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Rapid simulation and phase distortion evaluation of thermal blooming effect in internal laser propagation channels
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作者 WU Dong-yu LI Xiang +4 位作者 LI Jia-sheng GAO Liang SONG Yan-song WANG Si DONG Ke-yan 《中国光学(中英文)》 北大核心 2025年第3期520-534,共15页
During the propagation of high-power lasers within internal channels,the laser beam heats the propagation medium,causing the thermal blooming effect that degrades the beam quality at the output.The intricate configura... During the propagation of high-power lasers within internal channels,the laser beam heats the propagation medium,causing the thermal blooming effect that degrades the beam quality at the output.The intricate configuration of the optical path within the internal channel necessitates complex and time-consuming efforts to assess the impact of thermal blooming effect on the optical path.To meet the engineering need for rapid evaluation of thermal blooming effect in optical paths,this study proposed a rapid simulation method for the thermal blooming effect in internal optical paths based on the finite element method.This method discretized the fluid region into infinitesimal elements and employed finite element method for flow field analysis.A simplified analytical model of the flow field region in complex internal channels was established,and regions with similar thermal blooming effect were divided within this model.Based on the calculated optical path differences within these regions,numerical simulations of phase distortion caused by thermal blooming were conducted.The calculated result were compared with those obtained using the existing methods.The findings reveal that for complex optical paths,the discrepancy between the two approaches is less than 3.6%,with similar phase distortion patterns observed.For L-type units,this method and the existing methods identify the same primary factors influencing aberrations and exhibit consistent trends in their variation.This method was used to analyze the impact of thermal blooming effect in a straight channel under different gravity directions.The results show that phase distortion varies with changes in the direction of gravity,and the magnitude of the phase difference is strongly correlated with the component of gravity perpendicular to the optical axis.Compared to the existing methods,this approach offers greater flexibility,obviates the need for complex custom analysis programming.The analytical results of this method enable a rapid assessment of the thermal blooming effect in optical paths within the internal channel.This is especially useful during the engineering design.These results also provide crucial references for developing strategies to suppress thermal blooming effect. 展开更多
关键词 high-power laser thermal blooming effect beam phase numerical simulation thermal coupling effect beam control system
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Experimental and numerical simulation of the attenuation effect of blast shock waves in tunnels at different altitudes 被引量:1
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作者 Changjiang Liu Hujun Li +3 位作者 Zhen Wang Yong He Guokai Zhang Mingyang Wang 《Defence Technology(防务技术)》 2025年第1期120-141,共22页
Traffic engineering such as tunnels in various altitudinal gradient zone are at risk of accidental explosion,which can damage personnel and equipment.Accurate prediction of the distribution pattern of explosive loads ... Traffic engineering such as tunnels in various altitudinal gradient zone are at risk of accidental explosion,which can damage personnel and equipment.Accurate prediction of the distribution pattern of explosive loads and shock wave propagation process in semi-enclosed structures at various altitude environment is key research focus in the fields of explosion shock and fluid dynamics.The effect of altitude on the propagation of shock waves in tunnels was investigated by conducting explosion test and numerical simulation.Based on the experimental and numerical simulation results,a prediction model for the attenuation of the peak