Blockage Detection in Gas Pipelines to Prevent Failure of Transmission Line

Author:

Pratap Vikrant1ORCID,Rajendran Shunmugasundaram2,Agrawal Rohit Kumar3,Indimath Shivanandan Shashidhar2,Reddy Bonikila Pradeep3,Balamurugan Sriniwasagan4

Affiliation:

1. Researcher, Non-Destructive Testing and Sensors Research Group, Research and Development, Tata Steel Ltd., Jamshedpur, Jharkhand 831001, India (corresponding author). ORCID: .

2. Principal Researcher, Non-Destructive Testing and Sensors Research Group, Research and Development, Tata Steel Ltd., Jamshedpur, Jharkhand 831001, India.

3. Researcher, Non-Destructive Testing and Sensors Research Group, Research and Development, Tata Steel Ltd., Jamshedpur, Jharkhand 831001, India.

4. Head of Research Group, Non-Destructive Testing and Sensors Research Group, Research and Development, Tata Steel Ltd., Jamshedpur, Jharkhand 831001, India.

Publisher

American Society of Civil Engineers (ASCE)

Subject

Mechanical Engineering,Civil and Structural Engineering

Reference16 articles.

1. Pipe corrosion and deposit study using neutron- and gamma- radiation sources

2. Blockage Detection in Pipelines Using a Flexible Piezoelectric Film Sensor

3. Carino N. J. 2015. “Impact echo: The fundamentals.” In Proc. Int. Symp. on Non-Destructive Testing in Civil Engineering. Berlin: Technical Univ. of Berlin.

4. Carino, N. J., M. Sansalone, and N. N. Hsu. 1986. “Flaw detection in concrete by frequency spectrum analysis of impact-echo waveforms.” In International advances in nondestructive testing. 12th ed., 117–146. New York: Gordon & Breach Science Publishers.

5. Gooch R. M. T. A. Clarke and T. J. Ellis. 1996. “A semi-autonomous sewer surveillance and inspection vehicle.” In Proc. Conf. on Intelligent Vehicles. New York: IEEE.

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