Publication detail

Analysis of effect of stream mixing velocity on coupling damages

NEKVASIL, R. NETERDA, Z. VEJVODA, S.

Original Title

Analysis of effect of stream mixing velocity on coupling damages

English Title

Analysis of effect of stream mixing velocity on coupling damages

Type

conference paper

Language

German

Original Abstract

Coupling lifetime decreasing in dependence on the stream mixing was ignored in earlier times. Close attention to this topic was paid after recurring damages. These damages were caused by uneven temperature load caused by non-stationary temperature field in material. This phenomenon is continuously investigated and solved worldwide. The different effects (the temperature, velocity, pressure, geometry) contribute to formation of the damages. In this paper the effect of the stream velocity on the coupling damage is discussed. In this case study the coupling is perpendicular to a main pipeline. A real case of a coupling used in a chemical industry, is analyzed.

English abstract

Coupling lifetime decreasing in dependence on the stream mixing was ignored in earlier times. Close attention to this topic was paid after recurring damages. These damages were caused by uneven temperature load caused by non-stationary temperature field in material. This phenomenon is continuously investigated and solved worldwide. The different effects (the temperature, velocity, pressure, geometry) contribute to formation of the damages. In this paper the effect of the stream velocity on the coupling damage is discussed. In this case study the coupling is perpendicular to a main pipeline. A real case of a coupling used in a chemical industry, is analyzed.

Key words in English

heat load, blending, damage cumulation, stream mixing, coupling, lifetime

Authors

NEKVASIL, R.; NETERDA, Z.; VEJVODA, S.

RIV year

2006

Released

25. 10. 2006

Publisher

CADFEM GmbH

Location

Stuttgart/Fellbach, Německo

ISBN

3-937523-03-0

Book

24th CADFEM Users Meeting 2006, International congress on FEM Technology with 2006 German ANSYS Conference

Pages from

cd-rom

Pages to

2.7.16

Pages count

6