Hydraulics I
BASIC DATA
course listing
A - main register
course code
EMH0031
course title in Estonian
Hüdraulika I
course title in English
Hydraulics I
course volume CP
3.00
ECTS credits
4.00
to be declared
yes
assessment form
Examination
teaching semester
spring
language of instruction
Estonian
English
Prerequisite(s)
Prerequisite 1
Mathematical Analysis I (YMM3731)
The course is a prerequisite
Gas Supply (EKK0061)
Hydraulics II (EMH0032)
Public Waterworks I (EKV0021)
Pumps and Fans (EMH0040)
Sewerage and Pumping Stations (EKV0051)
Water Pipelines and Modelling (EXX0011)
Water Pipelines and Modelling (EXX0030)
Water Pipelines and Modelling (EKV0011)
Water Pipelines and Modelling - Project (EKV0012)
Water Pipelines and Modelling - Project (EXX0012)
Water Quality and Water Saving (EKV0070)
Water Supply and Drainage Inside Buildings - Project (EKV0032)
Water Supply and Drainage Inside Buildings I (EKV0031)
Water Supply and Drainage Inside Buildings II (EKV0033)
Study programmes that contain the course
Structural units teaching the course
EA - Department of Civil Engineering and Architecture
Course description link
Timetable link
View the timetable
Version:
VERSION SPECIFIC DATA
course aims in Estonian
Anda üliõpilastele vajalikud teadmised ja tekitada võimekus tegutsemiseks klassikalise mehaanika valdkonnas, mis käsitleb vedelike käitumist nii paigalseisu kui ka liikumise olukorras.
course aims in English
The aim of the present subject is to give students the necessary knowledge and create capabilities to act in in this field of classical mechanics dealing with statics and dynamics of liquids.
learning outcomes in the course in Est.
• Võime hüdraulikaalast terminoloogiat professionaalselt kasutada. Oskus arvutada vedelike poolt tekkivaid jõudusid ehitistele ning mahutitele ja ujuvkehi stabiilsetena projekteerida.
• Süvendatud arusaam vedelike voolamisega seonduvast nii piiretega ümbritsetud kui ka vabavoolu tingimustes. Oskus mõista kiiruste ja kiirenduste jaotust voolupildis ja konstrueerida voolupilte erinevais torusüsteemides ning masinais.
• Oskus süsteemis toimuvaid hüdrodünaamilisi protsesse modelleerida ja seadmete tööd simuleerida.
• Oskus optimaalselt torustikke kavandada ja torusüsteeme arvutada.
learning outcomes in the course in Eng.
• Aptitude for professional use of terminology in hydraulics. Ability to determine the pressure forces on structures and liquid reservoirs necessary for their design. Capability to assure stability of the floating bodies.
• Theoretical basis of liquid dynamics in closed boundary and free surface conditions. Knowledge to understand the distribution of velocity and acceleration in flow and to develop flow fields in different pipe networks and machines.
• Knowledge to model and simulante hydrodynamical processes in systems.
• Knowledge of optimal design and calculation of pipe networks.
brief description of the course in Estonian
Hüdraulika ainestik. Hüdrostaatika: hüdrostaatiline surve ja sellest tekkivate jõude arvutamine tasapinnale ning kõverjoonelise kujuga pindadele. Archimedese seadus ja selle järeldused. Hüdrodünaamika: vedeliku liikumise kirjeldamise põhivõrrandid, vedeliku voolamise kaks režiimi, turbulentse voolu arvutusmudel, hüdraulilised takistused ja survekadude arvutamine, Darcy-Weisbachi valem, hüdrauliliste võrkude arvutamise alused. Voolamine avade ja jätkude kaudu. Hüdrauliline löök survetorudes. Hüdraulilise modelleerimise teooria alused
brief description of the course in English
Fluid mechanics and hydraulics. Hydrostatics: fluid pressure and hydrostatic forces on a plane and curved surface. Archimedes' principle and stability of submerged and floating bodies. Fluid dynamics: fundamental laws of fluids in motion, two types of flow of real fluids, the model of turbulent flow,
hydraulic resistance and computation of head losses, Darcy-Weisbach formula, modelling of hydraulic networks. Flow from orifices and nozzles. Water hammer in pressure conduits. Dimensional analysis and hydraulic similitude.
