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| 1 | Analytical modelling and calculation of pulsed magnetic field and input impedance for EMATs with planar spiral coils显示文摘 | Kuansheng Hao Songling Huang Wei Zhao Shen Wang Jiarui Dong | 2011 | NDT and E International2011,,: | 1 |
| 2 | Analytical modelling and calculation of pulsed magnetic field and input impedance for EMATs with planar spiral coils显示文摘 | Kuansheng Hao Songling Huang Wei Zhao Shen Wang Jiarui Dong | 2011 | NDT and E International2011,,3: | 1 |
| 3 | Modeling fluid catalytic cracking risers with special pseudo-components显示文摘 | Zhang Jiarui Wang Zhiwen Jiang Hao | 2013 | Chem Eng Sci2013,102,15: | 1 |
| 4 | Single-crystalline Mn-based oxide as a high-rate and long-life cathode material for potassium-ion battery显示文摘Mn-based oxides are promising cathode materials for potassium-ion batteries due to their high theoretical ca-pacity and abundant raw materials.However,the anisotropic properties of their conventional polycrystalline structures lead to insufficient rate capability and cycle life.Here,a single-crystal Mn-based layered oxide,P3′-type K_(0.35)Mn_(0.8)Fe_(0.1)Cu_(0.1)O_(2)(KMFCO),is designed and synthesized through a bimetallic co-induction effect and used as a cathode for potassium-ion battery.Benefiting from a unique single-crystal structure that is devoid of grain boundaries,it achieves a higher Kþtransport rate and a reduced volume change during the Kþintercalation/deintercalation process.Accordingly,the single-crystal P3′-type KMFCO delivers superior rate capability(52.9 mAh g^(-1) at 1000 mA g^(-1))and excellent cycling stability(91.1%capacity retention after 500 cycles at 500 mA g^(-1)).A full cell assembled with the P3′-type KMFCO cathode and a graphite anode also exhibits a high reversible capacity(81.2 mAh g^(-1) at 100 mA g^(-1))and excellent cycling performance(97%capacity retention after 300 cycles).The strategy of developing single-crystal materials may offer a new pathway for maintaining structural stability and improving the rate capability of layered manganese oxide cathodes and beyond. | Jiarui Lv Bin Wang Jiaxin Hao Hongbo Ding Ling Fan Renqian Tao Hongguan Yang Jiang Zhou Bingan Lu | 2023 | eScience2023,3,1: | 1 |
| 5 | Biomechanical evaluation of two fusion techniques based on finite element analysis:Percutaneous endoscopic and minimally invasive transforaminal lumbar interbody fusion显示文摘As a novel minimally invasive technique,percutaneous endoscopic transforaminal lumbar interbody fusion(PETLIF)has been widely used in the treatment of lumbar degenerative diseases.The purpose of this study was to analyze these two operation types’biomechanical performances of PE-TLIF and traditional minimally invasive transforaminal lumbar interbody fusion(MIS-TLIF)using the finite element(FE)method.The intact FE models of L4-L5 were established and validated based on the CT images.On this basis,the FE models of MIS-TLIF and PETLIF were established and analyzed.It is demonstrated that for lumbar interbody fusion with the oblique asymmetrically implanted cage under bilateral pedicle screws and rods fixation,such as MIS-TLIF and PE-TLIF,different degrees of articular process resection have no significant effect on the cage subsidence,and the surgical segment can achieve similar stability.In addition,the maximum stress of the L4 inferior endplate of MIS-TLIF and PE-TLIF is greater than that of the L5 superior endplate,which indicates that MIS-TLIF and PE-TLIF can cause cage subsidence in the L4 inferior endplate. | Yang Yan Jiarui Li Jianhao Yu Yan Wang Hao Dong Yuqin Sun Xiaogang Wu Liming He Weiyi Chen Haoyu Feng | 2022 | Medicine in Novel Technology and Devices2022,,4: | 1 |
| 6 | Dynamic simulation of gas turbines via feature similarity-based transfer learning显示文摘Since gas turbine plays a key role in electricity power generating,the requirements on the safety and reliability of this classical thermal system are becoming gradually strict.With a large amount of renewable energy being integrated into the power grid,the request of deep peak load regulation for satisfying the varying demand of users and maintaining the stability of the whole power grid leads to more unstable working conditions of gas turbines.The startup,shutdown,and load fluctuation are dominating the operating condition of gas turbines.Hence simulating and analyzing the dynamic behavior of the engines under such instable working conditions are important in improving their design,operation,and maintenance.However,conventional dynamic simulation methods based on the physic differential equations is unable to tackle the uncertainty and noise when faced with variant real-world operations.Although data-driven simulating methods,to some extent,can mitigate the problem,it is impossible to perform simulations with insufficient data.To tackle the issue,a novel transfer learning framework is proposed to transfer the knowledge from the physics equation domain to the real-world application domain to compensate for the lack of data.A strong dynamic operating data set with steep slope signals is created based on physics equations and then a feature similarity-based learning model with an encoder and a decoder is built and trained to achieve feature adaptive knowledge transferring.The simulation accuracy is significantly increased by 24.6%and the predicting error reduced by 63.6%compared with the baseline model.Moreover,compared with the other classical transfer learning modes,the method proposed has the best simulating performance on field testing data set.Furthermore,the effect study on the hyper parameters indicates that the method proposed is able to adaptively balance the weight of learning knowledge from the physical theory domain or from the real-world operation domain. | Dengji ZHOU Jiarui HAO Dawen HUANG Xingyun JIA Huisheng ZHANG | 2020 | Frontiers in Energy2020,14,4: | 1 |
