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Hydraulic fracturing-based analytical method for determining seepage characteristics at tunnel-gasketed joints 被引量:1
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作者 GONG Chen-jie CHENG Ming-jin +2 位作者 FAN Xuan PENG Yi-cheng DING Wen-qi 《Journal of Central South University》 2025年第4期1520-1534,共15页
Waterproof performance of gaskets between segments is the focus of shield tunnels.This paper proposed an analytical method for determining seepage characteristics at tunnel-gasketed joints based on the hydraulic fract... Waterproof performance of gaskets between segments is the focus of shield tunnels.This paper proposed an analytical method for determining seepage characteristics at tunnel-gasketed joints based on the hydraulic fracturing theories.First,the mathematical model was established,and the seepage governing equation and boundary conditions were obtained.Second,three dimensionless parameters were introduced for simplifying the expressions,and the seepage governing equations were normalized.Third,analytical expressions were derived for the interface opening and liquid pressure.Moreover,the influencing factors of seepage process at the gasketed interface were analyzed.Parametric analyses revealed that,in the normalized criterion of liquid viscosity,the liquid tip coordinate was influenced by the degree of negative pressure in the liquid lag region,which was related to the initial contact stress.The coordinate of the liquid tip affected the liquid pressure distribution and the interface opening,which were analyzed under different liquid tip coordinate conditions.Finally,under two limit states,comparative analysis showed that the results of the variation trend of the proposed method agree well with those of previous research.Overall,the proposed analytical method provides a novel solution for the design of the waterproof in shield tunnels. 展开更多
关键词 shield tunnels segment joints seepage characteristics hydraulic fracture analytical solution
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Environmental DNA assessment of fish diversity, distribution and niche characteristics in Zhutuo spawning ground in the upper reaches of the Yangtze River
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作者 LU Jia WANG Li +3 位作者 LI Ruijiao YANG Jin ZHANG Peng YANG Shengfa 《水利水电技术(中英文)》 北大核心 2025年第S1期454-467,共14页
[Objective]Implementation of the Ten-Year Fishing Ban policy may alter fish diversity and niche characteristics of dominant species in spawning grounds within the National Nature Reserve for Rare and Endemic Fish in t... [Objective]Implementation of the Ten-Year Fishing Ban policy may alter fish diversity and niche characteristics of dominant species in spawning grounds within the National Nature Reserve for Rare and Endemic Fish in the Upper Yangtze River.This study initiated continuous monitoring of natural spawning habitats from February 2022 to assess these ecological changes.[Methods]Environmental DNA(eDNA)metabarcoding was employed to analyze fish species composition,biodiversity patterns,and niche parameters of dominant species.Water sampling followed the CEN/TS 19461 standard across five monitoring transects(ZT1-ZT5).[Results]The eDNA analysis detected 45 species of fish belonging to 38 genera,13 families,and 3 orders were detected through environmental DNA(eDNA)in this survey,including 10 species endemic to the upper reaches of the Yangtze River,such as Procypris rabaudi and Myxocyprinus asiaticus.The fish community was mainly composed of bottom-dwelling,settling ovum-producing,omnivorous fish.The variation ranges of the Chao1 index,ACE index,Shannon index,and Simpson index are 736~996,719~965,1.58~3.23,and 0.83~0.99,respectively,indicating that fish species in spawning sites are abundant and community distribution uniformity is high.All indexes are highest at ZT1 monitoring points.Cluster analysis showed that,at a certain similarity level,fish community types in spawning sites could be basically divided into two groups:ZT1,ZT3,and ZT5 clustered together,and ZT2 and ZT4 clustered together,indicating similar fish community habitats.There are 9 dominant fish species in typical deep pool habitats in the reserve,with niche widths(Bi)ranging from 1.13 to 3.87.The dominant fish species are broad and medium niche fish,such as Cyprinus carpio and Hemiculter tchangi,with the niche overlap index(Oik)of some dominant fish species reaching more than 0.95.This indicates fierce competition for resources among the fish in this spawning ground.[Conclusion]The Zhutuo spawning ground demonstrates high species richness with homogeneous community structure and intense resource competition.This study establishes an eDNA-based monitoring framework that enhances conventional survey method,providing critical baseline data for adaptive management under the fishing moratorium regime. 展开更多
