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A Novel Defender-Attacker-Defender Model for Resilient Distributed Generator Planning with Network Reconfiguration and Demand Response
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作者 Wenlu Ji teng tu Nan Ma 《Energy Engineering》 EI 2024年第5期1223-1243,共21页
To improve the resilience of a distribution system against extreme weather,a fuel-based distributed generator(DG)allocation model is proposed in this study.In this model,the DGs are placed at the planning stage.When a... To improve the resilience of a distribution system against extreme weather,a fuel-based distributed generator(DG)allocation model is proposed in this study.In this model,the DGs are placed at the planning stage.When an extreme event occurs,the controllable generators form temporary microgrids(MGs)to restore the load maximally.Simultaneously,a demand response program(DRP)mitigates the imbalance between the power supply and demand during extreme events.To cope with the fault uncertainty,a robust optimization(RO)method is applied to reduce the long-term investment and short-term operation costs.The optimization is formulated as a tri-level defenderattacker-defender(DAD)framework.At the first level,decision-makers work out the DG allocation scheme;at the second level,the attacker finds the optimal attack strategy with maximum damage;and at the third level,restoration measures,namely distribution network reconfiguration(DNR)and demand response are performed.The problem is solved by the nested column and constraint generation(NC&CG)method and the model is validated using an IEEE 33-node system.Case studies validate the effectiveness and superiority of the proposed model according to the enhanced resilience and reduced cost. 展开更多
关键词 Distribution system RESILIENCE defender-attacker-defender distributed generator demand response microgrids formation
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Bi2O2Se纳米带的气-液-固生长与高性能晶体管的构筑 被引量:1
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作者 谭聪伟 于梦诗 +9 位作者 许适溥 吴金雄 陈树林 赵艳 刘聪 张亦弛 涂腾 李天然 高鹏 彭海琳 《物理化学学报》 SCIE CAS CSCD 北大核心 2020年第1期256-262,共7页
作为一种具有高迁移率、高空气稳定性和带隙可调的二维材料,纳米硒氧化铋(Bi2O2Se)半导体有望成为未来电子学集成器件和光电子集成器件沟道材料的候选半导体。高质量的Bi2O2Se纳米带有望用于高性能晶体管的构筑;然而,其一维结构的合成... 作为一种具有高迁移率、高空气稳定性和带隙可调的二维材料,纳米硒氧化铋(Bi2O2Se)半导体有望成为未来电子学集成器件和光电子集成器件沟道材料的候选半导体。高质量的Bi2O2Se纳米带有望用于高性能晶体管的构筑;然而,其一维结构的合成方法尚未开发。在我们的研究中,我们在云母衬底上通过Bi催化汽-液-固生长机制合成了一维Bi2O2Se纳米带。合成的Bi2O2Se单晶纳米带的宽度为100 nm到20μm,长度可达亚毫米。再者,Bi2O2Se纳米带可以很容易地利用洁净转移方法被转移到Si O2/Si衬底上,并进一步制备成高性能场效应器件。Bi2O2Se纳米带场效应器件表现出优异的电学性质:室温电子迁移率高达~220 cm2·V-1·s-1,开关比高达>106,10μm沟道长度下电流密度高达~42μA·μm-1。由此说明,Bi2O2Se纳米带有望成为候选材料用于未来高性能晶体管的构筑。 展开更多
关键词 Bi2O2Se 气-液-固生长 纳米带 化学气相沉积 高迁移率
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Strain hardening behavior of Mg-Y alloys after extrusion process 被引量:8
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作者 Chaoyue Zhao Ziyan Li +6 位作者 Jiahui Shi Xianhua Chen teng tu Zhu Luo Renju Cheng Andrej Atrens Fusheng Pan 《Journal of Magnesium and Alloys》 SCIE 2019年第4期672-680,共9页
The strain hardening is an effective mode of enhancing mechanical properties in alloys.In this work,the strain hardening behaviors of Mg-xY(x=1,2,and 3 wt%)after extrusion process was investigated using uniaxial tensi... The strain hardening is an effective mode of enhancing mechanical properties in alloys.In this work,the strain hardening behaviors of Mg-xY(x=1,2,and 3 wt%)after extrusion process was investigated using uniaxial tensile tests.Results suggest that the Mg-xY alloys are composed ofα-Mg with a little amount of Mg24Y5 phase.The average grain size reduces from 19.8μm to 12.2μm as the Y content adds from 1 wt%to 2 wt%.Nevertheless,when Y content reaches 3 wt%,the grain size reaches to 12.9μm,which is close to that of Mg-2Y.The strain hardening rate decreases from 883 MPa to 798 MPa at(σ-σ0.2)=40 MPa,and Mg-2Y and Mg-3Y have the similar strain hardening response.Moreover,Mg-1Y shows an obvious ascending stage after the steep decreasing stage,which is mainly caused by the activation of twinning.The strain hardening behavior of Mg-xY is explained based on understanding the roles of the deformation mechanisms via deformation microstructure analysis and Visco-Plastic Self Consistent(VPSC)model.The variation of strain hardening characteristics with increasing Y content is related to the effects of grain size and texture. 展开更多