| 7 | Bandgap engineering of high mobility two-dimensional semiconductors toward optoelectronic devices显示文摘Over the last few years,great advances have been achieved in exploration of high-mobility two-dimensional(2D)semiconductors such as metal chalcogenide InSe and noble-transition-metal dichal-cogenide PdSe_(2).These materials are competitive candidates for constructing next-generation optoelec-tronic devices owing to their unique crystalline and electronic structures.Moreover,the optical and electronic properties of 2D materials can be efficiently modified via precisely engineering their band structures,which is critical for widening specific applications ranging from high-performance opto-electronics to catalysis and energy harvesting.In this review,we focus on the progress in bandgaps engineering of newly emerging high-mobility 2D semiconductors and their applications in optoelec-tronic devices,incorporating our recent study in the InSe and PdSe_(2)systems.First of all,we discuss the structure-property relationship of typical high-mobility 2D semiconductors(InSe and PdSe 2).Next,we analyze several viable strategies for bandgap engineering,including thickness,strain or pressure,alloying,heterostructure,surface modification,intercalation,and so on.Furthermore,we summarize the optoelectronic devices fabricated with such high-mobility 2D semiconductors.The conclusion and outlook in this topic are finally presented.This review aims to provide valuable insights in bandgap engineering of newly emerging 2D semiconductors and explore their potential in future optoelectronic applications. | Qiaoyan Hao Peng Li Jidong Liu Jiarui Huang Wenjing Zhang | 2023 | Journal of Materiomics2023,9,3: | 0 |
| 8 | Comprehensive Evaluation of Distributed PV Grid-Connected Based on Combined Weighting Weights and TOPSIS-RSR Method显示文摘To effectively quantify the impact of distributed photovoltaic(PV)access on the distribution network,this paper proposes a comprehensive evaluation method of distributed PV grid connection combining subjective and objective combination of assignment and technique for order preference by similarity to an ideal solution(TOPSIS)—rank sum ratio(RSR)(TOPSIS-RSR)method.Based on the traditional distribution network evaluation system,a comprehensive evaluation system has been constructed.It fully considers the new development requirements of distributed PV access on the environmental friendliness and absorptive capacity of the distribution grid and comprehensively reflects the impact of distributed PV grid connection.The analytic hierarchy process(AHP)was used to determine the subjective weights of the primary indicators,and the Spearman consistency test was combined to determine the weights of the secondary indicators based on three objective assignment methods.The subjective and objective combination weights of each assessment indicator were calculated through the principle of minimum entropy.Calculate the distance between the indicators to be evaluated and the positive and negative ideal solutions,the relative closeness ranking,and qualitative binning by TOPSIS-RSR method to obtain the comprehensive evaluation results of different scenarios.By setting up different PV grid-connected scenarios and utilizing the IEEE33 node simulation algorithm,the correctness and effectiveness of the proposed subject-object combination assignment and integrated assessment method are verified. | Yue Yang Jiarui Zheng Long Cheng Yongnan Zhu Hao Wu | 2024 | Energy Engineering2024,121,3: | 0 |
| 9 | Partial recovery of disturbed V-J pairing profiles of T-cell receptor in people living with HIV receiving long-term antiretroviral therapy显示文摘Chronic human immunodeficiency virus(HIV) infection not only causes a gradual loss of CD4~+T cells but also leads to a disturbance of the T cell receptor(TCR) repertoire. In people living with HIV(PLWH), monitoring TCR repertoire is challenged by the inconsistency of complementarity determining region 3(CDR3) and limited cell numbers in clinical samples. Thus, a quantitative method is necessary for monitoring the TCR repertoire in PLWH.We characterized the TCR V-J pairing profile of na?ve and memory CD4~+T cells in healthy donors, HIV-infected antiretroviral therapy(ART)-na?ve patients and long-term(over5 years) ART-experienced patients by performing TCR sequencing. We developed a V-J index with 18 parameters which were subdivided into five categories(expression coverage, cumulative percentage of the top tenth percentile, diversity, intra-individual similarity and inter-individual similarity). In ART-na?ve patients, 14 of the 18 parameters were significantly altered.Long-term ART recovered ten parameters. The four unrecovered parameters were related to inter-individual similarity.Therefore, these findings indicate that long-term ART could only partially recover TCR V-J pairs and introduce newly impacted V-J pairs. Moreover, these results provide new insights into the V-J pairing of the TCR and into the disturbance of TCR repertoire in HIV infection. | Guoli Li Jiarui Li Henghui Zhang Yu Zhang Di Liu Yu Hao Junyan Han Juan Du Liuluan Zhu Yongqin Zeng Bei Li Rui Li Chuan Song Fujie Zhang Chen Chen Hongxin Zhao Hui Zeng | 2021 | Science China(Life Sciences)2021,64,1: | 0 |