关键词 edNA metabarcoding fishes endemic to the upper reaches of the Yangtze river spawning ground fish diversity niche characteristics
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Numerical study on flow characteristics of large copper smelting bottom-blown furnace under strong and weak coupling oxygen supply
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作者 JIANG Bao-cheng GUO Xue-yi +1 位作者 WANG Song-song WANG Qin-meng 《Journal of Central South University》 2025年第2期363-375,共13页
The melt stirring in a large copper smelting oxygen bottom-blown furnace is caused by the large amount of gas movement blown in by two rows of oxygen lances.At present,the two rows of oxygen lances provide oxygen of e... The melt stirring in a large copper smelting oxygen bottom-blown furnace is caused by the large amount of gas movement blown in by two rows of oxygen lances.At present,the two rows of oxygen lances provide oxygen of equal strength,and the stirring in the central area of the melt is insufficient,which restricts the efficient progress of the smelting reaction.This study proposes a strong-weak coupling oxygen supply method and establishes an equivalent model based on a large bottom-blown furnace(LBBF)of an enterprise to simulate the bubble characteristics and flow characteristics of the molten pool.The results show that adjusting the flow ratio between the two rows of oxygen lances can create a“strong”and a“weak”coexisting source of disturbance in an LBBF.It is worth noting that when the flow rate ratio of the two rows of oxygen lances is 1.6,the peak velocity generated by the“strong”distur bance source in the molten pool increases by 18.92%,and the disturbance range increases.This method effectively strengthens the stirring in the central area of the molten pool,improves smelting efficiency,and does not produce harmful melt splashes.It provides important guidance for optimizing production practice. 展开更多
关键词 large bottom-blown furnace oxygen supply flow characteristics initial bubbles
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Study on the formation characteristics of underwater hemispherical shaped charge jet and its penetration performance into concrete
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作者 Chao Cao Jinxiang Wang +5 位作者 Lingquan Kong Kui Tang Yujie Xiao Yangchen Gu Ming Yang Jian Wang 《Defence Technology(防务技术)》 2025年第5期180-196,共17页
Shaped charge has been widely used for penetrating concrete.However,due to the obvious difference between the propagation of shock waves and explosion products in water and air,the theory governing the formation of sh... Shaped charge has been widely used for penetrating concrete.However,due to the obvious difference between the propagation of shock waves and explosion products in water and air,the theory governing the formation of shaped charge jets in water as well as the underwater penetration effect of concrete need to be studied.In this paper,we introduced a modified forming theory of an underwater hemispherical shaped charge,and investigated the behavior of jet formation and concrete penetration in both air and water experimentally and numerically.The results show that the modified jet forming theory predicts the jet velocity of the hemispherical liner with an error of less than 10%.The underwater jets exhibit at least 3%faster and 11%longer than those in air.Concrete shows different failure modes after penetration in air and water.The depth of penetration deepens at least 18.75%after underwater penetration,accompanied by deeper crater with 65%smaller radius.Moreover,cracks throughout the entire target are formed,whereas cracks exist only near the penetration hole in air.This comprehensive study provides guidance for optimizing the structure of shaped charge and improves the understanding of the permeability effect of concrete in water. 展开更多
关键词 Shaped charge jet Underwater penetration Formation characteristic Concrete failure
