Course detail

Pipeline Engineering

FSI-LPO Acad. year: 2024/2025 Summer semester

The course deals with pipes and pipe networks for the transport of liquids, gas, sludge, raw materials, energy, etc. Problems of steady and unsteady flow numerics, pumps, valves, in-situ measuring, and surge are also solved. Knowledge in the field of the design of water-, oil-, gas-, heat-supply systems and sludge delivery piping is the goal of the training.

Department

Learning outcomes of the course unit

Prerequisites

Knowledge obtained during the previous course of Hydromechanics is the pre-requisite.

Planned learning activities and teaching methods

Assesment methods and criteria linked to learning outcomes

Conditions for granting credit: Seminars and written tasks on the excercises. The examinations and the final classification of the course: Credit and oral exam.

Seminars and written tasks on the excercises

Language of instruction

Czech

Aims

Specification of controlled education, way of implementation and compensation for absences

The study programmes with the given course

Programme C-AKR-P: , Lifelong learning
branch CLS: , 5 credits, elective

Programme N-ETI-P: Power and Thermo-fluid Engineering, Master's
branch ENI: Power Engineering, 5 credits, compulsory-optional

Programme N-ETI-P: Power and Thermo-fluid Engineering, Master's
branch FLI: Fluid Engineering, 5 credits, compulsory-optional

Programme N-ETI-P: Power and Thermo-fluid Engineering, Master's
branch TEP: Environmental Engineering, 5 credits, compulsory-optional

Type of course unit

 

Lecture

26 hours, optionally

Syllabus

1. Introduction. The pipesystems for transport of gas, fluid, solids and energy.
2. The elements of pipelines.
3. The energy losses. The hydraulics of valves.
4. The basics of the pump, flow rate and pressure control.
5. The pressure and flow analysis of pipe network.
6. Waterhammer and protection from pressure surge, numerical simulation of unsteady flow.
7. Transport of sludge, steam, gas and non-newtonian liquid.
8. Pipe technology in the municipal, industrial utilities and energy industry.
9. Stability computations of pipeline elements.
10. Design and construction.
11. Operation and maintenance, measurement.

Exercise

26 hours, compulsory

Syllabus

1. Introduction. The pipesystems for transport of gas, fluid, solids and energy.
2. The elements of pipelines.
3. The energy losses. The hydraulics of valves.
4. The basics of the pump, flow rate and pressure control.
5. The pressure and flow analysis of pipe network.
6. Waterhammer and protection from pressure surge, numerical simulation of unsteady flow.
7. Transport of sludge, steam, gas and non-newtonian liquid.
8. Pipe technology in the municipal, industrial utilities and energy industry.
9. Stability computations of pipeline elements.
10. Design and construction.
11. Operation and maintenance, measurement.