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锌镍单液流电池二维瞬态放电模型 被引量:2
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作者 姚寿广 赵倩 +2 位作者 赵云辉 孙晓飞 程杰 《中国舰船研究》 CSCD 北大核心 2019年第5期28-35,共8页
[目的]为研究锌镍单液流电池在运行过程中的内部机理,[方法]以某公司第2代锌镍单液流电池为例,综合考虑动质量传递、电荷守恒以及反应动力学方程建立电池的二维瞬态模型,采用有限元法进行耦合计算并分析电池内部流场、浓度场的分布。通... [目的]为研究锌镍单液流电池在运行过程中的内部机理,[方法]以某公司第2代锌镍单液流电池为例,综合考虑动质量传递、电荷守恒以及反应动力学方程建立电池的二维瞬态模型,采用有限元法进行耦合计算并分析电池内部流场、浓度场的分布。通过与实验数据对比验证计算结果的可靠性,并在此基础上研究电解液流量和离子浓度的影响。[结果]结果表明:大流量加快了电化学反应,流量每增大(或减小)0.5倍,氢氧根离子浓度区间减小(或增大)36%~41%,锌离子浓度区间增大(或减小)6.5%~6.6%;增大流量使离子浓度分布趋于均匀,而改变初始离子浓度并不影响浓度分布均匀性;当氢氧根离子初始浓度提高22%时,电池放电电压平均增大27 mV,而较大的锌离子初始浓度则不利于提升电池放电性能。[结论]模型能较为准确地计算电池的放电性能,适用于锌镍单液流电池的机理研究。 展开更多
关键词 锌镍单液流电池 二维瞬态模型 内部机理 放电性能
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Numerical simulation of heat transfer process in cement grate cooler based on dynamic mesh technique 被引量:7
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作者 SHAO Wei CUI Zheng +1 位作者 WANG NaiHua CHENG Lin 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2016年第7期1065-1070,共6页
A grate cooler is key equipment in quenching clinker and recovering heat in cement production. A two-dimensional numerical model based on a 5000 t/d cement plant is proposed to for a study on the gas-solid coupled hea... A grate cooler is key equipment in quenching clinker and recovering heat in cement production. A two-dimensional numerical model based on a 5000 t/d cement plant is proposed to for a study on the gas-solid coupled heat transfer process between the cooling air and clinker in a grate cooler. In this study, we use the Fluent dynamic mesh technique and porous media model through which the transient temperature distribution with the clinker motion process and steady temperature and pressure distribution are obtained. We validate the numerical model with the operating data of the cooling air outlet temperature. Then, we discuss the amount of mid-temperature air outlet and average diameter of clinker particles, which affect the heat effective utilization and cooling air pressure drop in clinker layer. We found that after adding one more mid-temperature air outlet, the average temperature of the air flowing into the heat recovery boiler increases by 29.04℃ and the ratio of heat effective utilization increases by 5.3%. This means heat recovery is more effective on adding one more mid-temperature air outlet. Further, the smaller the clinker particles, the more is the pressure drop in clinker layer; thus more power consumption is needed by the cooling fan. 展开更多
关键词 grate cooler gas-solid heat transfer dynamic mesh numerical simulation
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