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Hydration mechanism and microstructure characteristics of modified magnesium slag alkali-activated coal-fired slag based cementitious materials
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作者 SUN Wei-ji LIU Lang +4 位作者 ZHAO Yuan-yuan FANG Zhi-yu LYU Yong-zhe XIE Geng SHAO Cheng-cheng 《Journal of Central South University》 2025年第6期2148-2169,共22页
As the second most important solid waste produced by coal-fired power plants,the improper management of coal-fired slag has the potential to result in environmental pollution.It is therefore imperative that high-value... As the second most important solid waste produced by coal-fired power plants,the improper management of coal-fired slag has the potential to result in environmental pollution.It is therefore imperative that high-value utilization pathways for coal-fired slag should be developed.In this study,modified magnesium slag(MMS),produced by a magnesium smelter,was selected as the alkali activator.The activated silica-aluminum solid wastes,namely coal-fired slag(CFS)and mineral powder(MP),were employed as pozzolanic materials in the preparation of alkali-activated cementitious materials.The alkali-activated cementitious materials prepared with 50 wt%MMS,40 wt%CFS and 10 wt%MP exhibited favorable mechanical properties,with a compressive strength of 32.804 MPa in the paste sample cured for 28 d.Then,the activated silica-aluminum solid waste consisting of CFS-MP generated a significant amount of C-S(A)-H gels,AFt,and other products,which were observed to occupy the pore structure of the specimen.In addition,the secondary hydration reaction of CFS-MP occurs in high alkalinity environments,resulting in the formation of a mutually stimulated and promoted reaction system between CFS-MP and MMS,this will subsequently accelerate the hydrolysis reaction of MMS.It is important to emphasize that the amount of MMS in alkali-activated cementitious materials must be strictly regulated to avert the potential issue of incomplete depolymerization-repolymerization of active silica-aluminum solid waste containing CFS-MP.This in turn could have a deleterious impact on the late strength of the cementitious materials.The aim of this work is to improve the joint disposal of MMS,CFS and MP and thereby provide a scientific basis for the development of environmentally friendly and low-carbon modified magnesium slag alkali-activated coal-fired slag based cementitious materials for mine backfilling. 展开更多
关键词 coal-fired slag ALKALI-ACTIVATEd hydration characteristics pore structure composite cementitious material
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Study on the characteristics of crack initiation in deep dense shale containing circular hole under varying stress conditions
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作者 XIE Hong-qiang FENG Gan +4 位作者 LIU Huai-zhong HE Qiang XIAO Ming-li PEI Jian-liang TAHERDANGKOO Reza 《Journal of Central South University》 2025年第1期244-261,共18页
The evolution of cracks in shale directly affects the efficient production of shale gas.However,there is a lack of research on the characteristics of crack initiation in deep dense shale under different stress conditi... The evolution of cracks in shale directly affects the efficient production of shale gas.However,there is a lack of research on the characteristics of crack initiation in deep dense shale under different stress conditions.In this work,considering the different combinations of confining pressure and bedding plane inclination angle(α),biaxial mechanical loading experiments were conducted on shale containing circular holes.The research results indicate that the confining pressure and inclination angle of the bedding planes significantly influence the failure patterns of shale containing circular holes.The instability of shale containing circular holes can be classified into five types:tensile failure along the bedding planes,tensile failure through the bedding planes,shear slip along the bedding planes,shear failure through the bedding planes,and block instability failure.Furthermore,the evolution of strain and stress fields around the circular holes was found to be the fundamental cause of variations in the initiation characteristics and locations of shale cracks.The crack initiation criterion for shale containing circular hole was established,providing a new method for evaluating the trajectory of shale hole wall fractures.This study holds significant importance for evaluating the evolution and stability of fracture networks within shale reservoirs. 展开更多