关键词 Mg-Y alloy Strain hardening TEXTURE TWINNING VPSC
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The effect of capping with natural and modified zeolites on the release of phosphorus and organic contaminants from river sediment 被引量:3
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作者 Shujuan SUN Lei WANG +2 位作者 Suiliang HUANG teng tu Hongwen SUN 《Frontiers of Chemical Science and Engineering》 SCIE EI CSCD 2011年第3期308-313,共6页
A microcosm system that included river sediment,water and different zeolite capping materials(natural zeolite,surfactant-modified zeolite(SMZ),or aluminum modified zeolite(AMZ))was designed to study the effect of capp... A microcosm system that included river sediment,water and different zeolite capping materials(natural zeolite,surfactant-modified zeolite(SMZ),or aluminum modified zeolite(AMZ))was designed to study the effect of capping on the release of phosphorus and three organic pollutants(phenol,pyridine,and pyrene)from the sediment to the overlying water over the course of three month.For the same amount of the three capping materials,the efficiency of phosphorus inactivation was in the order of SMZ>AMZ>natural zeolite.The inactivation of phosphorus was mainly caused by the covering effect,co-precipitation and adsorption by the capping materials.The different zeolites gave different results for the release of phenol,pyridine,and pyrene from the sediment.When natural zeolite was used as the capping material,there was no effect on the release of pyrene and pyridine,whereas capping the sediment with SMZ or AMZ inhibited the release of pyrene and pyridine but to different extents.However,for controlling the release of phenol from the sediment,aluminum modified zeolite was the most efficient material,whereas no effects were observed when natural zeolite or SMZ were used.The different capabilities of the zeolite materials for controlling the release of different organic pollutants are related to the differences in the electrical properties of these pollutants. 展开更多
关键词 SEDIMENT capping natural zeolite modified zeolite PHOSPHORUS
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Microstructures and Mechanical Properties of Mg–xAl–1Sn–0.3Mn(x=1,3,5)Alloy Sheets
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作者 Chao-Yue Zhao Xian-Hua Chen +3 位作者 Peng Peng teng tu Andrej Atrens Fu-Sheng Pan 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2020年第9期1217-1225,共9页
The influence of Al alloying on the microstructures and the mechanical properties of Mg–x Al–1 Sn–0.3 Mn alloy sheets was investigated. The microstructure of Mg– x Al–1 Sn–0.3 Mn consisted of α-Mg and Mg 17 Al ... The influence of Al alloying on the microstructures and the mechanical properties of Mg–x Al–1 Sn–0.3 Mn alloy sheets was investigated. The microstructure of Mg– x Al–1 Sn–0.3 Mn consisted of α-Mg and Mg 17 Al 12 precipitates. Alloying with Al increased the amount of Mg17Al12 and the average grain size. Uniaxial tensile tests were carried out along the extrusion direction(ED), the transverse direction(TD) and 45° toward the ED. Mg–5 Al–1 Sn–0.3 Mn alloy sheet exhibited the best combination of mechanical properties along the ED: a yield strength of 142 MPa, an ultimate tensile strength of 282 MPa and an elongation of 23%. The good performance of Mg–5 Al–1 Sn–0.3 Mn sheet was mainly attributed to the large quantity of Mg17Al12 precipitates and a weak basal texture. Annealing caused static dynamic recrystallization, refined the grain size and enhanced the mechanical properties: yield strength of 186 MPa, ultimate tensile strength of 304 MPa, elongation of 21% along ED. Both strength and ductility were enhanced by Al alloying. 展开更多
关键词 Mg–xAl–1Sn–0.3Mn alloys EXTRUSION MICROSTRUCTURE Mechanical properties
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Collusion Potential Assessment in Electricity Markets Considering Generation Flexibility 被引量:1
