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Energy efficiency analysis for a kilo-watt class vanadium redox flow battery system

机译:千瓦级钒氧化还原液流电池系统的能效分析

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摘要

A new methodology for estimation of the key characteristics of commercial scale Vanadium Redox Flow Battery (VRFB) at different operating conditions is proposed. The method is based on a set of simplified correlations that allow estimating VRFB rated power, capacity and operation time directly from the geometry of stack and tank without detailed numerical simulation of the battery. The study is focused on investigation of a kilo-watt class VRFB system (5 kW/15kWh) considering a wide range of current densities (40-100 mA cm(-2)). The proposed simplified approach is validated considering the most representative cases of battery operation strategies related to slow and fast modes. It demonstrated high accuracy for the estimation of rated power and operation time (average error below 3%) as well as stored energy (average error below 6%) compare to results of detailed numerical simulation. As a result, the proposed methodology can be used as a simple tool for development of proper battery usage protocol (a schedule for battery usage), which could allow avoiding over/underestimation of committed battery energy and power during battery operation. In addition, the obtained results can be also used in order to improve the accuracy of techno-economic studies determining the most economically attractive cases for application of VRFB systems.
机译:提出了一种在不同工作条件下估算商用规模的钒氧化还原液流电池(VRFB)关键特性的新方法。该方法基于一组简化的相关性,这些相关性允许直接从电池堆和储罐的几何形状估算VRFB的额定功率,容量和运行时间,而无需对电池进行详细的数值模拟。该研究的重点是考虑大电流密度(40-100 mA cm(-2))的千瓦级VRFB系统(5 kW / 15kWh)。考虑到与慢速和快速模式有关的电池操作策略最具代表性的情况,对提出的简化方法进行了验证。与详细的数值模拟结果相比,它在估算额定功率和工作时间(平均误差低于3%)以及存储的能量(平均误差低于6%)方面显示出很高的准确性。结果,所提出的方法可以用作开发适当的电池使用协议(电池使用的时间表)的简单工具,其可以避免在电池运行期间过度/低估所承诺的电池能量和功率。此外,获得的结果还可用于提高技术经济研究的准确性,从而确定应用VRFB系统的最经济诱人的案例。

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