Selection of suitable material, fitting for prototype design and pumping rates are three affecting element for cost effectiveness and improve performance of vanadium cell prototype investigation. Therefore, three-dimensional numerical model isothermal computational fluid dynamics (CFD) model of vanadium redox flow battery (V-RFB) is studied. In this work, V-RFB with different electrolyte compartments is proposed and the effect of serpentine flow field is investigated. The performance of two V-RFBs with diamond and square electrolyte compartment is numerically tested. This work has been performed to optimize flow rate, electrolyte compartment design, avoid stagnant fluid and flow field application in VRFB. For the simulation, the flow was assumed to be incompressible, isothermal, steady state flow, laminar and Newtonian flow. Results show that the application of flow field and Rhombus type electrolyte compartment can facilitate the distribution of electrolyte in the unit cell uniformity and avoid stagnant in the tank. Simulation results indicate the diamond shape and serpentine flow field at optimal flow rate show the most suitable for V-RFBs than square shape.ud
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机译:选择合适的材料,适合原型设计和提高抽速是影响成本效益和改善钒电池原型研究性能的三个因素。因此,研究了钒氧化还原液流电池(V-RFB)的三维数值模型等温计算流体动力学(CFD)模型。在这项工作中,提出了具有不同电解液室的V-RFB,并研究了蛇形流场的影响。对具有菱形和方形电解质隔室的两个V-RFB的性能进行了数值测试。进行这项工作是为了优化流速,电解液室设计,避免停滞的流体和VRFB中的流场应用。对于模拟,假定流动为不可压缩,等温,稳态流动,层流和牛顿流动。结果表明,流场和菱形电解液室的应用可以促进电解液在单元电池中的均匀分布,避免罐内停滞。仿真结果表明,在最佳流速下,菱形和蛇形流场显示出比方形更适合于V-RFB。 ud
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