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作者 teng tu Yi Ding +4 位作者 Peng Ji Minglei Bao Nan Shang Yonghua Song Dan Zeng 《CSEE Journal of Power and Energy Systems》 SCIE EI CSCD 2023年第4期1551-1566,共16页
The collusion among various generating units has been a problematic issue affecting the fairness and transparency of electricity markets.Therefore,it is of great significance to assess the potential of such collusion ... The collusion among various generating units has been a problematic issue affecting the fairness and transparency of electricity markets.Therefore,it is of great significance to assess the potential of such collusion in the electricity market.However,the previous assessment studies primarily focused on the bidding behaviors of collusive generating units,without considering the influences of generation flexibility,such as ramp rates.In this paper,a novel assessment method is proposed to evaluate the collusion potential in the electricity market considering generation flexibility.First,a bi-level optimization model is developed to simulate the collusive strategies of dif-ferent generating units,including the withholding of generation capacities and ramp rates,as well as the uplifting of minimum outputs and bidding prices.In the upper-level problem,collusive generating units optimize their offering strategies to optimize the generation profits without violating the regulatory laws.The lower-level problem is a day-ahead economic dispatch model which minimizes the dispatching costs.Based on the optimal collusive strategies determined by the bi-level model,a framework is then proposed to assess the collusion potential in electricity markets.Moreover,price-based and profit-based indices are proposed to quantitatively evaluate the collusion potential of different generating units.Finally,the proposed assessment method is validated on a modified IEEE 39-node system.The numerical results demonstrated that generation flexibility can be exploited collusively for making excessive profits,particularly during load peaks and valleys.Index Terms-Collusionpotential,economic cdispatch,generation flexibility,ramp rates,strategic withholding. 展开更多
关键词 Collusionpotentiale conomiccdispatch generation flexibility ramp rates strategic withholding.
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兔出血症病毒2型理化特性研究 被引量:2
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作者 陈婉婷 周明忠 +9 位作者 陈斌 张鹏飞 姜睿姣 曾红梅 涂藤 陈弟诗 杨泽晓 罗燕 姚学萍 王印 《微生物学报》 CAS CSCD 北大核心 2021年第3期707-713,共7页
【目的】本研究旨在研究该病毒的理化特性,评价不同处理条件对RHDV2的杀灭效果。【方法】本研究拟对临床疑似RHDV2感染致死的家兔进行RT-PCR鉴定病原,并利用不同pH值、不同温度、常用兽用消毒剂、不同浓度甲醛处理RHDV2,通过PMA-RT-qPC... 【目的】本研究旨在研究该病毒的理化特性,评价不同处理条件对RHDV2的杀灭效果。【方法】本研究拟对临床疑似RHDV2感染致死的家兔进行RT-PCR鉴定病原,并利用不同pH值、不同温度、常用兽用消毒剂、不同浓度甲醛处理RHDV2,通过PMA-RT-qPCR对病毒理化特性进行研究。【结果】经RT-PCR检测与测序分析,确诊为RHDV2感染,该毒株VP60基因序列与GenBank中RHDV2(登录号:MN276176.1)一致性为98.35%。PMA-RT-qPCR结果表明,RHDV2对酸碱、高温、兽用消毒剂、甲醛均表现不同程度的敏感性。酸碱处理病毒,随pH值降低或升高,病毒杀灭率均有提高。65℃处理病毒30 min后,病毒杀灭率可达77.61%,83℃处理5 min后,病毒杀灭率可达95.10%。RHDV2对3种所测兽用消毒剂均敏感,其中聚维酮碘对RHDV2杀灭作用最好,作用30 min后,病毒杀灭率达88.78%。0.3%甲醛的杀灭率优于0.2%甲醛,作用30 min后,其杀灭率可达82.22%。【结论】本研究探究了RHDV2的理化特性,该病毒对酸碱、高温、兽用消毒剂、甲醛均有不同程度的敏感性。本研究为RHDV2的诊断、临床消毒剂的选择提供了参考依据,为该病毒致病机理研究与疫苗研发奠定基础。 展开更多
关键词 兔出血症病毒2型 理化特性 PMA-RT-qPCR 消毒
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Strain hardening of as-extruded Mg-xZn(x=1, 2, 3 and 4 wt%) alloys 被引量:6
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作者 Chaoyue Zhao Xianhua Chen +6 位作者 Fusheng Pan Jingfeng Wang Shangyu Gao teng tu Chunquan Liu Jiahao Yao Andrej Atrens 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2019年第1期142-150,共9页
