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Thermal Energy Management

Code: MEGEIE06     Sigla: GET

Áreas Científicas
Classificação Área Científica
OFICIAL Applied Thermodynamics

Ocorrência: 2021/2022 - 2T

Ativa? Yes
Unidade Responsável: Departamento de Engenharia Mecânica
Curso/CE Responsável:

Ciclos de Estudo/Cursos

Sigla Nº de Estudantes Plano de Estudos Anos Curriculares Créditos UCN Créditos ECTS Horas de Contacto Horas Totais
MEGEIE 17 Plano de estudos_2019_2020 1 - 5 55 135

Docência - Responsabilidades

Docente Responsabilidade
Paulo Miguel Marques Fontes

Docência - Horas

Theorethical and Practical : 3,00
Outra: 2,00
Type Docente Turmas Horas
Theorethical and Practical Totais 1 3,00
Paulo Miguel Marques Fontes 3,00
Outra Totais 1 2,00
Paulo Miguel Marques Fontes 2,00

Língua de trabalho

Portuguese

Objetivos

It is intended that the student acquire a thorough knowledge about the different types of systems and equipment used in heating and air conditioning installations as well as the efficiencies in the various energy transfer processes involved.

Resultados de aprendizagem e competências

The student should acquire the following competencies:

- Know how to identify and characterize an air conditioning and heating system and its main and terminal equipment;

- Know how to determine the efficiency of equipment and processes in heating and air conditioning installations;

- Know how to carry out a dimensioning and selection of equipment for air conditioning and heating installations of small / medium size.

Modo de trabalho

B-learning

Programa

Classification and typology of air conditioning and heating systems. Different types of main and terminal systems.

Efficiency in basic thermal processes: Combustion; Steam compression cycles (refrigeration and heat pump); Absorption cycles; Heat exchange.

Air Conditioning and Heating Equipment

Heat Pumps. Characteristics of the equipment.

Groups producing chilled water (chillers). Selection and operation parameters.

Boilers for the production of domestic hot water (DHW) and central heating: classification, typology, operating characteristics and operation. Renewable fuels.

Solar thermal collectors: typology and main characteristics.

Terminal units: convectors, fan convectors, heat exchange surfaces, evaporators, condensers, cooling towers.

Integration and management of thermal energy systems, accumulation and distribution of cold and heat, cogeneration and trigeneration.

Bibliografia Obrigatória

Paulo Fontes; Folhas da Unidade Curricular

Bibliografia Complementar

Ashrae Handbook ; Heating, Ventilating, and Air Conditioning Systems - HVAC Systems and Equipment
James E. Brumbaugh; Audel HVAC Fundamentals, Volume 1: Heating Systems, Furnaces and Boilers,

Métodos de ensino e atividades de aprendizagem

The teaching methodology will focus on a presentation of the programmatic content that will be carried out in person, followed by a autonomous work of the students based on research to deepen the subjects, solve problems and carry out small projects. There will also be 3/4 laboratory tests of full scale heating / air conditioning equipment so that students can apply the acquired knowledge to the characterization of these equipments.

The methodology will have a strong online component expected in the time of contact with students and based on the moodle platform that in addition to the availability of content and support material will also be used to discuss topics and clarify doubts.

Tipo de avaliação

Distributed evaluation without final exam

Componentes de Avaliação

Designation Peso (%)
Teste 45,00
Trabalho escrito 55,00
Total: 100,00

Componentes de Ocupação

Designation Tempo (Horas)
Frequência das aulas 55,00
Trabalho escrito 80,00
Total: 135,00

Obtenção de frequência

Final classification greater than or equal to 9.5

Fórmula de cálculo da classificação final

The assessment will be based on an individual assessment in the form of a test on the contents with a weight of 45% and an assessment of the work developed by students with a weight of 55%.

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