overpressure of tunnel shock waves at different altitudes was established.The results showed that the peak overpressure decreased at the same measurement points in the tunnel entrance under the high altitude condition.In contrast,an increase in altitude accelerated the propagation speed of the shock wave in the tunnel.The average error between the peak shock wave overpressure obtained using the overpressure prediction formula and the measured test data was less than15%,the average error between the propagation velocity of shock waves predicted values and the test data is less than 10%.The method can effectively predict the overpressure attenuation of blast wave in tunnel at various altitudes. 展开更多
关键词 Shock wave propagation TUNNEL Altitude effect Peak overpressure Shock waves velocity Engineering safety
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Enhanced selectivity of catalytic hydrogenation of halogenated nitroaromatics by interfacial effects
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作者 HUANG Rui LIU Shengjie +1 位作者 WU Qingyuan ZHENG Nanfeng 《无机化学学报》 北大核心 2025年第1期201-212,共12页
The highly selective catalytic hydrogenation of halogenated nitroaromatics was achieved by employing Pd‑based catalysts that were co‑modified with organic and inorganic ligands.It was demonstrated that the catalysts c... The highly selective catalytic hydrogenation of halogenated nitroaromatics was achieved by employing Pd‑based catalysts that were co‑modified with organic and inorganic ligands.It was demonstrated that the catalysts contained Pd species in mixed valence states,with high valence Pd at the metal‑support interface and zero valence Pd at the metal surface.While the strong coordination of triphenylphosphine(PPh3)to Pd0 on the Pd surface prevents the adsorption of halogenated nitroaromatics and thus dehalogenation,the coordination of sodium metavanadate(NaVO3)to high‑valence Pd sites at the interface helps to activate H2 in a heterolytic pathway for the selective hydrogenation of nitro‑groups.The excellent catalytic performance of the interfacial active sites enables the selective hydrogenation of a wide range of halogenated nitroaromatics. 展开更多
关键词 halogenated nitroaromatic heterogeneous catalysis HYDROGENATION selectivity control interfacial effect
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Inhibitory effect of the interlayer of two-dimensional vermiculite on the polysulfide shuttle in lithium-sulfur batteries
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作者 CHEN Xiaoli LUO Zhihong +3 位作者 XIONG Yuzhu WANG Aihua CHEN Xue SHAO Jiaojing 《无机化学学报》 北大核心 2025年第8期1661-1671,共11页
A functional interlayer based on two-dimensional(2D)porous modified vermiculite nanosheets(PVS)was obtained by acid-etching vermiculite nanosheets.The as-obtained 2D porous nanosheets exhibited a high specific surface... A functional interlayer based on two-dimensional(2D)porous modified vermiculite nanosheets(PVS)was obtained by acid-etching vermiculite nanosheets.The as-obtained 2D porous nanosheets exhibited a high specific surface area of 427 m^(2)·g^(-1)and rich surface active sites,which help restrain polysulfides(LiPSs)through good physi-cal and chemical adsorption,while simultaneously accelerating the nucleation and dissolution kinetics of Li_(2)S,effec-tively suppressing the shuttle effect.The assembled lithium-sulfur batteries(LSBs)employing the PVS-based inter-layer delivered a high initial discharge capacity of 1386 mAh·g^(-1)at 0.1C(167.5 mAh·g^(-1)),long-term cycling stabil-ity,and good rate property. 展开更多
关键词 vermiculite nanosheets two-dimensional materials INTERLAYER shuttle effect lithium-sulfur batteries
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Solid-state Effects on Luminescence Properties of TADF Emitters Based on Pyrido[2,3-b]pyrazine-Dihydrophenazasilines Donor-acceptor Structures:Theoretical Study
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作者 LI Yuheng LIU Meiqi +2 位作者 HOU Baoming PAN Yuyu YANG Bing 《发光学报》 北大核心 2025年第2期354-365,共12页
