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Performance assessment of 700-bar compressed hydrogen storage for light duty fuel cell vehicles

机译:轻型燃料电池汽车700巴压缩氢气存储的性能评估

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Type 4 700-bar compressed hydrogen storage tanks were modeled using ABAQUS. The finite element model was first calibrated against data for 35-L subscale test tanks to obtain the composite translation efficiency, and then applied to full sized tanks. Two variations of the baseline T700/epoxy composite were considered in which the epoxy was replaced with a low cost vinyl ester resin and low cost resin with an alternate sizing. The results showed that the reduction in composite weight was attributed primarily to the lower density of the resin and higher fiber volume fraction in the composite due to increased squeeze-out with the lower viscosity vinyl ester resin. The system gravimetric and volumetric capacities for the onboard storage system that holds 5.6 kg H-2 are 4.2 wt% (1.40 kWh/kg) and 24.4 g-H-2/L (0.81 kWh/L), respectively. The system capacities increase and carbon fiber requirement decreases if the in-tank amount of unrecoverable hydrogen is reduced by lowering the tank "empty" pressure. Models of an alternate tank design showed potential 4-7% saving in composite usage for tanks with a length-to-diameter (L/D) ratio of 2.8-3.0 but no saving for L/D of 1.7. A boss with smaller opening and longer flange does not appear to reduce the amount of helical windings. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:使用ABAQUS对4型700巴压缩氢气储罐进行了建模。首先针对35升小规模测试水箱的数据对有限元模型进行校准,以获得复合平移效率,然后将其应用于全尺寸水箱。考虑了基线T700 /环氧复合材料的两种变体,其中环氧树脂被低成本的乙烯基酯树脂和低成本的树脂所替代。结果表明,复合物重量的减少主要归因于树脂的较低密度和复合物中较高的纤维体积分数,这是由于用较低粘度的乙烯基酯树脂增加了挤出作用。装有5.6 kg H-2的车载存储系统的系统重量和容量分别为4.2 wt%(1.40 kWh / kg)和24.4 g-H-2 / L(0.81 kWh / L)。如果通过降低储罐的“空”压力来减少罐内不可回收的氢气量,则系统容量将增加,碳纤维需求量将减少。备用油罐设计的模型显示,对于长径比(L / D)为2.8-3.0的油罐,复合材料的使用量可能节省4-7%,而对于L / D为1.7的罐头则没有节省。具有较小开口和较长凸缘的凸台似乎不会减少螺旋绕组的数量。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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