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Energy and Environment

Code: EA0034     Acronym: EA

Keywords
Classification Keyword
OFICIAL Environmental Sciences

Instance: 2019/2020 - 2S Ícone do Moodle

Active? Yes
Responsible unit: Fluids and Energy Division
Course/CS Responsible: Master in Environmental Engineering

Cycles of Study/Courses

Acronym No. of Students Study Plan Curricular Years Credits UCN Credits ECTS Contact hours Total Time
MIEA 32 Syllabus since 2006/07 3 - 6 56 162
Mais informaçõesLast updated on 2020-05-19.

Fields changed: Calculation formula of final grade, Componentes de Avaliação e Ocupação, Fórmula de cálculo da classificação final, Componentes de Avaliação e Ocupação

Teaching language

Portuguese

Objectives

To understand the relationship between energy and environment and to be able to deal with energy conversion systems.

Learning outcomes and competences

Capacity to understand and analyse energy systems and their environmental impacts.

Working method

Presencial

Pre-requirements (prior knowledge) and co-requirements (common knowledge)

Basic Thermodynamics. Heat transfer.

Program

Energy and development; Tecnologies associated to the use of diferent forms of energy; Energy resources: primary energy, secundary energy and final energy; Energy and environment: global warming, depleation of ozone and acid rains; Systems of energy conversion: Carnot cycle, Rankine cycle, Joule Brayton cycle and Otto, Diesel and Sabathié cycles. Equipments associated to motor cycles; Gas mixtures; Combustion. Renewable energies. Fundamentals of solar energy: thermal and PV collectors.

Mandatory literature

Clito Afonso; Energia e Ambiente, Associação de Estudantes da FEUP, 2008
Óscar Mota; Energia e Ambiente - Conceitos Básicos e Aplicações
Clito Afonso; Energia e Ambiente

Complementary Bibliography

José Orosa, Armando C. Oliveira; Engineering Thermodynamics with EES, Lambert Academic publishing, 2011. ISBN: 978-3-8443-0317-9

Teaching methods and learning activities

Theoretical matters exposed with power point presentations; Pratical classes dedicated to problem solving.
Introduction to Engineering Equation Solver Software.

Software

EES - Engineering Equation Solver

Evaluation Type

Distributed evaluation with final exam

Assessment Components

Designation Weight (%)
Exame 75,00
Trabalho escrito 25,00
Total: 100,00

Amount of time allocated to each course unit

Designation Time (hours)
Estudo autónomo 56,00
Frequência das aulas 76,00
Elaboração de relatório/dissertação/tese 30,00
Total: 162,00

Eligibility for exams

According to the General Rules of Avaliation. 

Calculation formula of final grade

The Individual Work must be done during the semestre.

The written evaluation has a theoretical part (without consultation) and a practical part (with consultation).

The Final Classification is obtained by the following expression:

0,30*theoretical part + 0,45*pratical part + 0,25 * Individual work
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