type of assessment in Estonian
Kirjalik eksam hindevahemikus 0-5 koosneb teooriast ning ülesannetest. Mõlema osakaal moodustab 50% eksami hindest. Soovi korral on eksamiülesannete asemel võimalik valida kontrolltööde keskmine hinne. Eksamil ülesannete lahendamine peab andma positiivse hinde, vähemalt “kasin”. Vajadusel esitatakse üliõpilasele peale kirjaliku osa toimumist lisaküsimusi. Eksami eelduseks on kontrolltööde edukas sooritamine ning laboratoorsete tööde aruannete esitamine ning kaitsmine.
type of assessment in English
Written exam with the grade in scale 0-5 consists from the theory and exercises. Both parts contribute 50% of the grade. The test exercises mean result could be used optionally instead of the exam exercises. Solution of the exam exercises should give positive grade, at least „moderate“. Supplementary questions will be asked after written exam if necessary. Precondition of the exam is positive solution of exercises and presentation of reports of the laboratory works.
independent study in Estonian
Teoreetilise materjali kordamine iga praktikumi eel
Koduste ülesannete lahendamine
Kontrolltöö(de)ks valmistumine
Enne laboratoorsete tööde toimumist on üliõpilase kohustuseks tutvuda tööde juhenditega ning selgitada tööde eesmärgid
Laboratoorsete tööde arvutamine, kaitsmiseks valmistumine.
independent study in English
Revision of the theoretical material before every practical work
Solution of home exercises
Preparation to the test(s)
The student should study the instructions and the aims before the laboratory works
Computation of the laboratory works, preparation to defence the laboratory works
study literature
Põhiõpikud: 1. A. Maastik, H. Haldre, T. Koppel, L. Paal. Hüdraulika ja pumbad. Tartu, Greif, 467 lk. 1995.
2. Computer Applications in Hydraulic Engineering, 5 rd Edition, Haestad Press, pp, 2002.
3. Р. Р. Чугаев. Гидравл
study forms and load
daytime study: weekly hours
3.0
session-based study work load (in a semester):
lectures
1.5
lectures
-
practices
0.5
practices
-
exercises
1.0
exercises
-
lecturer in charge
-
type (CBL/PBL)
not specified
LECTURER SYLLABUS INFO
semester of studies
teaching lecturer / unit
language of instruction
Extended syllabus
2018/2019 spring
Ivar Annus, EA - Department of Civil Engineering and Architecture
Estonian
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    2017/2018 spring
    Ivar Annus, EA - Department of Civil Engineering and Architecture
    Estonian
      2016/2017 spring
      Ivar Annus, EA - Department of Civil Engineering and Architecture
      Estonian
        2015/2016 spring
        Ivar Annus, EA - Department of Civil Engineering and Architecture
        Estonian
          2014/2015 spring
          Ivar Annus, EA - Department of Civil Engineering and Architecture
          Estonian
            2013/2014 spring
            Ivar Annus, EA - Department of Civil Engineering and Architecture
            Estonian
              2012/2013 spring
              Tiit Koppel, EA - Department of Civil Engineering and Architecture
              Estonian
                2012/2013 autumn
                Tiit Koppel, EA - Department of Civil Engineering and Architecture
                Estonian
                  2011/2012 spring
                  Tiit Koppel, EA - Department of Civil Engineering and Architecture
                  Estonian
                    2010/2011 spring
                    Tiit Koppel, EA - Department of Civil Engineering and Architecture
                    Estonian
                      2010/2011 autumn
                      Tiit Koppel, EA - Department of Civil Engineering and Architecture
                      Estonian
                        2009/2010 spring
                        Tiit Koppel, EA - Department of Civil Engineering and Architecture
                        Estonian
                          2008/2009 spring
                          Tiit Koppel, EA - Department of Civil Engineering and Architecture
                          Estonian
                            Course description in Estonian
                            Course description in English