Thermally activated delayed fluorescence(TADF)molecules have outstanding potential for applications in organic light-emitting diodes(OLEDs).Due to the lack of systematic studies on the correlation between molecular st... Thermally activated delayed fluorescence(TADF)molecules have outstanding potential for applications in organic light-emitting diodes(OLEDs).Due to the lack of systematic studies on the correlation between molecular structure and luminescence properties,TADF molecules are far from meeting the needs of practical applications in terms of variety and number.In this paper,three twisted TADF molecules are studied and their photophysical properties are theoretically predicted based on the thermal vibrational correlation function method combined with multiscale calculations.The results show that all the molecules exhibit fast reverse intersystem crossing(RISC)rates(kRISC),predicting their TADF luminescence properties.In addition,the binding of DHPAzSi as the donor unit with different acceptors can change the dihedral angle between the ground and excited states,and the planarity of the acceptors is positively correlated with the reorganization energy,a property that has a strong influence on the non-radiative process.Furthermore,a decrease in the energy of the molecular charge transfer state and an increase in the kRISC were observed in the films.This study not only provides a reliable explanation for the observed experimental results,but also offers valuable insights that can guide the design of future TADF molecules. 展开更多
关键词 solid-state effects thermally activated delayed fluorescence(TADF) theoretical study multi-scale simulation
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Effect of pulse current and its application direction on the size effect of nanocrystalline nickel foil
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作者 WANG Yi-yan LI Chao +2 位作者 CHEN Zi-shuai DU Jin-yang LI Feng 《Journal of Central South University》 2025年第7期2416-2431,共16页
In order to gain a deeper understanding of the effect of pulsed current on the mechanical properties and size effect of nanocrystalline Ni foils,nanocrystalline Ni foils with different grain thickness-to-grain size ra... In order to gain a deeper understanding of the effect of pulsed current on the mechanical properties and size effect of nanocrystalline Ni foils,nanocrystalline Ni foils with different grain thickness-to-grain size ratios(λ)were prepared using pulsed electrodeposition in this paper and unidirectional tensile experiments were carried out at room temperature with different currents and their applied directions.The experimental results show that the nanocrystalline Ni foil produces an obvious electroplasticity effect after applying the current field,and when 300<λ<1100,the current weakens the size effect of nanocrystalline Ni foils to a certain extent,and the angle between the current direction and the deformation direction also affects the mechanical response of nanocrystalline Ni foils,and when the angle between the current direction and the deformation direction is 0°,electroplasticity effect is the best,and the current has the most significant effect of abating the size effect of the material.The mechanism of unidirectional tensile deformation of nanocrystalline Ni foils under the effect of pulsed current was analyzed using TEM and TKD.It was found that the applied pulse current increased the activity of the nanocrystalline boundaries,promoted the movement of dislocations,and reduced the tendency of dislocation entanglement.The higher the peak current density and the smaller the angle between the direction of the current and the direction of deformation,the smaller the grain boundary orientation difference,the more dispersed the grain orientation,and the lower the density of geometrically necessary dislocations(GND)in the deformed nanocrystalline foil,the more significant the effect on material plasticity improvement. 展开更多
关键词 nanocrystalline Ni foil size effect electroplasticity effect current direction
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Pressure and temperature effects resulting from impact onto materials of different reactivity
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作者 Andreas Heine Matthias Wickert 《Defence Technology(防务技术)》 2025年第2期221-230,共10页
