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An Analytical Method for Modeling Two-Phase Gravity-Driven Drainage Systems in BOP Applications

机译:一种模拟BOP应用中两相重力驱动排水系统的分析方法

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Two-phase gravity-driven drainage systems are used in many applications within nuclear power Balance of Plant (BOP) applications such as the drain lines for moisture separator re-heaters (MSRs) and feedwater heaters. Design of these systems is typically based on industry-oriented guidelines and operator-based experience. Changes in plant operation, such as uprates and equipment modification and/or replacement, are relatively common as plants seek to generate more power with greater efficiency. These plant modifications may inadvertently change system operation from design conditions and impose undesirable system transients. This paper seeks to provide a method for analyzing BOP drainage systems in an effort to characterize and mitigate drain flow transients. Previous methodologies diagnose and evaluate drain instability through measurement, empirical analysis, and operational experience. This paper identifies methods that can be utilized to generate computational models of discrete plant drainage systems that decrease the level of speculation involved in previous analyses. Additionally, a real-world application of this method is presented to demonstrate how computer modeling can accurately mimic plant transients.
机译:两相重力驱动的排水系统用于植物(BOP)核电平衡的许多应用中,例如水分分离器重新加热器(MSR)和给水加热器的漏极线。这些系统的设计通常基于以行业为导向的准则和基于操作员的经验。植物运行的变化,如Uprates和设备改造和/或更换,与植物寻求更高的效率产生更多功率相比,相对普遍。这些植物修改可能无意中从设计条件改变系统操作,并施加不期望的系统瞬变。本文旨在提供一种用于分析BOP排水系统的方法,以表征和减轻排水流动瞬态。以前的方法诊断并通过测量,实证分析和操作经验诊断和评估漏油不稳定性。本文识别可用于生成离散植物排水系统的计算模型的方法,这减少了先前分析中所涉及的猜测水平。另外,提出了这种方法的真实应用,以演示计算机建模如何准确模拟植物瞬变。

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