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首页> 外文期刊>Jordan Journal of Mechanical and Industrial Engineering >Dynamic Modeling and Simulation of MSF Desalination Plants
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Dynamic Modeling and Simulation of MSF Desalination Plants

机译:MSF海水淡化厂的动态建模和仿真

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This paper describes the development of a mathematical model to predict the performance of multi-stage flash (MSF) plant systems under transient conditions. The model developed is based on coupling the dynamic equations of mass, energy and momentum. These equations describe the dynamic behavior of brine and product streams within the flashing stages, the effect of salinity and temperature variation on the specific heat, boiling point, enthalpy and density is accounted for in this model. The model which consists of a set of differential and algebraic equations (describing the dynamic behavior of each stage in terms of some key physical parameters) are solved by using the fifth order Runge-Kutta method. The proposed model was validated by using data from previous theoretical studies as well as actual data obtained from an operating MSF plant. The results obtained are useful for dynamic parametric studies and for the prediction of the performance of a given plant under a wide range of possible transient conditions.
机译:本文介绍了数学模型的开发,以预测瞬态条件下多级闪速(MSF)电站系统的性能。开发的模型基于质量,能量和动量的动力学方程。这些方程式描述了闪蒸阶段盐水和产物流的动态行为,该模型考虑了盐度和温度变化对比热,沸点,焓和密度的影响。使用五阶Runge-Kutta方法求解该模型,该模型由一组微分方程和代数方程组成(根据一些关键物理参数描述每个阶段的动态行为)。通过使用来自先前理论研究的数据以及从运行中的MSF工厂获得的实际数据对所提出的模型进行了验证。获得的结果可用于动态参数研究,以及在各种可能的瞬态条件下预测给定植物的性能。

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