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《儲能科學與技術》2019 年第8 卷主要欄目分類索引

2019-02-16 12:12
儲能科學與技術 2019年6期
關鍵詞:動力電池鋰離子鋰電池

(括號中數(shù)字依次表示年-期-起始頁)

特約評述

微分電化學質譜:研究鋰離子電池的一項關鍵技術································(2019-1-1)

熱點點評

鋰電池百篇論文點評(2018.10.1—2018.11.30)································(2019-1-14)

鋰電池百篇論文點評(2018.12.1—2019.1.31)································(2019-2-386)

鋰電池百篇論文點評(2019.2.1—2019.3.31)································(2019-3-583)

鋰電池百篇論文點評(2019.4.1—2019.5.31)································(2019-4-784)

鋰電池百篇論文點評(2019.06.01—2019.07.31)································(2019-5-941)

鋰電池百篇論文點評(2019.08.01—2019.09.30)································(2019-6-1271)

研究及進展

鈣金屬電池的研究進展·················(2019-1-26)

高壓輸電系統(tǒng)電磁能量收集與存儲技術綜述··(2019-1-32)

碳纖維基柔性超級電容器電極材料的應用進展································(2019-1-47)

鋰離子電池模型研究綜述··············(2019-1-58)

全釩液流電池電極研究進展··············(2019-1-65)

原子力顯微鏡在鋰離子電池研究中的應用····(2019-1-75)

分布式熱電聯(lián)產(chǎn)系統(tǒng)裝機容量及運行策略分析································(2019-1-83)

摻月桂酸-硬脂酸/膨脹蛭石復合相變材料建筑砂漿的制備和性能表征························(2019-1-92)

基于直線電機的虛擬抽水蓄能系統(tǒng)運行控制策略································(2019-1-98)

石蠟/膨脹石墨復合相變儲熱單元的放熱性能································(2019-1-108)

高容量高倍率的氮摻雜二次粒子石墨負極材料································(2019-1-116)

碳負極黏結劑對于動力鋰離子電池性能的影響································(2019-1-123)

N、B 共摻雜MXene 復合材料的制備及其電化學性能研究································(2019-1-130)

小型冰漿機工作過程動態(tài)特性············(2019-1-138)

動力電池充放電檢測系統(tǒng)的設計與實現(xiàn)······(2019-1-146)

基于開關磁阻電機的儲能飛輪充放電控制····(2019-1-155)

超級電容器用耐壓電解液的調制與性能·······(2019-1-162)

基于落差式組合策略的串聯(lián)鋰離子電池組均衡方案································(2019-1-167)

影響硝酸熔鹽高溫穩(wěn)定的因素············(2019-1-173)

基于動態(tài)時間規(guī)整和多維標度策略的串聯(lián)鋰離子電池組異

常電池可視化識別方法·················(2019-1-180)

鈦酸鋰電芯正負極容量匹配設計及其對電芯性能影響································(2019-1-191)

進展與評述

鋰離子電池故障診斷技術進展············(2019-2-225)

廢舊磷酸鐵鋰電池回收技術研究進展········(2019-2-237)

基于二氧化錳/石墨烯復合材料的制備方法及在超級電容器

上的研究進展·······················(2019-2-248)

鋰電池研究中的X 射線多晶衍射實驗與分析方法綜述································(2019-3-443)

基于電力調頻的串聯(lián)鋰離子電池組均衡技術分析································(2019-3-468)

直接接觸式蓄熱技術的發(fā)展及研究現(xiàn)狀·······(2019-3-477)

鈉離子電池硫化物負極材料的研究進展·······(2019-3-488)

儲能用磷酸鐵鋰(LFP)電池消防技術研究進展································(2019-3-495)

鋰離子電池熱安全性研究進展············(2019-3-500)

鋅鎳電池在儲能技術領域中的應用及展望 (2019-3-506)

醌類電極材料Calix[4]quinone 在二次電池中的應用································(2019-4-702)

水合鹽復合相變材料的研究進展···········(2019-4-709)