关键词 shale gas deep dense shale crack initiate characteristics failure modes
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Study on the effects of combustion characteristics of pyrotechnic charges on pyrotechnic shocks
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作者 Jingcheng Wang Shihui Xiong +2 位作者 Huina Mu Xiaogang Li Yuquan Wen 《Defence Technology(防务技术)》 2025年第4期79-98,共20页
This study calculates the combustion characteristics of various gas-generating and micro gas pyrotechnic charges,including aluminium/potassium perchlorate,boron/potassium nitrate,carbon black/potassium nitrate,and sil... This study calculates the combustion characteristics of various gas-generating and micro gas pyrotechnic charges,including aluminium/potassium perchlorate,boron/potassium nitrate,carbon black/potassium nitrate,and silicon-based delay compositions,using thermodynamic software.A multiphase flowthermal-solid coupling model was established,and the combustion process of the pyrotechnic charges within a closed bomb was simulated.The pyrotechnic shock generated by combustion was predicted.The combustion pressures and pyrotechnic shocks were measured.The simulation results demonstrated good agreement with experimental results.Additionally,the mechanism of shock generation by the combustion of pyrotechnic charges in the closed bomb was analyzed.The effects of the combustion characteristics of the pyrotechnic charges on the resulting pyrotechnic shocks were systematically investigated.Notably,the shock response spectrum of the gas-generating pyrotechnic charges is greater than that of the micro gas compositions at most frequencies,particularly in the mid-field pyrotechnic shocks(3-10 kHz).Furthermore,the pyrotechnic shocks increase approximately linearly with the impulse of the gas-generating pyrotechnic charges. 展开更多
关键词 Pyrotechnic charges Pyroshock Closed bomb tests Combustion characteristics Multiphase flow-thermal-solid coupling
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Effects of lateral translation on aerodynamic characteristics of superconducting maglev trains
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作者 ZHANG Lei PAN Shen-gong +5 位作者 LIN Tong-tong YU Qing-song WANG Tian-tian YANG Ming-zhi LIU Dong-run XU Shu 《Journal of Central South University》 2025年第8期3150-3172,共23页
Irregularities in the track and uneven forces acting on the train can cause shifts in the position of the superconducting magnetic levitation train relative to the track during operation.These shifts lead to asymmetri... Irregularities in the track and uneven forces acting on the train can cause shifts in the position of the superconducting magnetic levitation train relative to the track during operation.These shifts lead to asymmetries in the flow field structure on both sides of the narrow suspension gap,resulting in instability and deterioration of the train’s aerodynamic characteristics,significantly impacting its operational safety.In this study,we firstly validate the aerodynamic characteristics of the superconducting magnetic levitation system by developing a numerical simulation method based on wind tunnel test results.We then investigate the influence of lateral translation parameters on the train’s aerodynamic performance under conditions both with and without crosswinds.We aim to clarify the evolution mechanism of the flow field characteristics under the coupling effect between the train and the U-shaped track and to identify the most unfavorable operational parameters contributing to the deterioration of the train’s aerodynamic properties.The findings show that,without crosswinds,a lateral translation of 30 mm causes a synchronous resonance phenomenon at the side and bottom gaps of the train-track coupling,leading to the worst aerodynamic performance.Under crosswind conditions,a lateral translation of 40 mm maximizes peak pressure fluctuations and average turbulent kinetic energy around the train,resulting in the poorest aerodynamic performance.This research provides theoretical support for enhancing the operational stability of superconducting magnetic levitation trains. 展开更多
关键词 superconducting magnetic trains lateral translation aerodynamic characteristics crosswind operation flow coupling
