首页> 外文会议>ASME/JSME Joint Fluids Engineering Conference >STUDY ON THE OPERABILITY MARGIN VARIATION OF BUTTERFLY VALVE
【24h】

STUDY ON THE OPERABILITY MARGIN VARIATION OF BUTTERFLY VALVE

机译:蝶阀可操作性边缘变化研究

获取原文

摘要

Design basis capability of safety-related butterfly valve of nuclear power plant should be verified due to the regulation of Korea. Therefore, based on the results from the torque coefficient of thin symmetric plate, the nuclear utility has performed the engineering calculation to determine the required torque for operating a butterfly valve and the margin of operability at design basis condition. However, recent research showed that the torque coefficient of the thin symmetric plate used before is rather larger than newly determined one. Therefore, in the present study, the effect of change in the torque coefficient of thin symmetric plate on the operating margin is investigated. First, the recently determined valve loss coefficient of thin symmetric plate is modified at near valve full open position to reflect a finite thickness of valve disk. Second, the torque coefficient of symmetric disk butterfly valve is determined from the loss coefficient and the torque coefficient of thin symmetric plate and using this, the torque coefficient of butterfly valve with asymmetric disk is also deduced. Then, the variation on the hydrodynamic torque of butterfly valve is quantified and the operating margin variation of safety-related butterfly valve is determined. Calculations of the operating margin are performed for 10 butterfly valves of Uljin 6 nuclear power plant of Korea, which have all asymmetric valve disks. As expected, the hydrodynamic torque which is proportional to the torque coefficient is reduced and the resulting margin of operability is improved for opening safety direction. The margin improvement amounts to from 6.0% to 142.9% for valves considered. For closing safety direction, although the hydrodynamic torque is also reduced, the total dynamic torque due to overall hydrodynamic effect is increased from 1.1% to 63.0% on the contrary. This increase is because the hydrodynamic torque assists valve closing. Despite of these increases in the total dynamic torque, the operability margins of closing direction do not change at all. The reason is that the required torque for operating valve is determined not by the total dynamic torque but by the total seating torque which is more dominating. In conclusion, the margin improvement is significant for opening otherwise the margin deterioration is slight for closing when the torque coefficient is reduced.
机译:由于韩国的监管,应验证核电站安全相关蝶阀的设计基础能力。因此,基于来自薄对称板的扭矩系数的结果,核实用程序已经进行了工程计算,以确定用于操作蝶阀的所需扭矩和设计基条件下的可操作性。然而,最近的研究表明,之前使用的薄对称板的扭矩系数比新确定的扭矩系数相当大。因此,在本研究中,研究了薄对称板扭矩系数变化对操作边缘的影响。首先,在靠近阀全开位置进行修改薄对称板的最近确定的阀损耗系数,以反映阀盘的有限厚度。其次,对称盘蝶阀的扭矩系数由损耗系数和薄对称板的扭矩系数确定,并且使用该扭矩系数,还推导出具有不对称盘的蝶阀的扭矩系数。然后,量化蝶阀的流体动力扭矩的变化,确定了安全相关蝶阀的操作边缘变化。对韩国乌金6核电站的10个蝶阀进行了操作边缘的计算,具有所有不对称的阀门盘。如预期的那样,减小了与扭矩系数成比例的流体动力转矩,并且可以改善可操作性的可操作性余量以打开安全方向。所考虑的阀门的保证金改善量为6.0%至142.9%。为了关闭安全方向,尽管流体动力扭矩也降低,但由于整体流体动力学效应导致的总动态扭矩从相反的1.1%增加到63.0%。这种增加是因为流体动力扭矩有助于阀门关闭。尽管存在这些动态扭矩增加,但关闭方向的可操作性边距根本不会改变。原因是,操作阀所需的扭矩不是通过总动态扭矩来确定的,而是通过更大主导的总座位扭矩来确定。总之,边缘改善对于开放是显着的,否则在减少扭矩系数时,边距劣化是略微的,略微关闭。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号