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Switching moving boundary models for two-phase flow evaporators and condensers

机译:两相流蒸发器和冷凝器的切换运动边界模型

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摘要

The moving boundary method is an appealing approach for the design, testing and validation of advanced control schemes for evaporators and condensers. When it comes to advanced control strategies, not only accurate but fast dynamic models are required. Moving boundary models are fast low-order dynamic models, and they can describe the dynamic behavior with high accuracy. This paper presents a mathematical formulation based on physical principles for two-phase flow moving boundary evaporator and condenser models which support dynamic switching between all possible flow configurations. The models were implemented in a library using the equation-based object-oriented Modelica language. Several integrity tests in steady-state and transient predictions together with stability tests verified the models. Experimental data from a direct steam generation parabolic-trough solar thermal power plant is used to validate and compare the developed moving boundary models against finite volume models. (C) 2014 Elsevier B.V. All rights reserved.
机译:移动边界方法是用于设计,测试和验证蒸发器和冷凝器高级控制方案的一种有吸引力的方法。当涉及高级控制策略时,不仅需要准确的模型,而且还需要快速的动态模型。移动边界模型是快速的低阶动态模型,可以高精度地描述动态行为。本文提出了基于物理原理的两相流移动边界蒸发器和冷凝器模型的数学公式,该模型支持所有可能的流配置之间的动态切换。使用基于方程式的面向对象的Modelica语言在一个库中实现了这些模型。稳态和瞬态预测中的几个完整性测试以及稳定性测试验证了该模型。来自直接产生蒸汽的抛物槽太阳能热电厂的实验数据用于验证和比较有限边界模型与已开发的运动边界模型。 (C)2014 Elsevier B.V.保留所有权利。

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