The pressure and temperature increase resulting from the impact of different threats onto target materials is analyzed with a unified laboratory-scale setup.This allows deriving qualitative information on the occurrin... The pressure and temperature increase resulting from the impact of different threats onto target materials is analyzed with a unified laboratory-scale setup.This allows deriving qualitative information on the occurring phenomenology as well as quantitative statements about the relative effects sizes as a function of target material and threat.The considered target materials are steel,aluminum,and magnesium.As threats,kinetic energy penetrator,explosively formed projectile,and shaped charge jet are used.For the investigated combinations,the measured overpressures vary by a factor of up to 5 for a variation of the material,by a factor of up to 7 for a variation of the threat,and by a factor larger than 15for a simultaneous variation of both.The obtained results as well as the experimental approach are relevant for the basic understanding of impact effects and risks due to material reactivity.The paper combines two main aims.Firstly,to provide a summary of own prior work in a coherent journal article and,secondly,to review and discuss these earlier results with a new perspective. 展开更多
关键词 Impact effects PRESSURE TEMPERATURE Risk assessment Material reactivity
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The hydrodynamic RAM effect:Review of historic experiments,model developments and simulation
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作者 Georg A.Heilig Michael May 《Defence Technology(防务技术)》 2025年第2期150-178,共29页
The Hydrodynamic Ram(HRAM)effect occurs when a high kinetic energy projectile penetrates a fluid filled area,e.g.,a liquid filled tank.The projectile transfers its momentum and kinetic energy to the fluid,what causes ... The Hydrodynamic Ram(HRAM)effect occurs when a high kinetic energy projectile penetrates a fluid filled area,e.g.,a liquid filled tank.The projectile transfers its momentum and kinetic energy to the fluid,what causes a sudden,local pressure rise,further expanding as primary shock wave in the fluid and developing a cavity.It is possible that the entire tank ruptures due to the loads transferred through the fluid to its surrounding structure.In the past decades,additionally to experimental investigations,HRAM has been studied using various computational approaches particularly focusing on the description of the Fluid-Structure Interaction(FSI).This article reviews the published experimental,analytical and numerical results and delivers a chronological overview since the end of World War II.Furthermore,HRAM mitigation measures are highlighted,which have been developed with the experimental,analytical and numerical toolboxes matured over the past 80 years. 展开更多
关键词 Fluid-structure-interaction(FSI) Euler-Lagrange-Coupling Hydrodynamic RAM effect HRAM
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Low-frequency signal generation in space based on high-frequency electric-antenna array and Doppler effect
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作者 CUI Anjing LI Daojing +6 位作者 WU Jiang GAO Jinghan ZHOU Kai HU Chufeng WU Shumei SHI Danni LI Guang 《Journal of Systems Engineering and Electronics》 2025年第1期24-36,共13页
Low-frequency signals have been proven valuable in the fields of target detection and geological exploration.Nevertheless,the practical implementation of these signals is hindered by large antenna diameters,limiting t... Low-frequency signals have been proven valuable in the fields of target detection and geological exploration.Nevertheless,the practical implementation of these signals is hindered by large antenna diameters,limiting their potential applications.Therefore,it is imperative to study the creation of lowfrequency signals using antennas with suitable dimensions.In contrast to conventional mechanical antenna techniques,our study generates low-frequency signals in the spatial domain utilizing the principle of the Doppler effect.We also defines the antenna array architecture,the timing sequency,and the radiating element signal waveform,and provides experimental prototypes including 8/64 antennas based on earlier research.In the conducted experiments,121 MHz,40 MHz,and 10 kHz composite signals are generated by 156 MHz radiating element signals.The composite signal spectrum matches the simulations,proving our low-frequency signal generating method works.This holds significant implications for research on generating low-frequency signals with small-sized antennas. 展开更多
