Course detail
Railway Structures 1
FAST-BN001Acad. year: 2018/2019
Railway track geometry components and alignment, rail track gauge, cant and twist, horizontal and vertical track alignment, track alignment design parameters for operation of tilting body trains
Geodetic surveying of track layout, track layout optimization problems, geodetic layout and fixing of rail track alignment.
Clearances. The centre line distances in open track and in railway stations. Routing of railway lines, railway track design.
Subdivision and construction of rail substructure and its construction layers – basic terms. Ballast bed and formation – bearing capacity, stress distribution, types and design of railway substructure, construction layers.
Language of instruction
Number of ECTS credits
Mode of study
Guarantor
Department
Learning outcomes of the course unit
Prerequisites
Soil mechanics, classification of soils for engineering purposes, shear strength of soils, stresses in soils.
Strength and elasticity of materials, basic principles of structural mechanics.
Basic terms, division of railway structures. Track alignment design parameters and its spatial position – basic terms.
Co-requisites
Planned learning activities and teaching methods
Assesment methods and criteria linked to learning outcomes
A credit acquisition is conditional on attendance, submitting calculations focused on the design of track geometry parameters and delivery of two projects - design of a section of double track line and study of railway line, successful completion of a written test.
Course curriculum
2. Cant, distance-related cant gradient, time-related cant gradient, cant deficiency.
3. Horizontal track alignment. Transition curves.
4. Nonlinear transition curves.
5. Compound curves. Transition curves connecting two circular curves. Reverse curves.
6. Vertical track alignment, gradients, vertical curves.
7. Track alignment design parameters for operation of tilting body trains.
8. Routing of railway lines, railway track design.
9. Geodetic surveying of track layout, track layout optimization problems.
10. Geodetic layouts and fixing of rail track alignment.
11. Clearances. The centre line distances in open track and in railway stations.
Work placements
Aims
Specification of controlled education, way of implementation and compensation for absences
Recommended optional programme components
Prerequisites and corequisites
Basic literature
Recommended reading
Classification of course in study plans
Type of course unit
Lecture
Teacher / Lecturer
Syllabus
2. Cant, distance-related cant gradient, time-related cant gradient, cant deficiency.
3. Horizontal track alignment. Transition curves.
4. Nonlinear transition curves.
5. Compound curves. Transition curves connecting two circular curves. Reverse curves.
6. Vertical track alignment, gradients, vertical curves.
7. Track alignment design parameters for operation of tilting body trains.
8. Routing of railway lines, railway track design.
9. Geodetic surveying of track layout, track layout optimization problems.
10. Geodetic layouts and fixing of rail track alignment.
11. Clearances. The centre line distances in open track and in railway stations.
Exercise
Teacher / Lecturer
Syllabus
2. Cant, distance-related cant gradient, time-related cant gradient, cant deficiency. Specifying of design of a section double track line.
3. Calculations of track layout of a circle curve with transition curves
4. Compound curves. Transition curves connecting two circular curves. Reverse curves.
5. Vertical track alignment
6. Drawings elaboration
7. Submitting of design of section of double track line. Specifying of study of railway line.
8. Written test
9. Evaluation of track design variants.
10. Drawings and report elaboration
11. Submitting of study of section of railway line, credit.