Pipe axial displacements from a monitored pipeline connected to a district heating network

Author:

Hay Stefan1,Weidlich Ingo2,Wolf Ingo3,Villalobos Felipe A.4ORCID

Affiliation:

1. Project Manager and Scientific Instructor in District Heating, Cooling and Combine Heating and Power (CHP), Research and Development, AGFW, Frankfurt am Main, Germany

2. University Professor, Infrastructural Engineering, HafenCity University Hamburg, Hamburg, Germany

3. Quality Assurance and Standardization Consultant, Colmarer Straße 1, Bremen, Germany; formerly at enercity Netz GmbH, Hannover

4. Assistant Professor, Department of Civil Engineering, Universidad Católica de la Santísima Concepción, Concepción, Chile (corresponding author: )

Abstract

The development of a monitored district heating piping system has allowed the study of axial displacement variations in a buried pipeline. This piping system includes four instrumented sections of piping within an in use district heating network. There are also different conditions under testing such as thickness of expansion cushions, temperature ranges and bedding soil types. The pipe axial displacements were on-line monitored by means of extensometers in six positions along each of the four sections of the pipeline. Measured maximum pipe axial displacements were 24 and 25 mm in the corners of the 41 m long monitored pipelines, while estimated values were 23 mm using current recommendation procedures and 27 mm using calibrated commercial computer programs. One temperature unloading−reloading caused displacements to not return to the same values as before, but around 3 mm smaller. Therefore, several unloading−reloading temperature cycles may affect the pipe deformation behaviour in the short and long term.

Publisher

Thomas Telford Ltd.

Subject

General Energy

Reference27 articles.

1. Achmus M (1995) Zur Berechnung der Beanspruchungen und Verschiebungen Erdverlegter Fernwärmeleitungen. (Calculation of Stresses and Displacements of Underground District Heating Pipelines.) PhD thesis, Leibniz University of Hanover, Germany (in German).

2. Interaktion zwischen Fernwärmeleitungen und dem umgebenden Boden

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1. Editorial: energy and buildings in a global warming context;Proceedings of the Institution of Civil Engineers - Energy;2022-08

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