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A CASE STUDY: BALANCED GLOBE VALVES FAILURE, ROOT CAUSE, AND RECOVERY

机译:案例研究:平衡的球阀故障,根本原因和恢复

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During the pre-operational blowdown testing of the AP1000® Automatic Depressurization System (ADS), it was observed that several ADS Stage 1-3 balanced globe valves did not fully open; however, the valves did sufficiently open to provide adequate ADS flow to meet the ADS System depressurization safety function. Since the Main Control Room did not receive a full-open signal indicating that the ADS valves fully completed the valve stroke, the valves were disassembled to determine the potential cause and scoring was observed on the valve disk and valve body guide surfaces. A technical design review team was formed and determined that the primary cause was unequal thermal expansion between the thin walled valve disk and the thicker valve body resulting in interference during valve stroking. Classical thermal and CFD analyses were used to confirm that, once a normally closed globe valve received its signal to open, there was not sufficient "soak time" for the thicker valve body to reach thermal equilibrium with the thinner valve disk; thus, as the valve disk stroked open as it moved along the guide surfaces, there was not sufficient clearance resulting in scoring between the disk and the guides preventing the disk from stroking fully open. The solution was to maximize the clearance between the disk and body guides to allow for thermal growth during the ADS blowdown event. However, changing the clearances between the body guides and disk may compensate for thermal growth but may also impact the valve's "balancing" function; therefore, disk piston rings were added to restore the tight clearance needed for "balancing" yet sufficiently provide relief from the effects of thermal growth. A prototype valve was retrofitted, and small scale validation tests were performed using air to challenge the changes. The preliminary performance test results were utilized by system designers to better understand the valve function in the event of an ADS blowdown. Although no full-scale retrofit testing was practical using high temperature saturated steam, as no suitable test facility was available within the plant operational test schedule time frame, the quality of the recovery effort yielded a high degree of confidence that the system retest would be successful. The project came to a successful conclusion upon two successful operational ADS blowdown tests with the retrofits installed.
机译:在AP1000®自动减压系统(广告)的预操作排污测试期间,观察到几个ADS第1-3阶段平衡的全球阀门没有完全开放;然而,阀门确实足以提供足够的ADS流动以满足ADS系统减压安全功能。由于主控制室没有接收到一个全开信号,表示ADS阀完全完成阀门行程,因此拆卸阀门以确定在阀盘和阀体引导表面上观察到潜在的原因和评分。形成了技术设计审查小组,并确定了薄壁阀盘和较厚的阀体之间的主要原因在阀门划线期间产生干扰之间的不等热膨胀。经典的热和CFD分析用于确认,一旦常闭球阀接收到其打开的信号,较厚的阀体的“浸泡时间”就没有足够的“浸泡的时间”,以达到较薄的阀盘的热平衡;因此,当沿着导向表面移动时沿着阀盘打开时,没有足够的间隙,导致盘之间的刻痕和防止盘完全打开的引导件之间的刻痕。该解决方案是最大化盘和主板之间的间隙,以允许在ADS排污事件期间热生长。然而,改变体引导和盘之间的间隙可以补偿热生长,但也可能影响阀门的“平衡”功能;因此,添加了盘式活塞环以恢复“平衡”所需的紧密间隙,但足够地从热生长的效果充分提供浮雕。原型阀门改装,使用空气进行小规模验证测试,以挑战变化。系统设计人员利用了初步性能测试结果,以便在广告排污时更好地了解阀门功能。尽管使用高温饱和蒸汽没有全面的改造测试实用,但由于在工厂操作试验时间表中没有提供合适的测试设施,因此恢复工作的质量产生了高度的信心,即系统重新测试将是成功的。该项目在两次成功的运营广告排污测试中获得了成功的结论,并安装了改造。

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