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    Feasibility of Monitoring Flaws in Nuclear Reactor Primary Loop Piping Systems Using Surface Strain Measurements—Phase 2: Pressurized Welded Pipe Mock Ups

    Source: Journal of Nondestructive Evaluation, Diagnostics and Prognostics of Engineering Systems:;2026:;volume( 009 ):;issue:002::page 199
    Author:
    Wall, James J.
    ,
    Hohmann, Brian P.
    DOI: 10.1115/1.4070785
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: Abstract. The material presented in this article summarizes the results from phase 2 of a larger Electric Power Research Institute (EPRI) study to determine if permanently mounted strain sensors can be used to monitor and quantify the presence and growth characteristics of flaw indications in primary loop piping in light water nuclear power reactors (LWRs). The samples utilized in this phase 2 work consisted of butt welded sections of austenitic 304 stainless steel pipe segments. Axial and circumferential notches, intended to simulate service flaws of varying depths and lengths, were generated into the inner diameter (ID) of the samples. Resistive strain gauges were applied in longitudinal (axial) and transverse (hoop) orientations, on the outer diameter (OD) in the vicinity of the notch locations. The axial notches perpendicularly intersected the weld while circumferential notches were generated along the weld fusion planes on one side (15 deg from the radial direction). The notch morphologies, strain gauge placement details, and a summary of the strains measured during pressurization tests are presented in this article. Based on the strain data obtained, transverse strain measurements may be sufficient to allow online monitoring (OLM) of axial and circumferential flaws in the vicinity of welds in the LWR pressurized primary coolant loop austenitic stainless steel piping and components.
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      Feasibility of Monitoring Flaws in Nuclear Reactor Primary Loop Piping Systems Using Surface Strain Measurements—Phase 2: Pressurized Welded Pipe Mock Ups

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    contributor authorWall, James J.
    contributor authorHohmann, Brian P.
    date accessioned2026-08-23T08:02:25Z
    date available2026-08-23T08:02:25Z
    date copyright2026/05/01
    date issued2026
    identifier issn2572-3901
    identifier othernde-25-1048.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4315991
    description abstractAbstract. The material presented in this article summarizes the results from phase 2 of a larger Electric Power Research Institute (EPRI) study to determine if permanently mounted strain sensors can be used to monitor and quantify the presence and growth characteristics of flaw indications in primary loop piping in light water nuclear power reactors (LWRs). The samples utilized in this phase 2 work consisted of butt welded sections of austenitic 304 stainless steel pipe segments. Axial and circumferential notches, intended to simulate service flaws of varying depths and lengths, were generated into the inner diameter (ID) of the samples. Resistive strain gauges were applied in longitudinal (axial) and transverse (hoop) orientations, on the outer diameter (OD) in the vicinity of the notch locations. The axial notches perpendicularly intersected the weld while circumferential notches were generated along the weld fusion planes on one side (15 deg from the radial direction). The notch morphologies, strain gauge placement details, and a summary of the strains measured during pressurization tests are presented in this article. Based on the strain data obtained, transverse strain measurements may be sufficient to allow online monitoring (OLM) of axial and circumferential flaws in the vicinity of welds in the LWR pressurized primary coolant loop austenitic stainless steel piping and components.
    publisherThe American Society of Mechanical Engineers (ASME)
    titleFeasibility of Monitoring Flaws in Nuclear Reactor Primary Loop Piping Systems Using Surface Strain Measurements—Phase 2: Pressurized Welded Pipe Mock Ups
    typeJournal Paper
    journal volume9
    journal issue2
    journal titleJournal of Nondestructive Evaluation, Diagnostics and Prognostics of Engineering Systems
    identifier doi10.1115/1.4070785
    journal fristpage199
    journal lastpage205
    page7
    treeJournal of Nondestructive Evaluation, Diagnostics and Prognostics of Engineering Systems:;2026:;volume( 009 ):;issue:002
    contenttypeFulltext
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