Error message
User error : Failed to connect to memcache server: druportbe01:11211 in dmemcache_object() (line 415 of /production/drupal/dim_prod/drupal/d7cl4/prod/unich/releases/7/web/sites/all/modules/contrib/memcache/dmemcache.inc ).
Single discipline educational activity
Course Sheet Academic Year of enrolment:
Disciplinary Sector:
Maritime Hydraulic Construction and Hydrology
Professor and Collaborators:
Hours of classroom activity:
Prerequisites:
Notions of mathematic, geometry and physics given in the courses preceding the course of Hydraulics.
Objectives
Contents The course provides the basic notions of hydraulics for the design and management of water systems serving built areas and working under pressure and on free surface. The contents of the course contribute to developing the specific skills of the three-year graduate in Construction Engineering regarding the activities connected with the production cycle of buildings.
Extended Syllabus - Properties of fluids
- Hydrostatics: Equation of the static state of fluids in an indefinite and global form; hydrostatic force on flat and curved surfaces;
- Fluid kinematics: types of flow; trajectories, currents and emission lines; currents.
- Equation of mass conservation in an indefinite form and in a global form: application to currents
- Equation of dynamic equilibrium in an indefinite form and in global form with applications
- Bernoulli theorem and applications to flow from orifices, Venturi tube and Pitot tube
- Extension of the Bernoulli Th. to real fluids and currents.
- Equation of the dynamic equilibrium for a real fluid in an indefinite and global form
- Reynolds' motion and experience systems
- Viscous and turbulent tangential stresses
- Equations of uniform flow in pipelines under pressure for laminar and turbulent flow: flow in hydraulically smooth and rough pipelines; Nikuradse experience; Moody diagram; Colebrook-White formula; empirical formulas.
- Localized and distributed head losses;
- Design problems and verification of pipelines: role of elevation in pressurized pipelines; flow in depressed pipes.
- Pressurized pipeline systems: pipes in series and in parallel; pumping systems; representation of pressurized pipe networks and hydraulic verification methods.
- Notions of various motion in pipelines under pressure: equations of motion; analysis of abrupt manoeuvres; attenuation devices.
- Hydraulics of free-surface currents: uniform flow equations; problems of verification and design of pipelines and free-surface channels
- Energy characteristics of free surface currents
- Low and steep slopes free-surface currents
- Permanent flow free surface profiles.
Recommended Bibliography - Teaching material available on the e-learning platform from the beginning of the course and constantly updated.
Reference Book
- Citrini D., Noseda, G. IDRAULICA, CEA, 1987
Milano V., ACQUEDOTTI – Guida alla progettazione, HOEPLI EDITORE, 1996
Recommended reading:
- Ippolito G., APPUNTI DI COSTRUZIONI IDRAULICHE, Liguori, 1993
- Da Deppo L., Datei C., Fiorotto V., Salandin P., ACQUEDOTTI, Ed. Libreria Cortina Padova
- Paoletti A., Becciu G., ESERCITAZIONI DI COSTRUZIONI IDRAULICHE, CEDAM, 2004
- Frega G., LEZIONI DI ACQUEDOTTI E FOGNATURE, Liguori, 1984.
Teaching Methods The course will be articulated in lectures and exercises by using multimedia presentations and spreadsheets.
Evaluation methods Verification of learning:
The verification of the learning takes place through an oral exam. The student is required to illustrate the theoretical foundations of the main topics of the course and the solution of some specific problems, also with numerical examples.
In particular, during the oral exam a mark out of thirty is assigned to each answer to three questions relating to the main thematic areas of the program: (i) hydrostatics and conservation principles; (ii) hydraulics of pressurized systems; (iii) hydraulics of free surface systems.
In the event that the question requires the presentation of a specific topic of the program, the candidate's ability to clearly expose the concepts and contextualize them for the analysis of technical problems, particularly in the field of civil engineering, is evaluated.
In the event that the question requires the resolution of a numerical example, the approach to resolution is evaluated, in addition to the technical consistency of the results.
The final mark is assigned as the average of the marks obtained from the three questions.
Contacts/More Information It is possible to schedule meetings for further explanations, even outside the scheduled reception hours, by appointment via e-mail.