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Strength and failure characteristics of hard rock containing a single structural plane under varied loading angles : A true triaxial investigation
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作者 XU Huai-sheng LI Shao-jun +3 位作者 XU Ding-ping LIU Xu-feng FENG Guang-liang WANG Zhao-feng 《Journal of Central South University》 2025年第5期1903-1921,共19页
The spatial relationship between structural planes and principal stresses significantly affects the mechanical properties of deep hard rock.This paper examines the effect of the loading angle under true triaxial compr... The spatial relationship between structural planes and principal stresses significantly affects the mechanical properties of deep hard rock.This paper examines the effect of the loading angle under true triaxial compression.While previous studies focused on the angleβbetween the maximum principal stress and the structural plane,the role of angleω,between the intermediate principal stress and the structural plane,is often overlooked.Utilizing artificially prefabricated granite specimens with a single non-penetrating structural plane,we set the loading angleβto range from 0°to 90°across seven groups,and assignedωvalues of 0°and 90°in two separate groups.The results show that the peak strength is negatively correlated withβup to 45°,beyond which it tends to stabilize.The angleωexerts a strengthening effect on the peak strength.Deformation mainly occurs post-peak,with the strain values ε_(1) and ε_(3) reaching levels 2−3 times higher than those in intact rock.The structural plane significantly influences failure mode whenω=0°,while failure localizes near the σ_(3) surface of the specimens whenω=90°.The findings enhance data on structural plane rocks under triaxial compression and inform theoretical research,excavation,and support design of rock structures. 展开更多
关键词 true triaxial compression hard rock structural plane loading angle STrENGTH failure characteristics
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Optimization of mesh characteristics of gear pair considering influence of assembly errors
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作者 ZHAO Xiao-jian MA Hui +5 位作者 MA Ze-yu LIU Jia-qi CAO Peng WU Yu-ping DING Xiang-fu ZHAO Tian-yu 《Journal of Central South University》 2025年第4期1400-1430,共31页
Gear assembly errors can lead to the increase of vibration and noise of the system,which affect the stability of system.The influence can be compensated by tooth modification.Firstly,an improved three-dimensional load... Gear assembly errors can lead to the increase of vibration and noise of the system,which affect the stability of system.The influence can be compensated by tooth modification.Firstly,an improved three-dimensional loaded tooth contact analysis(3D-LTCA)method which can consider tooth modification and coupling assembly errors is proposed,and mesh stiffness calculated by proposed method is verified by MASTA software.Secondly,based on neural network,the surrogate model(SM)that maps the relationship between modification parameters and mesh mechanical parameters is established,and its accuracy is verified.Finally,SM is introduced to establish an optimization model with the target of minimizing mesh stiffness variations and obtaining more even load distribution on mesh surface.The results show that even considering training time,the efficiency of gear pair optimization by surrogate model is still much higher than that by LTCA method.After optimization,the mesh stiffness fluctuation of gear pair with coupling assembly error is reduced by 34.10%,and difference in average contact stresses between left and right regions of the mesh surface is reduced by 62.84%. 展开更多
关键词 helical gear mesh characteristics gear tooth modification assembly errors neural network multi-objective optimization
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Bearing characteristics of anchor box beam support system in deep thick roof coal roadway and its application
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作者 WANG Qi WANG Ming-zi +1 位作者 JIANG Bei XU Chuan-jie 《Journal of Central South University》 2025年第5期1887-1902,共16页