電容型鋰離子電池研究進展··············(2019-5-799)

退役鋰離子電池健康狀態(tài)評估方法綜述·······(2019-5-807)

鈉離子電池錫基金屬氧化物研究進展········(2019-5-813)

太陽能光伏系統(tǒng)冷卻技術的發(fā)展進程········(2019-5-821)

無機固態(tài)鋰離子電池電解質的研究進展·······(2019-5-829)

鋰離子電池正極材料共混改性研究進展·······(2019-5-838)

鉛氧化還原液流電池的研究進展及前景分析································(2019-6-1096)

相變儲能強化傳熱技術的研究進展·········(2019-6-1107)

研究開發(fā)

基于無損檢測的生命周期鋰離子動力電池安全性分析································(2019-2-259)

一種在線估算蓄電池內(nèi)阻的計算方法········(2019-2-264)

一種基于“能量”成本的儲能技術評價新方法································(2019-2-269)

面向電力市場的分布式儲能聚合參與電網(wǎng)調峰································(2019-2-276)

三元軟包鋰離子動力電池熱特性測量及應用·(2019-2-284)

孔道可調控的鋰離子電池無定形碳負極材料·(2019-2-292)

陶瓷隔膜對于LiNi0.8Co0.15Al0.05O2動力鋰離子電池性能的影響·······························(2019-2-297)

聚芳二唑磺酸鋰聚合物電解質的制備與性能·(2019-2-304)

基于相變儲熱的太陽能多模式采暖系統(tǒng)及應用·······························(2019-2-311)

熔鹽電磁感應加熱系統(tǒng)的熱性能分析········(2019-2-319)

超聲波作用下甘露醇相變體系過冷特性······(2019-2-326)

外置電阻式固體蓄熱結構熱應力建模與分析·(2019-2-333)

高溫相變儲熱換熱裝置仿真建模及分析·····(2019-2-338)

不同形式相變儲熱換熱器的對比分析·······(2019-2-347)

壓縮空氣儲能用渦旋膨脹機非穩(wěn)態(tài)流動特性分析·······························(2019-2-357)

充電模式下飛輪儲能單元的協(xié)調無源控制器設計·······························(2019-2-365)

膨脹石墨/石蠟復合相變材料的電阻率分析··(2019-2-371)

應用于電動汽車復合儲能系統(tǒng)的升壓型直流變換器控制策略研究··························(2019-2-379)

風光互補系統(tǒng)中混合儲能容量優(yōu)化配置研究·(2019-3-512)

層層自組裝MoS2多晶片增強鋰硫電池性能(英)·······························(2019-3-523)

環(huán)氧樹脂板對鋰離子電池熱失控擴展的阻隔作用·······························(2019-3-532)

流固耦合固體相變蓄熱建模與分析方法······(2019-3-538)

管內(nèi)熔融鹽強制對流傳熱的數(shù)值模擬······(2019-3-544)

基于改進型量子遺傳算法的儲能系統(tǒng)容量配置與優(yōu)化策略·······························(2019-3-551)

圓柱型磷酸鐵鋰電池針刺熱失控實驗研究······························(2019-3-559)

基于汽車制動能量回收的兩級式飛輪設計分析································(2019-3-567)

基于螢火蟲神經(jīng)網(wǎng)絡的動力電池 SOC 估算 ··(2019-3-575)

瀝青包覆人造石墨炭化處理工藝··········(2019-3-580)

聚合物基PTC 導電材料的制備及其在鋰離子電池中的應用································(2019-4-718)

陶瓷隔膜在鎳鈷錳酸鋰/石墨鋰離子電池中性能································(2019-4-725)

無定形碳包覆錫基負極材料的制備及其電化學性能································(2019-4-732)

車用動力電池二階 RC 建模及參數(shù)辨識····(2019-4-738)

基于在線參數(shù)辨識和AEKF 的鋰電池SOC 估計································(2019-4-745)

基于最小能耗的動力電池風冷控制策略····(2019-4-751)

硬脂酸/改性碳納米管復合相變儲熱材料性能································(2019-4-759)