关键词 frequency conversion array signal processing experimental verification Doppler effect
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Three-dimensional stability of two-step slope with crack considering temperature effect on unsaturated soil
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作者 SHAN Jun-tao WU Yi-min YANG Xiao-li 《Journal of Central South University》 2025年第3期1060-1079,共20页
In existing studies, most slope stability analyses concentrate on conditions with constant temperature, assuming the slope is intact, and employ the Mohr-Coulomb (M-C) failure criterion for saturated soil to character... In existing studies, most slope stability analyses concentrate on conditions with constant temperature, assuming the slope is intact, and employ the Mohr-Coulomb (M-C) failure criterion for saturated soil to characterize the strength of the backfill. However, the actual working temperature of slopes varies, and natural phenomena such as rainfall and groundwater infiltration commonly result in unsaturated soil conditions, with cracks typically present in cohesive slopes. This study introduces a novel approach for assessing the stability of unsaturated soil stepped slopes under varying temperatures, incorporating the effects of open and vertical cracks. Utilizing the kinematic approach and gravity increase method, we developed a three-dimensional (3D) rotational wedge failure mechanism to simulate slope collapse, enhancing the traditional two-dimensional analyses. We integrated temperature-dependent functions and nonlinear shear strength equations to evaluate the impact of temperature on four typical unsaturated soil types. A particle swarm optimization algorithm was employed to calculate the safety factor, ensuring our method’s accuracy by comparing it with existing studies. The results indicate that considering 3D effects yields a higher safety factor, while cracks reduce slope stability. Each unsaturated soil exhibits a distinctive temperature response curve, highlighting the importance of understanding soil types in the design phase. 展开更多
关键词 3D two-step slope cracks temperature effects UNSATURATION limit analysis
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Agricultural Carbon Emissions in Henan Province:Influence Mechanism,Regional Differences and Spatial Effects
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作者 Hu Jingna He Puming Cui Weiwei 《Journal of Northeast Agricultural University(English Edition)》 2025年第1期45-58,共14页
Exploring the effective and efficient path of agricultural carbon emission reduction in Henan Province is of great significance to optimizing the strategic layout of China's agricultural emission reduction and car... Exploring the effective and efficient path of agricultural carbon emission reduction in Henan Province is of great significance to optimizing the strategic layout of China's agricultural emission reduction and carbon sequestration.Accordingly,the agricultural carbon emissions of each county were measured scientifically and then the spatial measurement model was utilized to clarify the spatial and temporal evolution trend and spatial effect mechanism of agricultural carbon emissions based on the county data of Henan Province from 2010 to 2020.The results showed that:(1)in 2020,the total agricultural carbon emissions were 134.7274 million tons,with the high distribution in the southeast and low distribution in the northwest;(2)the spatial dependence of agricultural carbon emissions showed a four-stage trend of fluctuating down-continuing up-plummeting-fluctuating up again,and the spatial heterogeneity was dominated by low-low agglomeration,followed