Considering the characteristics of deep thick top coal roadway,in which the high ground stress,coal seam with low strength,and a large range of surrounding rock fragmentation,the pressure relief anchor box beam suppor... Considering the characteristics of deep thick top coal roadway,in which the high ground stress,coal seam with low strength,and a large range of surrounding rock fragmentation,the pressure relief anchor box beam support system with high strength is developed.The high-strength bearing characteristics and coupling yielding support mechanism of this support system are studied by the mechanical tests of composite members and the combined support system.The test results show that under the coupling effect of support members,the peak stress of the box-shaped support beam in the anchor box beam is reduced by 21.9%,and the average deformation is increased by 135.0%.The ultimate bending bearing capacity of the box-shaped support beam is 3.5 times that of traditional channel beam.The effective compressive stress zone applied by the high prestressed cable is expanded by 26.4%.On this basis,the field support comparison test by the anchor channel beam,the anchor I-shaped beam and the anchor box beam are carried out.Compared with those of the previous two,the surrounding rock convergence of the latter is decreased by 41.2%and 22.2%,respectively.The field test verifies the effectiveness of the anchor box beam support system. 展开更多
关键词 thick roof coal roadway anchor box beam bearing characteristics combined support field application
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Experimental and numerical investigation of cavity characteristics in behind-armor liquid-filled containers under shaped charge jet impact
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作者 Shixin Ma Xiangdong Li Lanwei Zhou 《Defence Technology(防务技术)》 2025年第5期242-259,共18页
The cavity characteristics in liquid-filled containers caused by high-velocity impacts represent an important area of research in hydrodynamic ram phenomena.The dynamic expansion of the cavity induces liquid pressure ... The cavity characteristics in liquid-filled containers caused by high-velocity impacts represent an important area of research in hydrodynamic ram phenomena.The dynamic expansion of the cavity induces liquid pressure variations,potentially causing catastrophic damage to the container.Current studies mainly focus on non-deforming projectiles,such as fragments,with limited exploration of shaped charge jets.In this paper,a uniquely experimental system was designed to record cavity profiles in behind-armor liquid-filled containers subjected to shaped charge jet impacts.The impact process was then numerically reproduced using the explicit simulation program ANSYS LS-DYNA with the Structured Arbitrary Lagrangian-Eulerian(S-ALE)solver.The formation mechanism,along with the dimensional and shape evolution of the cavity was investigated.Additionally,the influence of the impact kinetic energy of the jet on the cavity characteristics was analyzed.The findings reveal that the cavity profile exhibits a conical shape,primarily driven by direct jet impact and inertial effects.The expansion rates of both cavity length and maximum radius increase with jet impact kinetic energy.When the impact kinetic energy is reduced to 28.2 kJ or below,the length-to-diameter ratio of the cavity ultimately stabilizes at approximately 7. 展开更多
关键词 Cavity characteristics Shaped charge jet Behind-armor liquid-filled container Impact kinetic energy Hydrodynamic ram
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Al-Mg@PVDF and Al-Si@PVDF composites with enhanced combustion and energy release characteristics
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作者 Zhanjun Yang Hao Liu +4 位作者 Mi Li Xiaoqian Wang Oisik Das Zhong xuan Han Lin Jiang 《Defence Technology(防务技术)》 2025年第6期1-25,共25页
To investigate the differences in combustion and energy release characteristics of metastable intermolecular composite materials composed of aluminum alloys and polyvinylidene fluoride(PVDF)with different compositions... To investigate the differences in combustion and energy release characteristics of metastable intermolecular composite materials composed of aluminum alloys and polyvinylidene fluoride(PVDF)with different compositions,two types of alloys were selected:Al-Mg and Al-Si.Pure aluminum powder of the same size was also chosen for comparison.The PVDF-coated metal particle composites and the mixtures of PVDF with metal particles were prepared using electrospray(ES)and physical blending methods(PM),respectively.A systematic study was conducted on the morphology,compositional structure,combustion performance,energy release characteristics,and thermal reactivity of the fabricated composites and