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Fluid mechanics

General data

Course ID: ERASMUS>MEC04
Erasmus code / ISCED: (unknown) / (unknown)
Course title: Fluid mechanics
Name in Polish: Fluid mechanics
Organizational unit: Stanisław Staszic State University of Applied Sciences in Piła
Course groups:
ECTS credit allocation (and other scores): 5.00 Basic information on ECTS credits allocation principles:
  • the annual hourly workload of the student’s work required to achieve the expected learning outcomes for a given stage is 1500-1800h, corresponding to 60 ECTS;
  • the student’s weekly hourly workload is 45 h;
  • 1 ECTS point corresponds to 25-30 hours of student work needed to achieve the assumed learning outcomes;
  • weekly student workload necessary to achieve the assumed learning outcomes allows to obtain 1.5 ECTS;
  • work required to pass the course, which has been assigned 3 ECTS, constitutes 10% of the semester student load.
Language: English
Full description:

Aims of the course:

1. To familiarize students with the basic knowledge of fluid mechanics.

2. To familiarize students with the basic methods of solving practical problems in mechanics fluids including iterative tasks.

3. Improving skills in using a pocket calculator when calculating tasks.

4. Understanding flow phenomena in nature and technology.

5. Developing the skills of responsible cooperation and communication in a group.

Learning outcomes:

1. The Student knows the properties of liquids: density, specific gravity, viscosity, volume modulus, voltage surface.

2. The Student knows the ideal gas equation, speed sound fluid, fluid viscosity measurement methods.

3. The Student knows the fluid equation differential equation and form of this equation in the field of gravity.

4. The Student can complete the equilibrium equation of an element fluid in the field of gravity and calculate the pressure distribution in the incompressible fluid in the field of gravity, pressure distribution in an isothermal atmosphere and in standard atmosphere.

5. The Student knows Archimedes' law, fluid pressure on solid surfaces and conditions of stable swimming bodies.

6. The Student knows the equation of flow continuity: the local form and global, mass flow and expenditure volume.

7. The Student knows the Euler equation, the Bernoulli equation for non-light fluid and examples of applications of the Bernoulli equation.

8. The Student knows the Reynolds experience, division of flows laminar and turbulent, can calculate the number Reynolds and laminar flow in the pipe.

9. The Student knows the Darcy-Weisbach formula, Moody chart, he can calculate the flow in a straight pipe section.

10. The Student knows the Bernoulli equation for real liquids and local losses.

11. The Student can calculate the resistance of flowed bodies and drag coefficient.

12. The Student knows the elements of gas dynamics, accumulation parameters and critical parameters and Bernoulli equation for perfect gas.

13. The Student knows the Mach number, classification of compressible flows and flow in the nozzle.

14. The Student can calculate isothermal and adiabatic gas flow in a straight pipe section.

15. The Student can calculate the mass flow of gas from tank, knows what a throttled flow is.

16. The Student has the ability to self-study.

Classes in period "Winter semester 2021/2022" (past)

Time span: 2021-10-01 - 2022-02-20
Selected timetable range:
Navigate to timetable
Type of class:
Final grade, 10 hours more information
Coordinators: Jan Kołodziej
Group instructors: (unknown)
Students list: (inaccessible to you)
Examination: Final rating

Classes in period "Winter semester 2023/2024" (past)

Time span: 2023-10-01 - 2024-02-18
Selected timetable range:
Navigate to timetable
Type of class:
Final grade, 10 hours more information
Coordinators: Jan Kołodziej
Group instructors: Jan Kołodziej
Students list: (inaccessible to you)
Examination: Final rating
Course descriptions are protected by copyright.
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