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Transient behavior of redox flow battery connected to circuit based on global phase structure

机译:基于全局相结构的电路连接的氧化还原液流电池的瞬态行为

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A Redox Flow Battery (RFB) is one of the promising energy storage systems in power grid. An RFB has many advantages such as a quick response, a large capacity, and a scalability. Due to these advantages, an RFB can operate in mixed time scales. Actually, it has been demonstrated that an RFB can be used for load leveling, compensating sag, and smoothing the output of the renewable sources. An analysis on transient behaviors of an RFB is a key issue for these applications. An RFB is governed by electrical, chemical, and fluid dynamics. The hybrid structure makes the analysis difficult. To analyze transient behaviors of an RFB, the exact model is necessary. In this paper, we focus on a change in a concentration of ions in the electrolyte, and simulate the change with a model which is mainly based on chemical kinetics. The simulation results introduces transient behaviors of an RFB in a response to a load variation. There are found three kinds of typical transient behaviors including oscillations. As results, it is clarified that the complex transient behaviors, due to slow and fast dynamics in the system, arise by the quick response to load.
机译:氧化还原液流电池(RFB)是电网中有希望的储能系统之一。 RFB具有许多优势,例如响应速度快,容量大和可伸缩性。由于这些优点,RFB可以在混合时间范围内运行。实际上,已经证明了RFB可用于负载均衡,补偿垂度和使可再生资源的输出平滑。对于这些应用,对RFB的瞬态行为进行分析是一个关键问题。 RFB由电气,化学和流体动力学控制。混合结构使分析变得困难。要分析RFB的瞬态行为,必须使用精确的模型。在本文中,我们着重研究电解质中离子浓度的变化,并使用主要基于化学动力学的模型来模拟该变化。仿真结果介绍了RFB响应负载变化的瞬态行为。发现了三种典型的瞬态行为,包括振荡。结果表明,由于对系统的快速动态响应,对负载的快速响应会导致复杂的瞬态行为。

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