their combustion products through scanning electron microscopy(SEM),energy-dispersive X-ray spectroscopy(EDS),X-ray diffraction(XRD),combustion performance experiments,closed vessel pressure tests,and simultaneous thermogravimetric-differential scanning calorimetry(TG-DSC).The experimental results indicated that the PVDF-coated metal particles prepared by the electrospray method exhibited a distinct core-shell structure,with the metal particles in close contact with the PVDF matrix.Compared to the PM blended materials,the ES composites demonstrated superior combustion performance and energy release characteristics during combustion.Analysis of different metal fuel systems under identical preparation conditions revealed that Al-Mg and Al-Si fuels modulate the combustion and energy release properties of aluminum alloy-PVDF MICs through two distinct pathways. 展开更多
关键词 ES(electrostatic spraying) PM(physical mixing) AL-MG AL-SI COMBUSTION Combustion and energy release characteristics
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Flow field distribution and overpressure characteristics inside the crew compartment of a truck-mounted howitzer under the effect of muzzle blast
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作者 Shengcheng Wei Linfang Qian +2 位作者 Yadong Xu Qiang Yin Xinyu Xiong 《Defence Technology(防务技术)》 2025年第2期190-205,共16页
The muzzle blast overpressure induces disturbances in the flow field inside the crew compartment(FFICC)of a truck-mounted howitzer during the artillery firing.This overpressure is the primary factor preventing personn... The muzzle blast overpressure induces disturbances in the flow field inside the crew compartment(FFICC)of a truck-mounted howitzer during the artillery firing.This overpressure is the primary factor preventing personnel from firing artillery within the cab.To investigate the overpressure characteristics of the FFICC,a foreign trade equipment model was used as the research object,and a numerical model was established to analyze the propagation of muzzle blast from the muzzle to the interior of the crew compartment under extreme firing condition.For comparative verification,the muzzle blast experiment included overpressure data from both the flow field outside the crew compartment(FFOCC)and the FFICC,as well as the acceleration data of the crew compartment structure(Str-CC).The research findings demonstrate that the overpressure-time curves of the FFICC exhibit multi-peak characteristics,while the pressure wave shows no significant discontinuity.The enclosed nature of the cab hinders the dissipation of pressure wave energy within the FFICC,leading to sustained high-amplitude overpressure.The frameskin structure helps attenuate the impact of muzzle blast on the FFICC.Conversely,local high overpressure caused by the convex or concave features of the cab's exterior significantly amplifies the overpressure amplitude within the FFICC. 展开更多
关键词 Truck-mounted howitzer Muzzle blast Flow field inside the crew compartment(FFICC) Overpressure characteristics Flow-structure interaction
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Effects of horizontal splitter plates on the vortex-induced vibration and aerostatic characteristics of twin separated parallel decks for a rail-cum-road bridge
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作者 HE Xu-hui YANG Jia-feng +2 位作者 LIU Lu-lu ZOU Yun-feng HE Jing 《Journal of Central South University》 2025年第3期1024-1043,共20页
Installing the splitter plates is a passive aerodynamic solution for eliminating vortex-induced vibration (VIV). However, the influences of splitter plates on the VIV and aerostatic performances are more complicated d... Installing the splitter plates is a passive aerodynamic solution for eliminating vortex-induced vibration (VIV). However, the influences of splitter plates on the VIV and aerostatic performances are more complicated due to aerodynamic interference between highway and railway decks. To study the effects of splitter plates, wind tunnel experiments for measuring VIV and aerostatic forces of twin decks under two opposite flow directions were conducted, while the surrounding flow and wind pressure of static twin decks with and without splitter plates are numerically simulated. The results showed that the incoming flow direction affects the VIV response and aerostatic coefficients. The highway deck has poor vertical and torsional VIV, and the VIV region and amplitude are different under different directions. While the railway deck only has vertical VIV when located upstream. The splitter plates can impede the process of vortex generation, shedding and impinging at the gap between twin deck, and significantly reducing the surface fluctuating pressure coefficient, thus effectively suppressing the VIV of twin decks. While, the splitter plates hurt the upstream deck regarding static wind stability and have little effect on the downstream deck. The splitter plates of appropriate width are recommended to improve VIV performances in twin parallel bridges. 展开更多