by high-low agglomeration;(3)there was an inverted U curve relationship between the level of agricultural economic development and agricultural carbon emissions.The increase in the level of agricultural mechanization and urbanization rate significantly reduced agricultural carbon emissions.The opposite was true for the financial support for agriculture,the income level of rural residents and the structure of the agricultural industry;(4)in terms of spatial spillover effects,the increase in the level of agricultural development in neighbor counties first increased and then decreased agricultural carbon emissions in Henan Province.The mechanization level and urbanization rate of neighbor counties reduced agricultural carbon emissions in Henan Province,and the opposite was true for the income level of rural residents and the scale utilization of agricultural land. 展开更多
关键词 Henan Province agricultural carbon emission spatiotemporal evolution spatial spillover effect
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Passive earth pressure of narrow backfill considering seismic-unsaturated seepage multi-field coupling effect
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作者 WANG Ze-yue LIN Hang 《Journal of Central South University》 2025年第4期1447-1467,共21页
Narrow backfill earth pressure estimation is applied to study the stability of supporting structures in the vicinity of existing buildings.Previous narrow backfill earth pressure studies have neglected seismic-unsatur... Narrow backfill earth pressure estimation is applied to study the stability of supporting structures in the vicinity of existing buildings.Previous narrow backfill earth pressure studies have neglected seismic-unsaturated seepage multi-field coupling,resulting in inaccurate estimates.To address these deficiencies,this paper proposed a calculation method for seismic passive earth pressure in unsaturated narrow backfill,based on inclined thin-layer units.It considers the interlayer shear stress,arching effect,and the multi-field coupling of seismic-unsaturated seepage.Additionally,this paper includes a parametric sensitivity analysis.The outcomes indicate that the earthquake passive ground pressure of unsaturated narrow backfill can be reduced by increasing the aspect ratio,seismic acceleration coefficient,and unsaturation parameterα.It can also be reduced by decreasing the effective interior friction angle,soil cohesion,wallearth friction angle,and vertical discharge.Furthermore,for any width soil,lowering the elevation of the action point of passive thrust can be attained by raising the effective interior friction angle,wall-earth friction angle,and unsaturation parameterα.Reducing soil cohesion,seismic acceleration coefficient,and vertical discharge can also lower the height of the application point of passive thrust. 展开更多
关键词 passive earth pressure unsaturated steady seepage arching effect narrow backfill EARTHQUAKE
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Investigation of blasting effects and mechanisms on concrete frustumsunder side-contact explosions
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作者 Gengxin Kang Yadong Zhang +1 位作者 Xingbo Xie Wenbin Gu 《Defence Technology(防务技术)》 2025年第7期113-127,共15页
Investigating the blast effects and mechanisms on typical finite-sized obstacles is essential for optimizing defense strategies and designing more robust barriers to deter terrorists and protect critical locations.Thi... Investigating the blast effects and mechanisms on typical finite-sized obstacles is essential for optimizing defense strategies and designing more robust barriers to deter terrorists and protect critical locations.This study investigates the blasting effects and underlying mechanisms of concrete frustums subjected to contact explosions,employing both numerical simulations and field tests.It focuses on the effects of top and side blasting,with particular emphasis on fracture modes,damage patterns,and fragment sizes,as well as the causes of different failure modes and the propagation of stress waves.The study also explores the blasting effects of detonating explosives at varying