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10篇 您的检索式:作者名="MA HuiYang"
    题名 作者 年代 出处 被引量
1PepperHub, an Informatics Hub for the Chili Pepper Research Community显示文摘Feng Liu Huiyang Vu Yingtian Deng Jingyuan Zheng Minglei Liu Lijun Ou Bozhi Yang Xiongze Dai Yanqing Ma Shengyu Feng Shuang He Xuefeng Li Zhuqing Zhang Wenchao Chen Shudong Zhou Rong Chen Minmin Liu Sha Yang Ruimin Wei Huadong Li Feng Li Bo Ouyang Xuexiao Zou 2017Molecular Plant2017,10,8:13
2Applications of URANS on predicting unsteady turbulent separated flows显示文摘Accurate prediction of unsteady separated turbulentflows remains one of the toughest tasks and a practicalchallenge for turbulence modeling. In this paper, a 2Dflow past a circular cylinder at Reynolds number 3,900 isnumerically investigated by using the technique of unsteadyRANS (URANS). Some typical linear and nonlinear eddyviscosity turbulence models (LEVM and NLEVM) and aquadratic explicit algebraic stress model (EASM) are evaluated.Numerical results have shown that a high-performancecubic NLEVM, such as CLS, are superior to the others insimulating turbulent separated flows with unsteady vortexshedding.Jinglei Xu Huiyang Ma Department of Physics, Graduate University of the Chinese Academy of Sciences, 100049 Beijing, China 2009Acta Mechanica Sinica2009,25,3:2
3Modelling turbulent swirling flows based on the algebraic two-equa-tion (k-e) approach显示文摘HUANG Yuning MA Huiyang CHU Hongjie 2006Int J Numer Meth Fluids2006,51,3:1
4On applying the extended intrinsic mean spin tensor to modelling the turbulence in non-inertial frames of reference显示文摘Modelling the turbulent flows in non-inertial frames of reference has long been a challenging task. Recently we introduced the notion of the 'extended intrinsic mean spin tensor' for turbulence modelling and pointed out that, when applying the Reynolds stress models developed in the inertial frame of reference to model-ling the turbulence in a non-inertial frame of reference, the mean spin tensor should be replaced by the extended intrinsic mean spin tensor to correctly account for the rotation effects induced by the non-inertial frame of reference, to conform in phys-ics with the Reynolds stress transport equation. To exemplify the approach, we conducted numerical simulations of the fully developed turbulent channel flow in a rotating frame of reference by employing four non-linear K-ε models. Our numerical results based on this approach at a wide range of Reynolds and Rossby numbers evince that, among the models tested, the non-linear K-ε model of Huang and Ma and the non-linear K-ε model of Craft, Launder and Suga can better capture the rotation effects and the resulting influence on the structures of turbulence, and therefore are satisfactorily applied to dealing with the turbulent flows of practical interest in engineering. The general approach worked out in this paper is also ap-plied to the second-moment closure and the large-eddy simulation of turbulence.HUANG YuNing MA HuiYang XU JingLei 2008Science China(Physics,Mechanics & Astronomy)2008,51,11:1
5Interactions of three-dimensional vicous axisymmetric vortex rings with a free surface显示文摘Wu Chuijie Fu Qiang Ma Huiyang 1995Acta Mechanica Sinica1995,,3:1
6Structure and reactions mechanism of sulfurized polyacrylonitrile as cathodes for rechargeable Li-S batteries显示文摘Sulfurized polyacrylonitrile(S@pPAN)composite provides a conductive pathway for sulfur active material at the molecular level and has already become one of the most promising cathode materials in lithium-sulfur batteries because of its outstanding electrochemical performances via novel solid-solid conversion mechanism.Although there are a great number of researches on the S@pPAN composite material,the accurate structure of S@pPAN and its redox reaction mechanism during the charge-discharge process still have not been determined.The previous research and inferences about the structure of S@pPAN and its electrochemical reaction mechanism were summarized in this review,providing a reference for the future study of lithiumsulfur batteries.Xuan Zhang Huiyang Ma Jiqiong Liu Jiahang Chen Huichao Lu Yudai Huang Jiulin Wang 2023Nano Research2023,16,6:0
