期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
考虑“氢-电”储能的电力需求响应策略 被引量:1
1
作者 袁博 田广 +3 位作者 刘钊 葛少云 魏孟举 刘洪 《太阳能学报》 北大核心 2025年第1期288-299,共12页
探索考虑“氢-电”储能(ESHE)需求响应方法。首先,基于ESHE运行原则和需求响应用户分类,提出涵盖“最优负荷”和“价格激励”的需求响应双级框架;然后,以系统整体经济性最优为目标,构建一级策略的负荷优化模型,提出用于模型求解的DR-ESH... 探索考虑“氢-电”储能(ESHE)需求响应方法。首先,基于ESHE运行原则和需求响应用户分类,提出涵盖“最优负荷”和“价格激励”的需求响应双级框架;然后,以系统整体经济性最优为目标,构建一级策略的负荷优化模型,提出用于模型求解的DR-ESHE无约束化算法;最后,以用户电费最优为目标,构建二级策略的价格激励模型,制定可实现最优负荷的激励电价。实验表明,所提需求响应策略的ESHE利用效率高、整体收益效果好;与未考虑ESHE相比,降低需求响应成本38.5%、增加系统运行收益2.19%,负荷峰谷差率、均方差等均得到优化;同时,提出的模型求解算法较传统遗传算法可降低运行成本、提升运行收益。 展开更多
关键词 需求响应 双级框架 负荷优化模型 无约束求解 价格激励 “氢-电”储能
在线阅读 下载PDF
Structure and electrochemical hydrogen storage characteristics of La_(0.8-x)Pr_xMg_(0.2)Ni_(3.15)Co_(0.2)Al_(0.1)Si_(0.05) (x=0-0.4) electrode alloys 被引量:3
2
作者 张羊换 侯忠辉 +3 位作者 杨泰 张国芳 李霞 赵栋梁 《Journal of Central South University》 SCIE EI CAS 2013年第5期1142-1150,共9页
For the purpose of improving the electrochemical cycle stability of the La-Mg-Ni based A2BT-type electrode alloys, both reducing Mg content and substituting La with Pr were adopted. The Lao.8-xPrxMg0.2Ni3.15Co0.2A10.1... For the purpose of improving the electrochemical cycle stability of the La-Mg-Ni based A2BT-type electrode alloys, both reducing Mg content and substituting La with Pr were adopted. The Lao.8-xPrxMg0.2Ni3.15Co0.2A10.1Si0.05 (x=0, 0.1, 0.2, 0.3, 0.4) electrode alloys were fabricated by casting and annealing. The investigation on the structures and electrochemical performances of the alloys was performed. The obtained results reveal that the as-cast and annealed alloys comprise two major phases, (La, Mg)2Ni7 phase with the hexagonal Ce2NiT-type structure and LaNi5 phase with the hexagonal CaCus-type structure, as well as a little residual LaNi3 phase. It is also found that the addition of Pr element observably affects the electrochemical hydrogen storage characteristics of the alloys, just as the discharge capacity and high rate discharge ability (HRD) first rise then fall with the growing of Pr content, and among all the alloys, the as-cast and annealed (x=0.3) alloys generate the largest discharge capacities of 360.8 and 386.5 mA.h/g, respectively. Additionally, the electrochemical cycle stability of all the alloys markedly grows with the increase of Pr content. The capacity retaining rate (S100) at the 100th charging and discharging cycle is enhanced from 64.98% to 77.55% for the as-cast alloy, and from 76.60% to 95.72% for the as-annealed alloy by rising Pr content from 0 to 0.4. Furthermore, the substitution of Pr for La results in first increase and then decrease in the hydrogen diffusion coefficient (D), the limiting current density (IL) as well as the electrochemical impedance. 展开更多
关键词 A2B7-type electrode alloy LA PR STRUCTURE electrochemical performances
在线阅读 下载PDF
Influences of melt spinning on electrochemical hydrogen storage performance of nanocrystalline and amorphous Mg_2Ni-type alloys 被引量:4
3
作者 张羊换 李保卫 +3 位作者 任慧平 侯忠辉 胡峰 王新林 《Journal of Central South University》 SCIE EI CAS 2011年第6期1825-1832,共8页
In order to improve the electrochemical hydrogen storage performance of the Mg2Ni-type electrode alloys, Mg in the alloy was partially substituted by La, and the nanocrystalline and amorphous Mg2Ni-type Mg20-xLaxNi10 ... In order to improve the electrochemical hydrogen storage performance of the Mg2Ni-type electrode alloys, Mg in the alloy was partially substituted by La, and the nanocrystalline and amorphous Mg2Ni-type Mg20-xLaxNi10 (x-=0, 2) alloys were synthesized by melt-spinning technique. The microstructures of the as-spun alloys were characterized by X-ray diffraction (XRD), scanning electron microscopy (SEM) and transmission electron microscopy (TEM). The electrochemical hydrogen storage properties of the experimental alloys were tested. The results show that no amorphous phase is detected in the as-spun Mg20Ni10 alloy, but the as-spun Mg18La2Ni10 alloy holds a major amorphous phase. As La content increases from 0 to 2, the maximum discharge capacity of the as-spun (20 m/s) alloys rises from 96.5 to 387.1 mA.h/g, and the capacity retaining rate (S20) at the 20th cycle grows from 31.3% to 71.7%. Melt-spinning engenders an impactful effect on the electrochemical hydrogen storage performances of the alloys. With the increase in the spinning rate from 0 to 30 m/s, the maximum discharge capacity increases from 30.3 to 135.5 mA.h/g for the Mg20Ni10 alloy, and from 197.2 to 406.5 mA-h/g for the Mg18La2Ni10 alloy. The capacity retaining rate (S20) of the Mg2oNi10 alloy at the 20th cycle slightly falls from 36.7% to 27.1%, but it markedly mounts up from 37.3% to 78.3% for the Mg18La2Ni10 alloy. 展开更多
关键词 Mg2Ni-type hydrogen storage alloy MELT-SPINNING STRUCTURE electrochemical performance
在线阅读 下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部