positions along the side and with different charge amounts.The results show that side-blasting leads to complete fragmentation,with tensile waves playing a significant role in creating extensive damage zones that propagate parallel to the frustum's outer surface,concentrating damage near the surface.During top-blasting,the upper half of the frustum undergoes fragmentation,while the lower half experiences cracking.Tensile waves propagate from the top to the bottom surface,forming larger blocks in regions with lower wave intensity.Three distinct damage zones within the frustum were identified,and a series of mathematical formulas were derived to describe the relationship between the maximum fragment size and charge mass.As the charge mass increased from 1.0 kg to 4.0 kg,the maximum fragment size decreased.Detonation at the center of the frustum's side resulted in the most severe fragmentation,with a 51.8%reduction in fragment size compared to other detonation positions.Finally,four broken modes were classified,each influenced by charge mass and explosive location.This study provides valuable insights for optimizing civil blasting operations and designing protective engineering structures. 展开更多
关键词 Concrete frustum Blasting effects Numerical simulation Contact explosion Stress wave propagation Field blast test
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孔掏槽爆破Shape-effect损伤理论分析及优化
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作者 秦辉峰 赵岩 +1 位作者 王海龙 何健辉 《工程爆破》 北大核心 2025年第2期21-31,46,共12页
为探究在不同形状的空孔下的掏槽爆破机理,基于空孔效应、应力集中效应及空间碎胀原理,建立了改进后的Shape-effect分段爆破二维损伤理论计算模型,结合模拟和试验分析爆破作用下掏槽区的围岩损伤情况,并以此给出“方空孔掏槽理论分析模... 为探究在不同形状的空孔下的掏槽爆破机理,基于空孔效应、应力集中效应及空间碎胀原理,建立了改进后的Shape-effect分段爆破二维损伤理论计算模型,结合模拟和试验分析爆破作用下掏槽区的围岩损伤情况,并以此给出“方空孔掏槽理论分析模型”优化方案。结果表明:改进后的圆空孔壁随时间变化的荷载函数γq 2 sinθ符合孔壁的实际应力,理论计算与数值模拟结果和试验的变化趋势基本一致。通过优化掏槽区的爆破效果,将圆空孔换为方孔空后,方孔空周围的岩体损伤分布均匀,破裂充分。掏槽区岩体空孔形状的改变影响周围岩体的应力分布,圆孔壁附近岩体产生“间隔环状”破坏,反射波的拉伸作用受到阻抗。方孔空掏槽爆破产生的纵波使孔壁大范围内岩体产生拉剪破坏,其在第二段应力波的影响下向内坍缩,空孔空间的利用率达63.527%。 展开更多
关键词 掏槽损伤 理论分析 数值模拟 Shape-effect模型 动态演化
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基于FSPE/UPLC-MS/MS-QTRAP快速测定奶粉中3种胃动力药物
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作者 张宪臣 张朋杰 +2 位作者 胡仪光 王勇 华洪波 《分析测试学报》 北大核心 2025年第3期438-444,共7页
基于通过式固相萃取(FSPE)结合超高效液相色谱-三重四极杆-线性离子阱质谱(UPLC-MS/MSQTRAP),建立了快速测定奶粉中3种胃动力药物(多潘立酮、莫沙必利和西沙必利)的检测方法。样品经45℃温水溶解,加入10 mL乙腈提取,高速离心后上清液经O... 基于通过式固相萃取(FSPE)结合超高效液相色谱-三重四极杆-线性离子阱质谱(UPLC-MS/MSQTRAP),建立了快速测定奶粉中3种胃动力药物(多潘立酮、莫沙必利和西沙必利)的检测方法。样品经45℃温水溶解,加入10 mL乙腈提取,高速离心后上清液经Oasis PRiME HLB固相萃取柱通过式净化去除杂质干扰。采用20 mmol/L乙酸铵水溶液和甲醇梯度洗脱,Agilent Poroshell 120 EC-C18色谱柱(100 mm×3.0 mm,2.7μm)进行分离;质谱采用电喷雾离子源正离子模式(ESI+)进行扫描,多反应监测(MRM)模式下采用内标法定量。结果显示,3种目标化合物在0.05~5.0μg/L范围内线性关系良好,相关系数(r^(2))不小于0.999 4,检出限为0.07μg/kg,定量下限为0.2μg/kg,实际空白样品的平均加标回收率为93.2%~105%,相对标准偏差(RSD)为1.3%~10%。该方法具有检测效率高、结果准确等优点,适用于奶粉中3种胃动力药物的快速检测。 展开更多
关键词 通过式固相萃取 超高效液相色谱-三重四极杆-线性离子阱质谱 奶粉 胃动力药物
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基于UPLC-Q-Exactive Orbitrap MS的绿茶提取物干预湿性年龄相关性黄斑变性的谱-效相关药效物质基础解析
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作者 王逸飞 徐海洋 +1 位作者 高燕 赵渤年 《眼科新进展》 北大核心 2025年第7期518-525,共8页
目的研究绿茶提取物指纹图谱与其干预湿性年龄相关性黄斑变性(nAMD)药效的谱效关系,挖掘药效物质基础,明确关键药效物质。方法采用超高效液相色谱-四极杆-静电轨道阱-高分辨质谱(UPLC-Q-Exactive Orbitrap MS)法建立绿茶提取物的指纹图... 目的研究绿茶提取物指纹图谱与其干预湿性年龄相关性黄斑变性(nAMD)药效的谱效关系,挖掘药效物质基础,明确关键药效物质。方法采用超高效液相色谱-四极杆-静电轨道阱-高分辨质谱(UPLC-Q-Exactive Orbitrap MS)法建立绿茶提取物的指纹图谱;结合层次聚类分析和正交偏最小二乘判别分析探讨不同产地绿茶的化学成分差异;以氯化钴建立斑马鱼nAMD模型,考察绿茶提取物干预nAMD的药效活性;利用偏最小二乘回归分析(PLSR)及灰色关联度分析法(GRA)进行谱-效相关研究,综合分析绿茶干预nAMD的药效物质基础,筛选关键药效物质。结果建立了绿茶提取物的指纹图谱检测方法,对31种化学成分进行了定性定量表征,层次聚类分析和正交偏最小二乘判别分析将50批次绿茶样品分为2类,共筛选出15个关键差异成分;绿茶提取物能够抑制氯化钴导致的斑马鱼眼底血管异常生长;PLSR及GRA分析结果显示,筛选出绿茶提取物的6个成分与药效呈显著相关性且变量投影重要性较大,分别为奎尼酸、表儿茶素、没食子儿茶素、表没食子儿茶素、没食子儿茶素没食子酸酯和表没食子儿茶素没食子酸酯。结论本研究全面表征出绿茶31种化学成分,同时基于nAMD斑马鱼模型及谱-效相关理论,应用PLSR及GRA分析法,精准解析奎尼酸、表儿茶素、没食子儿茶素、表没食子儿茶素、没食子儿茶素没食子酸酯和表没食子儿茶素没食子酸酯为绿茶干预nAMD的关键药效物质,为具有干预nAMD药效的新药研发奠定基础,也为建立完善的绿茶综合质量评价体系提供数据支撑。 展开更多
关键词 绿茶 UPLC-Q-Exactive Orbitrap MS 年龄相关性黄斑变性 谱-效相关 药效物质基础
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基于UPLC-Q-TRAP-MS分析养心安神药对酸枣仁-五味子配伍煎煮前后10个指标成分含量变化 被引量:3
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作者 吴溪 许杨 +3 位作者 吴德玲 赵想 汪孰敏 高家荣 《中华中医药学刊》 CAS 北大核心 2024年第5期190-195,共6页