考慮管壁導熱的方管內(nèi)熔鹽混合對流傳熱數(shù)值模擬································(2019-4-764)

Mg-Cu 合金熱物性的分子動力學計算·······(2019-4-772)

飛輪儲能系統(tǒng)容量分析與設計··········(2019-4-778)

鋰離子電池三維層級循環(huán)壽命對應關系研究·(2019-5-843)

鋰電池SOC 拐點修正安時積分實時估算方法································(2019-5-850)

基于自適應無跡卡爾曼濾波的鋰電池SOC 估計································(2019-5-856)

鋰電池容量測量不確定度評定與等效模型驗證方法································(2019-5-862)

基于BP 人工神經(jīng)網(wǎng)絡的動力電池SOC 估算方法································(2019-5-868)

正十四烷烴相變過程的分子動力學模擬·····(2019-5-874)

一種聯(lián)合ORC 的新型液態(tài)空氣儲能系統(tǒng)熱力特性································(2019-5-880)

碳酸鹽/ 氧化鎂—鱗片石墨定型復合蓄熱材料的制備及其

導熱性能·························(2019-5-886)

基于集成解調芯片的電感式位移傳感器·····(2019-5-891)

內(nèi)置隔板開孔方式對太陽能蓄熱水箱熱分層的影響································(2019-5-897)

鑄態(tài)及快淬態(tài)CeMg11Ni 合金電化學及其動力學性能································(2019-5-904)

基于Fluent 的多工況下超級電容單體的熱仿真分析································(2019-5-911)

PCM/ 液冷復合式鋰電池組熱管理·········(2019-5-915)

軟包鋰離子電容器放電過程熱模擬·········(2019-5-922)

電動汽車鋰離子電池集總參數(shù)RC 等效電路模型································(2019-5-930)

石墨對鋰離子電池三元正極的改性及性能影響································(2019-5-935)

LiFePO4/S 復合正極材料的制備及其電化學性能································(2019-6-1116)

MXene/銀納米線超級電容器電極材料的電化學性能································(2019-6-1126)

基于微乳液法的多孔棒狀結構MnFe2O4制備及電化學性能································(2019-6-1132)

高性能氮摻雜石墨烯的制備及其儲鋰性能··(2019-6-1137)

超級電容在高速鐵路再生制動能量存儲中的應用及控制·······························(2019-6-1145)

基于MMC 的車載超級電容儲能系統(tǒng)綜合控制策略·······························(2019-6-1151)

基于鋰離子電容器的48 V 啟停電源系統(tǒng)設計·······························(2019-6-1159)

高電壓鋰離子電池高溫浮充性能影響因素分析與改善·······························(2019-6-1165)

Li(Ni1/3Co1/3Mn1/3)O2/graphite 電池在備用電源工況下的交流阻抗·····························(2019-6-1171)

不同衰退狀態(tài)磷酸鐵鋰動力電池組件的燃燒性及危險性研究····························(2019-6-1176)

鋰離子電池脈沖充電策略研究及表征分析·······························(2019-6-1182)

改進PSO-RBF 模型的分階查表法荷電狀態(tài)估計·······························(2019-6-1190)

容量增量內(nèi)阻一致性在線檢測方法..·······························(2019-6-1197)

數(shù)據(jù)驅動的鋰電池健康狀態(tài)估算方法比較·······························(2019-6-1204)

電制熱固體儲熱裝置關鍵參數(shù)設計研究和經(jīng)濟性評估······························(2019-6-1211)

固液相變材料儲能過程傳熱機制的數(shù)值模擬·······························(2019-6-1217)

混合硝酸鹽熱物性對比分析···········(2019-6-1224)

一種新型相變蓄熱水箱應用于太陽能組合系統(tǒng)·······························(2019-6-1230)

不同材料儲能飛輪應力特性分析及研究·······························(2019-6-1235)

不同膨脹狀態(tài)下渦旋膨脹機非定常流動特性分析·······························(2019-6-1241)

質子交換膜燃料電池空壓機建模·······························(2019-6-1247)

