analysis
- Flood Discharge Rates and Flood-Prone Areas.
- Flood Risk Management Plans.
- Emergency Management
- Geomorphological-Historical Analysis
- Adapting to Flood Risks
- Conventional Solutions
- Nature-based solutions
- Nature-Based Urban Solutions
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