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Dynamic Numerical Simulation of a Mechanical Vapour Compression (MVC) Desalination System That Use Renewable Source Energy

机译:使用可再生能源的机械蒸汽压缩(MVC)海水淡化系统的动态数值模拟

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摘要

This paper presents a numerical model to analyse the thermal and fluid dynamic behaviour of a mechanical vapour compression MVC desalination system, which uses renewable energy to supply the electricity required by the whole system. The reason to use renewable energy is that the MVC desalination system has been though to work in remote places, where an electric grid is not available. The transient and steady-state of the desalination system are evaluated taking into account the variability of the renewable energy sources (solar energy). A scalability study has been carried out to find the relation between the variability of the renewable energy sources and the capacity of the desalination system (distilled water production). Different components which making up the desalination system are considered in the numerical simulation, all of them are solved in a coupled way by mean of an object-oriented tool called NEST. The influence of the feed seawater conditions is also analysed on the system performance.
机译:本文提出了一个数值模型来分析机械蒸汽压缩MVC脱盐系统的热和流体动力学行为,该系统使用可再生能源来供应整个系统所需的电力。使用可再生能源的原因是,MVC海水淡化系统一直可以在没有电网的偏远地区工作。考虑到可再生能源(太阳能)的可变性,对脱盐系统的瞬态和稳态进行了评估。已经进行了可扩展性研究,以发现可再生能源的可变性与淡化系统容量(蒸馏水生产)之间的关系。在数值模拟中考虑了构成淡化系统的不同组件,所有这些组件均通过称为NEST的面向对象工具以耦合方式进行求解。还分析了进料海水条件对系统性能的影响。

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