Prediction of the Driving Force for the Bidirectional Pig Based on the Cantilever-Kelvin Combination Model

Author:

Cao Yu-Guang1,Zhang Lei2,Liu Chang3,Li Xu-Yang2,Wei Yun-Gang2,Sun Yong-Tai4

Affiliation:

1. Professor, Province Key Laboratory of Safety of Oil and Gas Storage and Transportation, China Univ. of Petroleum, Qingdao 266580, China.

2. Postgraduate Student, Province Key Laboratory of Safety of Oil and Gas Storage and Transportation, China Univ. of Petroleum, Qingdao 266580, China.

3. Doctoral Student, Province Key Laboratory of Safety of Oil and Gas Storage and Transportation, China Univ. of Petroleum, Qingdao 266580, China (corresponding author).

4. Senior Engineer, Drilling Technology Institute of Sinopec Oilfield Service Corporation, No. 827, Beiyi Rd., Dongying Destrict, Dongying 257017, China.

Publisher

American Society of Civil Engineers (ASCE)

Subject

Mechanical Engineering,Civil and Structural Engineering

Reference18 articles.

1. Azevedo L. F. A. A. M. B. Bracm A. O. Nieckele M. F. Naccxhe and M. G. F. M. Gomes. 1996. “Simple hydrodynamic models for the prediction of pig motions in pipelines.” In Proc. Offshore Technology Conf. 729–739. Houston: Offshore Technology Conference.

2. Prediction of the driving force for a cup pig based on the distribution of contact stress

3. Finite element analysis of contact stress of foam pig in submarine pipeline;Cao Y. G.;J. Chin. Univ. Petrol. (Ed. Nat. Sci.),2019

4. Stress Distribution of the Power Section Cup of Pipeline Inspection Gauges by Finite Element Method

5. de Souza L. H. I. B. F. Silva and B. L. B. de Andrade. 2013. “Analysis of contact forces acting upon pipeline PIGs.” In Proc. 22nd Int. Congress of Mechanical Engineering 9776–9784. Ribeirão Preto SP: COBEM.

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