目的分析养心安神药对酸枣仁-五味子配伍煎煮前后主要指标成分差异变化,并建立含量测定方法。方法采用Welch Ultimate XB-C_(18)色谱柱(2.1 mm×50 mm,5μm),以0.1%甲酸水溶液(A)-乙腈(B)为流动相,流速0.4 mL/min柱温40℃,梯度洗脱... 目的分析养心安神药对酸枣仁-五味子配伍煎煮前后主要指标成分差异变化,并建立含量测定方法。方法采用Welch Ultimate XB-C_(18)色谱柱(2.1 mm×50 mm,5μm),以0.1%甲酸水溶液(A)-乙腈(B)为流动相,流速0.4 mL/min柱温40℃,梯度洗脱;质谱采用电喷雾离子源(ESI),多反应监测离子扫描模式(MRM)。分别对该药对单煎液、单煎合并液与合煎液中主要指标成分酸枣仁皂苷A、斯皮诺素、五味子醇甲、五味子酯甲、五味子甲素、五味子乙素、芦丁、槲皮素、山柰酚、山柰酚-3-O-云香糖苷进行含量测定,并分析药对配伍前后主要指标成分的含量变化差异。结果以上10种成分在一定浓度范围内均呈现良好的线性关系;精密度、重复性和稳定性RSD均良好;平均加样回收率在95.0%~102.1%,RSD为0.03%~3.7%。本次实验结果与前期试验认为酸枣仁与五味子在合煎后,主要指标成分降低保持一致性。结论多指标成分同时测定为该药对配伍质量全面控制提供新的方法并为其药效物质基础的深入研究提供依据。 展开更多
关键词 酸枣仁-五味子药对 UPLC-Q-trap-MS 含量测定
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基于ISSR和TRAP分子标记的东北地区栽培黑木耳遗传多样性研究 被引量:1
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作者 焦枥禾 张丕奇 +3 位作者 王凤利 张秀丰 岳欣 戴肖东 《种子》 北大核心 2024年第5期112-118,共7页
为探究东北地区黑木耳栽培菌株的遗传多样性及亲缘关系,采用ISSR和TRAP分子标记对50株栽培黑木耳菌株进行遗传多样性分析。利用22条高多态性、高分辨率的ISSR和TRAP分子标记引物,对栽培黑木耳进行了DNA扩增。结果表明,黑木耳ISSR和TRAP... 为探究东北地区黑木耳栽培菌株的遗传多样性及亲缘关系,采用ISSR和TRAP分子标记对50株栽培黑木耳菌株进行遗传多样性分析。利用22条高多态性、高分辨率的ISSR和TRAP分子标记引物,对栽培黑木耳进行了DNA扩增。结果表明,黑木耳ISSR和TRAP标记谱带多态性较高,分别占89.58%和84.71%,遗传相似系数为0.53~1.00;在ISSR标记的聚类图中相似系数大于0.96的菌株占44.0%,TRAP标记的聚类图中相似系数大于0.96的菌株占54.0%;STRUCTURE聚类结果显示,50株菌株可分为四大类;遗传多样性分析结果表明,东北地区黑木耳栽培菌株的遗传多样性主要来源于群体间,黑木耳栽培菌株的遗传多样性欠丰富,生产菌种资源的同质化较为突出。 展开更多
关键词 黑木耳 遗传多样性 分子标记 ISSR trap
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UPLC-Orbitrap-MS/MS研究葶苈子化学成分及其质谱裂解规律 被引量:2
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作者 田晓 窦旸 +3 位作者 罗群 张燕燕 李书沐 汪福意 《质谱学报》 EI CAS CSCD 北大核心 2024年第6期773-784,I0002,共13页
本研究建立了超高效液相色谱-静电场轨道离子阱-串联质谱(UPLC-Orbitrap-MS/MS)法鉴定葶苈子化学成分。将葶苈子的甲醇-水溶液(70:30,V/V)提取液经ACQUITY UPLC BEH C18色谱柱(100 mm×2.1 mm×1.7μm)分离后,导入Orbitrap高分... 本研究建立了超高效液相色谱-静电场轨道离子阱-串联质谱(UPLC-Orbitrap-MS/MS)法鉴定葶苈子化学成分。将葶苈子的甲醇-水溶液(70:30,V/V)提取液经ACQUITY UPLC BEH C18色谱柱(100 mm×2.1 mm×1.7μm)分离后,导入Orbitrap高分辨质谱仪,在电喷雾正、负离子模式下,采用全扫描-数据依赖型(data dependent)二级质谱扫描(Full MS/dd-MS^(2))模式采集数据,并使用Compound Discoverer(CD)软件对数据进行色谱峰对齐和提取。随后,将母离子和碎片离子的精确质量数导入CD软件与各数据库进行匹配,归纳各类化合物的质谱裂解规律。结果表明,在南葶苈子1(DS1)提取液中鉴定到39种化合物,包括生物碱类、黄酮类、强心苷类、酰胺类、有机酸类、氨基酸类等。采用该方法进一步鉴定南葶苈子2(DS2)和北葶苈子(LA),DS2中鉴定到37种化合物,其中10种为DS1中未鉴定到的;LA中鉴定到42种化合物,其中7种在DS1和DS2中均未鉴定到。本研究可为探讨不同来源葶苈子的药理学作用机制和葶苈子的临床应用提供数据支持。 展开更多
关键词 超高效液相色谱-静电场轨道离子阱-串联质谱(UPLC-Orbitrap-MS/MS) 葶苈子 化学成分 裂解规律
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Experimental study on the size effect on the equation of state of concretes under shock loading 被引量:1
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作者 Mei Li Jian Cui +2 位作者 Yanchao Shi Baijian Tang Xin Chen 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第3期160-167,共8页
Adopting the classical theory of hydrocodes,the constitutive relations of concretes are separated into an equation of state(EoS)which describes the volumetric behavior of concrete material and a strength model which d... Adopting the classical theory of hydrocodes,the constitutive relations of concretes are separated into an equation of state(EoS)which describes the volumetric behavior of concrete material and a strength model which depicts the shear properties of concrete.The experiments on the EoS of concrete is always challenging due to the technical difficulties and equipment limitations,especially for the specimen size effect on the EoS.Although some researchers investigate the shock properties of concretes by fly-plate impact tests,the specimens used in their tests are usually in one size.In this paper,the fly-plate impact tests on concrete specimens with different sizes are performed to investigate the size effect on the shock properties of concrete materials.The mechanical background of the size effect on the shock properties are revealed,which is related to the lateral rarefaction effect and the deviatoric stress produced in the specimen.According to the tests results,the modified EoS considering the size effect on the shock properties of concrete are proposed,which the bulk modulus of concrete is unpredicted by up to 20% if size effects are not accounted for. 展开更多
关键词 CONCRETE Equation of state Size effect Shock wave Fly-plate impact test
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