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Structural Concrete

Code: CVN023     Sigla: BE

Áreas Científicas
Classificação Área Científica
OFICIAL Mecânica e Estruturas

Ocorrência: 2021/2022 - 1S

Ativa? Yes
Unidade Responsável: Mecânica e Estruturas
Curso/CE Responsável: Undergraduate in Civil Engineering (evening course)

Ciclos de Estudo/Cursos

Sigla Nº de Estudantes Plano de Estudos Anos Curriculares Créditos UCN Créditos ECTS Horas de Contacto Horas Totais
CIVN 22 Study Plan 3 - 7 82,5 189

Docência - Responsabilidades

Docente Responsabilidade
João Carlos Vinagre Nascimento dos Santos

Docência - Horas

Theorethical and Practical : 4,50
Type Docente Turmas Horas
Theorethical and Practical Totais 1 4,50
João Carlos Vinagre Nascimento dos Santos 3,75

Língua de trabalho

Portuguese

Objetivos

The main objective of the course is that the students achieve the ability to design reinforced concrete structures, such as beams, columns and slabs. The students have to be able to understand the concepts related to safety formats
applied to materials and actions, required to the correct design of every structure.

Resultados de aprendizagem e competências

The students have to understand all the procedures associated to ultimate limit states and serviceability limits of beams, columns and slabs' design and detailing.

Modo de trabalho

Presencial

Pré-requisitos (conhecimentos prévios) e co-requisitos (conhecimentos simultâneos)

Students should demonstrate skills related to the analysis of isostatic structures and material resistance.

Programa

Chapter 1 - 7,0 weeks
Design of concrete beams to Ultimate Limit States. Design and detail to flexure, shear and torsion. Webs and flanges reinforcement of T-sections. Deviation forces. Reinforcement detailing. Plastic analysis: stress redistribution and ductility.
Chapter 2 - 2,5 weeks
Design of concrete columns. Ultimate Limit State due to bending with compression and to biaxial bending. Detailing of concrete columns. Frame corners.
Chapter 3 - 4,0 weeks
Design of concrete slabs: design models and detailing. Safety check to shear and torsion. Reinforcement at the free edges, Corner reinforcement, reinforcement in continuous borders. Stress redistribution. Maximum load of slabs 
supported on beams. Local forces applied to slabs and openings: design models and detailing. Flat slabs: design models for vertical and horizontal actions. Punching.
Chapter 4 - 1,5 weeks
Serviceability Limit State. Cracking and deflection control. Control without direct calculation according to EC2.

Bibliografia Obrigatória

João Vinagre; Folhas de Betão Estrutural, 2020

Métodos de ensino e atividades de aprendizagem

Topics are presented, with emphasis on the most relevant aspects, followed by the resolution, by students, of practical cases.

In order to consolidate their learning, students are submitted to two group projects: design of a beam and a panel of slabs.

At the end of the semester, the test of a reinforced concrete beam is carried out on laboratory.

The teacher supports the student in the development of different tasks throughout the semester.

The assessment consists of several activities carried out throughout the semester, corresponding to the assessment

Tipo de avaliação

Distributed evaluation without final exam

Componentes de Avaliação

Designation Peso (%)
Participação presencial 5,00
Teste 90,00
Trabalho escrito 5,00
Total: 100,00

Componentes de Ocupação

Designation Tempo (Horas)
Estudo autónomo 71,50
Frequência das aulas 67,50
Trabalho escrito 50,00
Total: 189,00

Obtenção de frequência

Average grade of the best 5 of 6 regular exercises (50%). Two project group work (25%). Tests and Moodle exercises (25%)

Fórmula de cálculo da classificação final

Continuous assessment

Regular exercises (90%) + Group works e Moodle exercices (10%)



Exam

Exam (90%) + Group works (10%) 

Group work is mandatory and its classification is valid for all assessment periods of the academic year.

Grades higher than 16 require an oral exam.

Observações

If students are assessed in online tests, an oral test will be required.
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