Effect of flow field on particle erosion in eroded square elbows

Author:

Lin Nan,Ju Jianbo,Zhang Hao

Abstract

Abstract Erosion often occurs on the inner wall of gathering pipelines. Even if the particle size is small, the cumulative erosion may also cause serious erosion on pipelines and even leads to leakages. In order to learn erosion on elbows of pipelines in natural gas stations, mechanisms analysis and computational fluid dynamics (CFD) method were used to investigate erosion on square elbows based on a case of elbows erosion in a gas gathering station. The results show that there are erosion sensitive areas on the eroded surface of elbows which are more likely to be eroded, erosion prediction of elbows could be obtained through CFD method. It is concluded that researches on erosion are important in oil and gas gathering industry and could be a good guiding for life prediction, inspection and operational safety protection of gathering pipelines.

Publisher

IOP Publishing

Subject

General Engineering

Reference14 articles.

1. Experimental study of particle size, shape and particle flow rate on erosion of stainless steel [J];Nan;Powder Technology,2018

2. Failure analysis of natural gas pipes [J];Majid;Engineering Failure Analysis,2010

3. Internal corrosion location prediction technology in pipeline component of natural gas gathering station[J];Hui;Corrosion & Protection,2014

4. Failure analysis of coal bottom ash slurry pipeline in thermal power plant [J];More;Engineering Failure Analysis,2018

5. Analysis on the internal corrosion cause of typical pipe fitting in the pipeline of a natural gas gathering station[J];Hui;PTCA (Part A: Phys. Test.),2015

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