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Performance enhancement of water bath heater at natural gas city gate station using twisted tubes
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作者 P.Soleimani m.khoshvaght-aliabadi +1 位作者 H.Rashidi H.Bahmanpour 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2020年第1期165-179,共15页
Natural gas is transported from producing regions to consumption regions by using transmission pipelines at high pressures. At consumption regions, the pressure of natural gas is reduced in city gate stations(CGSs). B... Natural gas is transported from producing regions to consumption regions by using transmission pipelines at high pressures. At consumption regions, the pressure of natural gas is reduced in city gate stations(CGSs). Before the pressure reduction process, the temperature of natural gas is increased usually by using a water bath heater,which burns natural gas as fuel, to protect against freezing of natural gas. These types of heat exchangers have a low efficiency and consume a lot of fuel to generate the required heat. In the current study, the twisted configuration of the heating coil is proposed and investigated to enhance the heat transfer through a water bath heater with a nominal capacity of 1000 m^3·h^-1. Firstly, the implementation procedure is validated with data collected from the CGS of Qaleh-Jiq(located in Golestan province of Iran). A very good agreement is achieved between the obtained results and the real data. Then, three different twist ratios are considered to examine the twisting effects. The proposed technique is evaluated in the terms of velocity, temperature, and pressure variations, and the results are compared with the conventional case, i.e. straight configuration. It is found that both the heat transfer rate and the pressure drop augment as the twist ratio is raised. Finally, it is concluded that the twisted tubes can reduce the length of the gas coil by about 12.5% for the model with low twist ratio, 18.75% for the model with medium twist ratio, and 25% for the model with high twist ratio as compared to the straight configuration. 展开更多
关键词 Natural gas city GATE STATION Water BATH HEATER Heat TRANSFER enhancement TWISTED tube
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共流型和逆流型圆柱形锂离子电池组液基冷却系统分析
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作者 S.m.HASSANI S.H.mAZLOUmI m.khoshvaght-aliabadi 《Journal of Central South University》 SCIE EI CAS CSCD 2023年第11期3617-3629,共13页
随着电动汽车对锂离子电池组比能量密度要求的提高,解决电池在恶劣工况下的热稳定性问题在电池组的安全设计中变得越来越重要。这对于缓解里程焦虑和确保电动汽车的整体安全尤为重要。液体冷却系统是锂离子电池热管理的常用方法。本文... 随着电动汽车对锂离子电池组比能量密度要求的提高,解决电池在恶劣工况下的热稳定性问题在电池组的安全设计中变得越来越重要。这对于缓解里程焦虑和确保电动汽车的整体安全尤为重要。液体冷却系统是锂离子电池热管理的常用方法。本文采用三维计算流体动力学模拟分析了圆柱电池组矩形通道水冷系统的性能。采用有限体积法,用实验数据验证了计算结果。首先,研究了通道的收敛和发散对所考虑的冷却系统热特性和水力特性的影响。然后,研究了冷却剂的共流型和逆流型策略。结果表明,与传统设计相比,通道的收敛使系统的努塞尔数提高了约21%。而沟道分流时,水力性能较好。散流冷却系统的摩擦损失减小约70%。研究还发现,流动模式对控制电池组的温度均匀性是相当有效的。通道的逆流模式提供了较低的温度,并且在发散通道的情况下,与共流模式的最大偏差约为5.2 K。 展开更多
关键词 圆柱电池 液冷系统 不均匀的渠道 温度均匀性 性能指标
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