关键词 splitter plates vortex-induced vibration(VIV) aerostatic characteristic wind tunnel test twin parallel decks the rail-cum-road bridges computational fluid dynamics
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供应链金融对中小企业R&D投资效率的影响:基于融资约束视角 被引量:4
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作者 胡海青 原敏倩 薛萌 《科技进步与对策》 北大核心 2025年第1期102-112,共11页
创新是中小企业保持竞争力、适应市场变化和实现可持续发展的关键。基于2016-2022年创业板中小企业相关数据,运用三阶段DEA分析、面板Tobit模型回归、二元Logistic回归等方法,探究供应链金融对中小企业R&D投资效率的影响。结果表明... 创新是中小企业保持竞争力、适应市场变化和实现可持续发展的关键。基于2016-2022年创业板中小企业相关数据,运用三阶段DEA分析、面板Tobit模型回归、二元Logistic回归等方法,探究供应链金融对中小企业R&D投资效率的影响。结果表明,供应链金融能够显著提高中小企业R&D投资效率,融资约束在二者间发挥遮掩效应。进一步分析发现,上述效应对供应链集中度较高的企业更为显著。结论可为发挥供应链金融筹资优势,促进供应链生态系统资源互补、信息共享的协同创新网络形成,进而支持中小企业创新活动提供理论支持。 展开更多
关键词 供应链金融 r&d投资效率 三阶段dEA 面板Tobit模型 遮掩效应
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基于Mohr-Coulomb和Drucker-Prager模型的黄土剪切特性研究
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作者 游庆龙 熊秘 +5 位作者 陈世业 黄之懿 黄文旭 赵胜前 程明 蒋勇 《材料导报》 北大核心 2025年第19期138-143,共6页
为探究路基黄土的剪切特征,获取Mohr-Coulomb(M-C)模型参数内摩擦角φ和黏聚力c,Ducker-Prager(D-P)模型参数β和d,控制压实度为94%,含水率ω为9.5%、11.5%、13.5%、15.5%、19.5%,利用GDS(Geotechnical digital systems,GDS)静三轴仪在... 为探究路基黄土的剪切特征,获取Mohr-Coulomb(M-C)模型参数内摩擦角φ和黏聚力c,Ducker-Prager(D-P)模型参数β和d,控制压实度为94%,含水率ω为9.5%、11.5%、13.5%、15.5%、19.5%,利用GDS(Geotechnical digital systems,GDS)静三轴仪在100、200、300 kPa围压下开展重塑黄土不固结不排水三轴剪切试验,并进行有限元模拟,分析模型在表征黄土剪切特性时的误差。研究结果表明:当ω为9.5%时,100 kPa和200 kPa围压下土样应力应变曲线出现“软化”现象,当ω在11.5%~19.5%之间时,所有围压下土样应力应变均出现“硬化”现象。土的内摩擦角φ和黏聚力c,β和d均随含水率增大而减小,随围压增大而增大;当含水率大于最佳含水率时,黏聚力c和d会迅速减小。有限元模拟对比M-C和D-P模型,发现M-C模型能更好地反映黄土的剪切特性。最终得到了M-C和D-P模型的力学参数,并给出拟合公式,可预测压实度为94%、含水率在9.5%~19.5%范围内土样的模型参数,为工程建设提供参考。 展开更多
关键词 黄土路基 三轴试验 剪切特性 MOHr-COULOMB ducker-Prager
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基于Lode相关断裂准则的Ti-6Al-4V钛合金Taylor杆动态失效特性研究
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作者 吴帅涛 肖新科 《包装工程》 北大核心 2025年第5期272-279,共8页
目的深入理解Ti-6Al-4V钛合金的冲击断裂行为。方法利用一级轻气炮在177.7~298.7 m/s的速度下开展Taylor杆撞击实验,获取Ti-6Al-4V钛合金Taylor杆在不同撞击速度下的失效行为;基于修正的MJC塑性模型和Lode参数相关的Modified Mohr-Coulo... 目的深入理解Ti-6Al-4V钛合金的冲击断裂行为。方法利用一级轻气炮在177.7~298.7 m/s的速度下开展Taylor杆撞击实验,获取Ti-6Al-4V钛合金Taylor杆在不同撞击速度下的失效行为;基于修正的MJC塑性模型和Lode参数相关的Modified Mohr-Coulomb(MMC)断裂准则建立撞击实验的有限元计算模型,并对Ti-6Al-4V钛合金Taylor杆的冲击断裂行为进行预报和分析。结果随着撞击速度的提高,Ti-6Al-4V钛合金Taylor杆依次发生镦粗、剪切开裂和破碎3种变形和断裂模式;采用Lode相关的MMC断裂准则可以合理预报Ti-6Al-4V钛合金Taylor杆的塑性变形和断裂行为。结论尽管具有明显的单元尺寸敏感性,采用Lode相关的MMC断裂准则仍可合理预报Ti-6Al-4V钛合金在Taylor撞击中的冲击失效行为,压-剪应力状态在Ti-6Al-4V钛合金Taylor杆的失效过程中占据主导地位。 展开更多
关键词 冲击断裂 Taylor 动态变形特性 数值模拟 Lode相关断裂准则
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创新驱动下R&D投入对中国与丝绸之路经济带沿线国家棉产品贸易的影响研究
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作者 王乾润 布娲鹣·阿布拉 +1 位作者 陈俊科 李敬 《工程管理科技前沿》 北大核心 2025年第3期90-96,共7页
伴随创新驱动发展战略实施及“一带一路”深耕细作,强化R&D经费配置,催生双边棉产品贸易发展新动能意义重大。本文采用中国与丝绸之路经济带沿线国家面板数据,运用空间计量模型进行实证分析,结果发现:(1)资源环境、经济发展环境、... 伴随创新驱动发展战略实施及“一带一路”深耕细作,强化R&D经费配置,催生双边棉产品贸易发展新动能意义重大。本文采用中国与丝绸之路经济带沿线国家面板数据,运用空间计量模型进行实证分析,结果发现:(1)资源环境、经济发展环境、科教与创新环境、区域经济合作、空间距离5大项指标共同作用,从不同程度对双边棉产品贸易产生影响;(2)经济发展水平、人口规模、R&D投入、区域贸易协定、跨境人民币结算极大地促进了双边棉产品贸易增长;(3)R&D投入对双边棉产品贸易增长的拉动作用最为显著,R&D投入强度每增加1%,中国与丝绸之路经济带沿线国家棉产品贸易将显著提高2.520%。本文研究对于提升中国与丝绸之路经济带沿线国家棉产品贸易具有一定的参考价值。 展开更多
关键词 创新驱动 r&d 丝绸之路经济带 棉产品国际贸易
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绿色金融、R&D投入与碳排放的内在关联性研究——基于省际面板数据的实证检验
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作者 刘伟 纪明 +1 位作者 韩进 王竞一 《工业技术经济》 北大核心 2025年第3期45-55,共11页
“碳达峰”和“碳中和”目标下,如何推动中国碳减排与经济绿色低碳转型,已经成为中国高质量发展的重要议题。本文基于2010~2022年我国30个省(区、市)的面板数据,探析了绿色金融和科技研发对碳排放的影响,实证证明了绿色金融与R&D投... “碳达峰”和“碳中和”目标下,如何推动中国碳减排与经济绿色低碳转型,已经成为中国高质量发展的重要议题。本文基于2010~2022年我国30个省(区、市)的面板数据,探析了绿色金融和科技研发对碳排放的影响,实证证明了绿色金融与R&D投入均对碳排放起到显著的抑制作用,而且R&D投入在绿色金融与碳排放之间的起到显著的负向调节作用,它既是绿色金融政策落地的关键驱动力,也是减少碳排放的重要技术手段。因此,我国应当加强绿色金融政策支持、发挥R&D投入和技术创新在实现碳减排中的关键驱动作用,同时推动绿色金融与科技研发协同发展。 展开更多
关键词 绿色金融 科技创新 r&d投入 碳排放 熵权法 单位根检验 区域异质性 科技研发
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