Orbital-Rail-Type Automatic Inspection Device for Pipeline Welds Using Radiation Dose Prediction Results from FLUKA Simulation

Author:

Kim Du-Song1ORCID,Heo Sung-Hoe23ORCID,Heo Seung-Uk4,Kim Jaewoong5

Affiliation:

1. Welding Engineering R&D Department, Hanwha Ocean Co., Ltd., Geoje 53302, Republic of Korea

2. Department of Emergency and Disaster Management, Graduate School, Inje University, Gimhae 50834, Republic of Korea

3. Non Destructive Test Team, DSEC T&S Co., Ltd., Geoje 53302, Republic of Korea

4. Safety for Medical Device and Radiation, Yangsan 50654, Republic of Korea

5. Automotive Materials & Components R&D Group, Korea Institute of Industrial Technology, Gwangju 61012, Republic of Korea

Abstract

Pipeline welds typically do not have secondary reinforcement, rendering welds highly vulnerable to leakage accidents caused by the movement of gases or liquids. Therefore, identifying internal defects in welds through radiographic testing (RT) is critical for a visual and quantitative evaluation of weld defects. In this study, we developed a device that can automatically inspect the circumferential connection between pipes by applying a digital radiography testing (DRT) technique that can convert radiation signals into real-time electrical signals by using a digital detector array (DDA). Gamma rays were used to minimize spatial constraints in the inspection environment and optimization was performed to satisfy quality requirements set by international standards. Furthermore, FLUKA simulation was performed to predict radiation intensity for accurate radiation leakage identification to enable the shielding design to be supplemented with lead rubber. This measure considerably reduces the safe distance for radiation leakage during field testing. The results confirmed the feasibility of a novel automated inspection technique that integrates automatic inspection devices and ensures safety using radiation, the byproduct of which is a hazardous material.

Funder

Korea Institute of Industrial Technology

Publisher

MDPI AG

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