Higher Technical School of Agricultural Engineering UPCT. Agroindustrial Constructions

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1 Higher Technical School of Agricultural Engineering UPCT Agroindustrial Constructions Qualification: Degree Agri-food Engineering and Biological Systems Course 2015/2016

2 1. Subject information Name Agroindustrial Constructions Matter Agroindustrial Constructions Module Materials specific Code (GIASB) Degree Degree Agri-food Engineering and Biological Systems Study plan 2014 (GIASB) Teaching period Centre Higher Technical School of Agricultural Engineering (ETSIA) Type Specific Language Spanish Four-month period Four-month period 1 st Course 3rd ECTS 4,5 Hours / ECTS 30 Total workload (hours) Teacher information Lecturer in charge Juan Antonio Nicolas Cuevas Department Structures and Construction Knowledge area Continuum Mechanics and Theory of Structures Location of the office Second floor ETSINO Building, Room 2.29 Phone Fax URL / WEB Timetable available / Tutorials It is defined in accordance with class schedules Location during the tutorials Second floor ETSINO Building, Room 2.29

3 3. Contents 3.1 Contents according to the study plan of the subject Typologies of Agroindustrial constructions. Calculation of steel and reinforced concrete structures. Foundations and retaining walls. 3.2 English program theory DU I. STRUCTURAL SYSTEMS, MATERIALS AND DESIGN CRITERIA 1. STRUCTURAL SYSTEMS - Steel Structural Systems - Concrete Structural Systems - Timber structural systems - Typologies and fields of application 2. STRUCTURAL MATERIALS - Structural steel - Hot-rolled steel profiles and sheets - Cold-formed steel profiles and plates - Structural concrete and components: cements, aggregates, water and additives. - Steel bars for the reinforcement of concrete DU II. BASIS OF DESIGN AND ACTIONS 3. BASIS OF DESIGN - Actions. Characteristic and design values of actions and - Load cases and combinations 4. ACTIONS ON BUILDING STRUCTURES - Permanent actions - Variable actions - Accidental actions DU III. STEEL STRUCTURES 5. INTRODUCTION - Regulation - Steel types - Steel structures products - Classification of cross-sections 6. CROSS-SECTIONS RESISTANCE - Traction and compression resistance

4 - Bending moment resistance - Shear resistance - Torsion resistance 7. MEMBER DESIGN - Buckling theory. Buckling curves - Buckling lengths - Axial compression member design - Combined bending and axial compression member design - Lateral torsional buckling of beams 8. CONNECTIONS - Types of bolts - Design of bolted connections - Types and classification of the welds - Assumptions for the calculation - Limit conditions of the resistance welds - Design of welded connections 9. JOINTS AND BASE PLATES - Joints - Base plates of beams - Base plates of columns 10. FRAMES WITH TRUSSES - Typologies and fields of application - Structural diagram: identification of system elements and Their function - Loads transfer diagrams - Details and construction solutions 11. PORTAL FRAMES - Typologies and fields of application - Structural diagram: identification of system elements and Their function - Loads transfer diagrams - Details and construction solutions DU IV. REINFORCED CONCRETE STRUCTURES 12. INTRODUCTION TO REINFORCED CONCRETE - Qualitative composition - Working Mechanisms of the reinforced concrete

5 13. REINFORCING BARS - Types of steels and reinforcing bars - Geometrical, mechanical and adhesion Characteristics - Stress-strain diagram. Yield strength. Design resistances. 14. CONCRETE - Mechanical resistance of the concrete. Related factors - Aggressivity of the environment. Exposure classes - Compression and traction resistance - Stress-strain diagram - Design resistance - Deformations 15. SECTIONS DESIGN - Design resistance to bending moment - Design resistance to bending and longitudinal force - Layout of reinforcing bars - Anchorage and Laps of reinforcing bars 16. BUCKLING, SHEAR STRESS AND CRACKING - Design procedures for buckling - Shear resistance - Layout of shear reinforcement bars - Cracking DU V. FOUNDATIONS AND RETAINING WALLS 17. SHALLOW FOUNDATIONS - Typologies of shallow foundations - Soil stress state determination - Classification of shallow foundations - Design values of actions - Structural design of shallow foundations. - Connection of spread foundations (by tie beams) 18. RETAINING WALLS - Typologies of retaining walls - Design values of actions - Structural design of retaining walls

6 4. Bibliography and resources 4.1 Basic bibliography* 1. Argüelles, R., Argüelles Bustillo, R., Arriaga, F. y Atienza, J.R. Estructuras de acero. Tomo I. Cálculo, Norma Básica y Eurocódigo. Madrid. Bellisco Ediciones Técnicas y Científicas, Garcimartín, M.A. Edificación Agroindustrial: Estructuras metálicas. Madrid: Mundi Prensa, García, A., Morán, F., Arroyo Portero, J.C. Hormigón Armado (2 tomos), Gustavo Gili, Barcelona, Calavera, J. Cálculo de estructuras de cimentación. INTEMAC, Madrid, Complementary bibliography* 1. Monfort, J. Estructuras metálicas para edificación: adaptado al CTE. Valencia: Servicio de Publicaciones UPV, Monfort, J. Parado, J.L. y Guardiola, A. Problemas de estructuras metálicas adaptados al CTE. Valencia: Servicio de Publicaciones UPV, Network resources and other resources Standards and handbooks 1. Technical Building Code. DB-SE \"Structural Safety\". DB-SE-AE \"Shares in the building.\" DB-SE-A Steel. Ministry of Housing and BOE. 2. Structural Concrete Instruction EHE-08. Ministry of Development and BOE strucciones/ehe_es/ 3. Structural Steel Instruction EAE. Ministry of Development and BOE A/INSTRUCCIONES/VERSION_CASTELLANO/. Website of the Department of Structures and Construction (http://www.upct.es/~deyc/), Virtual classroom (https://aulavirtual.upct.es/), as well as those that are recommended to student during the course.

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