Showing 161 - 180 results of 1,182 for search '"pipeline"', query time: 0.05s Refine Results
  1. 161

    Fuzzy Based Design for Third-Party Pipeline Failures in the Niger Delta Region of Nigeria by GO Ariavie, RE Emetitiri, OE Ononeme, ID Olowu

    Published 2015-07-01
    “…A Fuzzy based design for assessing failures of pipelines occasioned by third party in the Niger Delta Region of Nigeria has been proposed in this study. …”
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    Article
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    Finite-Element Analysis of Oscillations in Damaged Pipeline Sections Reinforced With a Composite Material by Arman Moldagaliyev, Nurlan Zhangabay, Marco Bonopera, Talzhan Raimberdiyev, Shairbek Yeshimbetov, Seraliyev Galymzhan, Yermek Anarbayev

    Published 2024-01-01
    “…The outcome showed that to compensate for the stress concentration in the damaged zone of a pipeline with a thickness between 11.9 and 14.3 mm, the thickness of the composite wrap should be 2÷4 mm, that is, not lower than 17% of the original pipeline thickness at thinning and not lower than 34% of the original pipeline thickness at large cracks. …”
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  9. 169

    A new pipeline SPICE identifies novel JUN-IKZF1 composite elements by Peng Li, Sree Pulugulla, Sonali Das, Jangsuk Oh, Rosanne Spolski, Jian-Xin Lin, Warren J Leonard

    Published 2025-01-01
    “…Here, we report a novel protein-DNA binding screening pipeline, termed Spacing Preference Identification of Composite Elements (SPICE), that can systematically predict protein binding partners and DNA motif spacing preferences. …”
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    Article
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    Assessment of the Radioactive Contamination of the RBMK-1500 Reactor’s Steam Pipelines and High Pressure Rings by G. Poškas, P. Poškas, A. Šimonis

    Published 2019-01-01
    “…Data analyses of radioactive contamination of the RBMK-1500 reactor’s steam pipelines (SP) and components of high pressure rings (HPR) are presented in this paper. …”
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    Article
  13. 173
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    Failure Analysis of Corrosion-Induced Perforation in B10 Copper-Nickel Alloy Pipelines by SONG Shuai, QIN Limin, SUN Yujiang, ZHANG Shangfeng, YANG Wenming, HE Yueyang, XU Zhigang

    Published 2024-12-01
    “…The B10 copper-nickel alloy pipeline used for seawater transportation on a certain platform was found to have corrosion perforation at the weld joint between the elbow and the flange during a shutdown inspection.In this study, the failure mechanism of corrosion perforation was analyzed using macroscopic morphology observation,scanning electron microscopy (SEM),energy-dispersive spectroscopy (EDS),X-ray diffraction (XRD) and metallographic examination.Results showed that “sugar cube”-like intergranular corrosion morphologies were commonly observed at the bottom of corrosion pits on the flange, in erosion-wear areas, corrosion grooves, perforated regions and at the bottom of corrosion pits on the elbow.Locally, a “stepped” exfoliation morphology was observed, where grains were progressively stripped layer by layer.The preferentially corroded grain boundaries formed a circuit, and the surrounded grains were selectively denickelized and dissolved, resulting in grain spalling.The reduced hardness and coarse columnar grain structure of the flange further decreased the material’s corrosion resistance.The corrosion perforation of the copper-nickel alloy pipeline occurred in the erosion-sensitive zones and the weld heat-affected zones with the poorest corrosion resistance.This failure was the result of the synergistic effects of erosion wear, intergranular corrosion and selective dealloying.Enhanced corrosion monitoring is recommended for similar locations in service pipelines.…”
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  15. 175
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    A Hybrid FEM-CNN for Image-Based Severity Prediction of Corroded Offshore Pipelines by Mohammad Fadzil Najwa, Muda Mohd Fakri, Abdul Shahid Muhammad Daniel, Aziz Norheliena, Mohd Mohd Hairil, Mohd Amin Norliyati, Mohd Hashim Mohd Hisbany

    Published 2025-01-01
    “…This research aims to quickly and accurately determine the severity of pipeline corrosion categorized as high, intermediate, or low through stress images generated from FEM. …”
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  17. 177

    Study on Influence of Cavity and Water Mist on Flame Propagation of Gas Explosion in a Pipeline by Shicheng Gu, Shujie Yuan, Zhuo Yan, Xiaoxue Xu

    Published 2021-01-01
    “…The change of gas explosion flame in the pipeline was analyzed. The results showed that the intensity and flame propagation velocity increase after the explosion flame passes through the straight pipeline, and the attenuation rates are 4.93% and -2.48%, respectively. …”
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    Article
  18. 178

    The Potential Impacts of The East African Crude Oil Pipeline (EACOP) On Human Rights in Uganda. by Mugabi. K. Ivan.

    Published 2023
    “…This paper is primarily centered on interaction between the advancement of the East African Crude Oil Pipeline (herein after the EACOP) on one hand and aspects of human rights on the other hand. …”
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