Master´s Degree in Energy Technologies
PRESENTACIÓN
Objetivos
- Develop strategies for hydrogen storage and generation technologies.
- Evaluate hydrogen's role in power generation applications.
- Compare crude oil refining processes and their future prospects.
- Assess the impact of biofuels in reducing petroleum dependency.
- Analyse natural gas value chains and their role in energy transition.
- Design photovoltaic systems using PVsyst for optimal energy output.
- Apply wind data to optimise windfarm design and efficiency.
Metodología
En Educa PHAROS trabajamos con una metodología eminentemente práctica, orientada a la aplicación directa de los conocimientos en el entorno profesional del alumno, combinando contenidos teóricos con casos reales, herramientas digitales y el acompañamiento de un equipo docente especializado.
Programa
- The hystory of hydrogen
- What is hydrogen?
- Current electricity and energy matrix
- Hydrogen as an energy carrier
- Prospects for the hydrogen roadmap
- PEM electrolysis
- Alkaline electrolysis
- SOEC and AEM electrolysis
- Hydrogen storage
- Hydrogen distribution
- Fuel cells
- PEM fuel cell
- High temperature fuel cell
- Hydrogen turbines and engines
- Hydrogen vehicles
- Refuelling stations
- Sizing of main equipment
- Safety considerations. Explosive atmospheres
- Design of hydrogen and fuel cell installations
- Examples of installation calculations
- Crude oils (I)
- Crude oils (II)
- Crude oils (III)
- Refining processes (I)
- Refining processes (II)
- Refining schemes (I)
- Refining schemes (II)
- Refining products (I)
- Refining products (II)
- Margin and profitability
- Bioenergy
- Biofuels
- Bioethanol & biodiesel
- SAF & Biogas
- Bio-refineries
- HSE & CO2 emissions
- Oil industry. Short and medium term projections
- Crude oil markets
- Refining product markets
- Biofuel markets
- Composition and properties
- Exploration and production techniques
- Types of reservoirs and characterization
- Extraction techniques
- Fracking
- Natural gas value chain
- Gas processing
- Liquefaction
- Transportation of liquid natural gas
- Regasification
- Liquefied natural gas storage
- Offshore installations
- Gas system and distribution
- Marketing, regulation and markets
- HSE and natural gas and natural gas liquids applications
- Energy transition and global position
- European green deal & LATAM green
- Net zero emissions by 2050
- Natural gas central to the energy transition
- Circular economy. Natural gas and hydrogenen
- Solar energy
- Radiation measurement and databases
- The photovoltaic effect
- The solar cell
- The photovoltaic solar panel
- Classification of pv solar technologies
- Crystalline silicon technology
- Thin-film panel technology (I)
- Thin-film panel technology (II)
- Concentrator photovoltaics
- Solar energy production. The pr concept
- PVSYST. Site definition and meteorological basis
- PVSYST. Component modeling (I)
- PVSYST. Component modeling (II)
- PVSYST. Energy simulation and results
- Photovoltaic self-consumption. PVSYST simulation program
- Solar trackers and structures
- Main electrical equipment
- Medium-voltage cables and electrical substations
- Civil works
- History of wind energy
- Wind meteorology
- The physics of wind resources
- Site selection
- Wind resource measurement campaign
- Wind resource
- Practical exercise. Wind resource descriptive statistical analysis. Windographer program
- Wind turbines (I)
- Wind turbines (II)
- Wind turbines (III)
- WASP program. Data analysis model (WASP climate analyst)
- WASP program. Terrain topographic modeling (WASP map editor)
- Exercise. Power curve and thrust coefficient
- WASP program. Power simulation (I)
- WASP program. Power simulation (II)
- Windfarm construction project
- Windfarm electrical power facilities and installations
- High-voltage electrical power substation
- Overhead high-voltage power line
- Offshore wind power
- Introduction and general information on hydroelectric generation
- Typology of hydroelectric power plants
- Hydraulic resource assessment
- Dams and weirs (I). Introduction and typology
- Dams and weirs (II). Actions, landfills and drainage
- Intake works
- Channels and pressure galleries
- Penstocks
- Gates and valves
- Hydraulic circuit equipment
- Powerhouse and introduction to turbines
- Field of application of turbines and action turbines
- Reaction turbines
- Turbine selection criteria and performance
- Generators, regulation and control
- Pumped-storage power plants
- Feasibility studies
- Sizing example
- Hydroelectric projects
- Environmental evaluation. Environmental impact mitigation
- Introduction to thermodynamics
- Fuels and combustion
- The steam power plant (I). The regenerative Rankine cycle
- The steam power plant (II). General arrangement. Main equipment
- Types of steam power plants
- The gas turbine. The Brayton cycle
- Types of gas turbines. Parts of the gas turbine. Technologists
- Simple cycle power plants
- Combined cycle power plants
- General arrangement of a combined cycle power plant. Components
- The internal combustión engine. The Otto cycle and the Diesel cycle
- The diesel engine. Types. Technologists
- The engine power plant. Types and configurations
- General arrangement and components
- Situation and outlook of conventional thermal generation
- Nuclear energy basic concepts
- Nuclear technology fundamentals
- Conventional nuclear power plants
- Nuclear power plants safety and radiation protection
- The role of nuclear energy in the transition to decarbonization
- Introduction to biomass
- Biomass as an energy source
- Characterization of biomass as an energy resource
- Problems of the use of biomass
- Biomass technologies and treatments
- Introduction to biogas
- Biogas production
- Biogas production technologies
- Operations before and after biomethanation
- Use of biogas
- HVO Biodiesel
- Biodiesel fame
- Bioethanol
- Bioethanol production
- Combustion reaction. Reagents
- Combustion reaction. Products
- Design of combustion facilities
- Electricity generation with biomass
- Solar thermoelectric (I)
- Solar thermoelectric (II)
- Introduction to offshore wind
- Global market and main players
- Fundamentals of offshore wind
- Types of existing technologies
- Environment, consenting and permitting
- Bidding phase and auction models
- Development phase: DEVEX
- Construction phase: CAPEX
- Operation and decommissioning phase: OPEX & DISEX
- Project financing
- Foundations
- Wind turbines
- Transport and installation
- Grid connection and electrical system
- Other elements of an offshore wind farm
- Actors in the energy market and their roles.
- PPA
- Subsidised remuneration system
- Green certificates
- Market challenges
Másteres Destacados
Master´s Degree in Continuing Education in Advanced Disaster Risk Management
Máster de Formación Permanente en Ingeniería del Ciclo Integral del Agua
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Educa PHAROS es una solución formativa para empresas que centraliza el aprendizaje, facilita la gestión de usuarios y permite medir el progreso mediante paneles y reportes.
Está dirigido a organizaciones que desean desarrollar habilidades internas, estandarizar la formación por roles y disponer de trazabilidad y métricas de aprendizaje.
Incluye itinerarios por perfiles, gestión de usuarios y permisos, reportes de progreso, certificación, y acceso a masterclass o sesiones en vivo (según plan).
Se apoya en buenas prácticas de seguridad, control de accesos, trazabilidad del aprendizaje y soporte de implementación. Personaliza este texto según tus compromisos (SLA, compliance, etc.).
Educa PHAROS es un modelo formativo de nueva generación que posiciona al capital humano de la empresa a la vanguardia. A través de una plataforma que se adapta a la imagen corporativa de cada empresa y con un total de más de 900 cursos se consigue una formación específica para cada organización. La tarifa plana ilimitada, proporciona a cada empresa el número de cursos que se ajuste a sus necesidades y también la posibilidad de determinar qué empleados podrán tener acceso.