應用技術

利用礦洞建設抽水蓄能電站的技術可行性分析·······························(2019-1-195)

儲能提升特高壓交直流輸電能力與提供跨區(qū)備用研究·····························(2019-2-399)

退役LiFePO4電池性能測評及儲能應用·······························(2019-2-408)

儲能飛輪的轉子動力學分析與測試試驗.·······························(2019-3-595)

中高軌衛(wèi)星鋰離子蓄電池組自主健康管理系統(tǒng)設計·······························(2019-5-954)

分布式儲能的商業(yè)模式對比分析·········(2019-5-960)

性能不一致的儲能電池出力的自適應控制策略·······························(2019-6-1253)

儲能專利

基于DII 的超級電容器專利技術國際態(tài)勢分析·······························(2019-1-201)

軟包鋰電池鋁塑膜專利技術分析····(2019-1-209)

動力電池獨角獸的專利之路—淺析寧德時代專利申請與布局·······························(2019-2-415)

鋰電池儲能系統(tǒng)專利技術發(fā)展態(tài)勢·······························(2019-3-602)

豐田在鋰離子固體電解質上的專利技術分析······························(2019-3-609)

基于專利視角的電力儲能領域發(fā)展態(tài)勢與對策······························(2019-3-613)

鋰離子電池硅基負極專利申請態(tài)勢分析······························(2019-5-967)

儲能標準與規(guī)范

鋰離子電池負極材料標準解讀··········(2019-1-215)

鋰離子電池電極黏結劑材料標準解讀······························(2019-2-419)

國內(nèi)外動力鋰電池安全性測試標準及規(guī)范綜述······························(2019-2-428)

鋰電池研究中的拉曼/紅外實驗測量和分析方法······························(2019-5-975)

鋰離子電池材料的電子顯微學分析方法······························(2019-6-1260)

微電網(wǎng)與分布式儲能技術???/h2>

微網(wǎng)群技術綜述···················(2019-4-621)

基于虛擬變電站的末端配電網(wǎng)光儲協(xié)調控制方法······························(2019-4-629)

計及需求響應不確定性的主動配電網(wǎng)調度優(yōu)化模型·······························(2019-4-637)

多微電網(wǎng)參與下的配電側直接電能交易納什議價模型·······························(2019-4-645)

適用于直流分布式儲能系統(tǒng)的控制策略·······························(2019-4-654)

考慮電價激勵的孤島微電網(wǎng)經(jīng)濟調度策略································(2019-4-659)

面向低壓配變臺區(qū)的微電網(wǎng)技術········(2019-4-665)

鋰電池儲能在配電網(wǎng)低壓臺區(qū)的應用·······························(2019-4-671)

高原高寒地區(qū)可再生能源與儲能集成供能系統(tǒng)研究·······························(2019-4-678)

基于風電消納電熱儲能裝置熱流固耦合研究································(2019-4-689)

超級電容器儲能逆變器控制策略研究·······························(2019-4-696)

鋰電池失效分析與測試技術???/h2>

鋰離子電池三元層狀氧化物正極材料失效模式分析·······························(2019-6-1003)

鋰離子電池中重要正極材料體系的磁共振研究進展·······························(2019-6-1017)

固態(tài)聚合物鋰電池失效機制及其表征技術·······························(2019-6-1024)

超聲技術在鋰離子電池表征中的應用·······························(2019-6-1033)

鋰離子電池失效中析鋰現(xiàn)象的原位檢測方法綜述·······························(2019-6-1040)

原位透射電鏡技術在電池領域的研究進展·······························(2019-6-1050)

鋰離子電池內(nèi)部力學與溫度參量在位表征方法·······························(2019-6-1062)

鋰離子動力電池中等荷電狀態(tài)下熱失控產(chǎn)物噴發(fā)過程·····························(2019-6-1076)

鋰離子電池電熱觸發(fā)熱失控泄漏毒物研究·······························(2019-6-1082)

鋰離子電池開路電壓曲線形狀與多階段容量損失(英)····························(2019-6-1089)

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