7Layered Ag-graphene films synthesized by Gamma ray irradiation for stable lithium metal ano des in carb on ate-based electrolytes显示文摘Lithium metal batteries are considered as high energy density battery systems with very promising prospects and have bee n widely studied.However,The uncon trollable plating/strippi ng behavior,infinite volume change and den drites formation of lithium metal anode restrict the applicati on.The unc on trolled n ucleati on of lithium caused by the non uniform multi-physical field distributions,can lead to the undesirable lithium deposition.Herein,a graphene composite uniformly loaded with Ag nano-particles(Ag NPs)is prepared through a facile Gamma ray irradiation method and assembled into self-supported film with layered structure(Ag-rGO film).Whe n such film is used as a lithium metal an ode host,the uncontrolled deposition is converted into a highly nucleation-induced process.On one hand,the Ag NPs distributed between the in terlayers of graphe ne can preferentially induce lithium nu cleati on and en able uniform deposition morphology of lithium between interlayers.On the other hand,the stable layered graphene structure can accommodate volume change,stabilize the interface between anode and electrolyte and inhibit dendrites formation.Therefore,the layered Ag-rGO film as anode host can reach a high Coulombic efficiency over 93.3% for 200 cycle(786 h)at a current density of 1 mA cm^(-2) for 2 mAh cm^(-2) in carbonate-based electrolyte.This work proposes a facile Gamma ray irradiation method to prepare metal/3D-skeleton structure as lithium anode host and demonstrates the potential to regulate the lithium metal deposition behaviors via manipulating the distribution of lithiophilic metal(e.g.Ag)in 3D frameworks.This may offer a practicable thinking for the subsequent design of the lithium metal anode.Jiaxiang Liu Haoshen Ma Zhipeng Wen Huiyang Li Jin Yang Nanbiao Pei Peng Zhang Jinbao Zhao 2022Journal of Energy Chemistry2022,31,1:0
8INTERACTION OF VORTICES WITH A PROGRESSIVE SURFACE WAVE显示文摘INTERACTIONOFVORTICESWITHAPROGRESSIVESURFACEWAVEWangLin-lin;MaHut-yang(GraduateScudofAcademicaSinicaBeijing100039P.R.China)Ab...Wang, Linlin Ma, Huiyang 1996Journal of Hydrodynamics1996,8,4:0
9InteractionofVorticeswithaProgresiveSurfaceWave显示文摘InteractionofVorticeswithaProgresiveSurfaceWave1,2LinlinWANG,HuiyangMA(GraduateSchoolofAcademicSinica,Beijing,100039)Abstract...1,2 Linlin WANG, Huiyang MA (Graduate School of Academic Sinica, Beijing, 100039) 1996Communications in Nonlinear Science and Numerical Simulation1996,1,2:0
10Electrolyte solvation chemistry to construct an anion-tuned interphase for stable high-temperature lithium metal batteries显示文摘Lithium metal batteries are regarded as promising alternative next-generation energy storage systems.However,the unstable anode interphase results in dendrite growth and irreversible lithium consumption with low Coulombic efficiency(CE).Herein,we rationally design a Li^(+)coordination structure via electrolyte solvation chemistry.Nitrate anions are aggregated in the solvation sheath,even at low concentration in a solvent with moderate solvation ability,which promotes Li^(+)desolvation and constructs a nitrate anion-tuned interphase.Meanwhile,a high-donor-number solvent is introduced as an additive to strongly coordinate with Li^(+),which accelerates the ion-transfer kinetics and rate performance.This not only results in micro-sized lithium deposition and a high CE of 99.5%over 3500 h,but also enables superior anode stability even under 50%depth plating/stripping and with a lean electrolyte of 3 g Ah^(-1)at 50℃.A lithium-sulfur battery exhibits a prolonged lifespan of 2000 cycles with an average CE of 100%.A full battery using 1x excess lithium exhibits a high capacity near 1600 mAh g S^(-1)for 100 cycles without capacity loss.Moreover,a 0.55 Ah pouch cell delivers a reversible energy density of 423 Wh kg^(-1)based on these electrodes and electrolyte.Jiahang Chen Yang Zhang Huichao Lu Juan Ding Xingchao Wang Yudai Huang Huiyang Ma Jiulin Wang 2023eScience2023,3,4:0
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