The influence of Zn on the strain hardening of as-extruded Mg-x Zn(x = 1, 2, 3 and 4 wt%) magnesium alloys was investigated using uniaxial tensile tests at 10^(-3)s^(-1) at room temperature. The strain hardening rate,... The influence of Zn on the strain hardening of as-extruded Mg-x Zn(x = 1, 2, 3 and 4 wt%) magnesium alloys was investigated using uniaxial tensile tests at 10^(-3)s^(-1) at room temperature. The strain hardening rate,the strain hardening exponent and the hardening capacity were obtained from true plastic stress-strain curves. There were almost no second phases in the as-extruded Mg-Zn magnesium alloys. Average grain sizes of the four as-extruded alloys were about 17.8 μm. With increasing Zn content from 1 to 4 wt%, the strain hardening rate increased from 2850 MPa to 6810 MPa at(б-б_(0.2)) = 60 MPa, the strain hardening exponent n increased from 0.160 to 0.203, and the hardening capacity, Hc increased from 1.17 to 2.34.The difference in strain hardening response of these Mg-Zn alloys might be mainly caused by weaker basal texture and more solute atoms in the α-Mg matrix with higher Zn content. 展开更多
关键词 MG-ZN alloy Strain HARDENING DISLOCATION BASAL texture
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A High-Ductility Mg–Zn–Ca Magnesium Alloy 被引量:2
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作者 teng tu Xian-Hua Chen +2 位作者 Jiao Chen Chao-Yue Zhao Fu-Sheng Pan 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2019年第1期23-30,共8页
A new kind of Mg–2 Zn–0.6 Ca(wt%) alloy was fabricated by casting and hot extrusion as a high-ductility structural material. The extruded alloy exhibits a superior elongation of ~30%, yield strength of 130 MPa and ... A new kind of Mg–2 Zn–0.6 Ca(wt%) alloy was fabricated by casting and hot extrusion as a high-ductility structural material. The extruded alloy exhibits a superior elongation of ~30%, yield strength of 130 MPa and ultimate tensile strength of 280 MPa along the extrusion direction at room temperature. Microstructure, texture and tensile properties of the extruded alloy were investigated in details. The remarkable improvement of ductility is ascribed to the weakened basal texture, refined grains and a small number of second phase in the alloy. 展开更多
关键词 MAGNESIUM alloy Mg–Zn–Ca High DUCTILITY EXTRUSION Texture
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Two‑Level Biomimetic Designs Enable Intelligent Stress Dispersion for Super‑Foldable C/NiS Nanofiber Free‑Standing Electrode
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作者 Guangtao Zan Tong Wu +6 位作者 Wenya Dong Junchen Zhou teng tu Ruoxuan Xu Yun Chen Ying Wang Qingsheng Wu 《Advanced Fiber Materials》 SCIE EI 2022年第5期1177-1190,共14页
Due to the lack of in-depth understanding about the folding issues of the electronic materials,it is a huge challenge to pre-pare a super-foldable and highly electrochemical faradic electrode.Here,inspired from from t... Due to the lack of in-depth understanding about the folding issues of the electronic materials,it is a huge challenge to pre-pare a super-foldable and highly electrochemical faradic electrode.Here,inspired from from the fully nimble structures of cuit cocoons and cockscomb petals,with two-level biomimetic design,for the first time we prepared a super-foldable and electrochemically functional freestanding cathode,made of C-fiber@NiS-cockscomb(SFCNi).In virtue of its nimble biomi-metic structures,SFCNi can remarkably sustain over 100,000 times,repeated true-folding without composite fibers fracture,functional matters detachment,conductivity degradation,or electrochemical performance change.The main mechanism behind these behaviors was disclosed by Real-time scanning electron microscopy and mechanical simulations,on the folding process.Results unveil that the cockscomb-like NiS with atomic thickness can deform freely due to the need of bending,and the cuit-cocoon-like SFCNi can generate an“ε-shape”folding structure at the crease.Such a smart self-adaptive deforma-tion capability can effectively reduce the effect of stresses and local excessive deformations,so that the chemical bonds can preserve their interaction,and the material won’t fracture.This subtle and exceptional mechanical behavior realizes a super-foldable property.The two-level biomimetic design strategy is a novel method for fabrication of super-foldable composite electrodes and integrated multi-functional super-foldable devices. 展开更多
关键词 Super-foldable BIOMIMETIC Nanofiber network Stress dispersion ELECTRODE
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