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TANK DIAPHRAGM KINEMATIC BEHAVIOR AND CONDITIONS FOR SAFE TANK WITHDRAWAL

机译:储罐抽出后隔膜的运动行为和条件

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Power plants, including nuclear power plants regularly employ tanks whose contents need to be kept isolated from atmospheric conditions. One way to satisfy these requirements is to provide a liner for the tank which completely fits the interior shape of the tank but floats on top of the tank contents when the tank contains fluid. As the volume in the tank changes, the liner or diaphragm accommodates the changes in volume by sliding along the tank walls. To allow free movement of the diaphragm, management of the gas volume above the fluid and behind the diaphragm is of prime importance. The work described in this paper elaborates on the conditions required to prevent the tank diaphragm from becoming damaged. To develop potential failure modes, the kinematics of the diaphragm and the interaction with the gas volume between the diaphragm and the tank fluid are considered in detail. The developed model is applied to the case of a condensate storage tank at Comanche Peak Nuclear Power Plant (CPNPP). Two physical scale models of the tank were constructed and tested to validate the model and allow the safe operation principles to be quantified for use in the operation of the condensate storage tank at CPNPP. The work allowed CPNPP to design appropriate periodic checks and maintenance activities to ensure the diaphragm will not be damaged due to tank volume changes while still ensuring the required water chemistry criteria for the tank contents can be met.
机译:包括核电厂在内的电厂通常会使用储罐,储罐中的物品必须与大气隔离。满足这些要求的一种方法是提供一种用于罐的衬套,该衬套完全适合罐的内部形状,但是当罐中装有流体时,该衬套漂浮在罐内容物的顶部。随着储罐中容积的变化,衬里或隔膜会通过沿储罐壁滑动而适应容积的变化。为了允许隔膜自由移动,管理流体上方和隔膜后面的气体量至关重要。本文所述的工作阐述了防止储罐隔膜损坏所需的条件。为了开发潜在的故障模式,将详细考虑隔膜的运动学以及隔膜与罐流体之间的气体体积相互作用。所开发的模型适用于科曼奇峰核电站(CPNPP)的冷凝水储罐。构造并测试了储罐的两个物理比例模型,以验证该模型并允许量化安全运行原理,以用于CPNPP的冷凝水储罐的运行。这项工作使CPNPP能够设计适当的定期检查和维护活动,以确保不会因储罐容积的变化而损坏隔膜,同时仍能确保满足储罐内容所要求的水化学标准。

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