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Numerical study of the self-pulsing of DC discharge:from corona to parallel-plate configurations
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作者 张曼琦 何锋 +8 位作者 蔡红梅 张泽端 高志良 杨铭 王若珏 张宇 李犇 王磊 欧阳吉庭 《Plasma Science and Technology》 SCIE EI CAS CSCD 2023年第12期48-56,共9页
We present here an investigation of the self-pulsing phenomenon of negative corona and parallel-plate discharge in argon within one frame of a one-dimensional fluid model in cylinder–cylinder electrode geometry.The t... We present here an investigation of the self-pulsing phenomenon of negative corona and parallel-plate discharge in argon within one frame of a one-dimensional fluid model in cylinder–cylinder electrode geometry.The transition from corona to parallel-plate discharge is obtained by changing the inner and outer radii of the electrodes.The model reproduces the self-pulsing waveform well and provides the spatiotemporal behaviors of the charged particles and electric field during the pulse.The self-pulsing shows a common feature that occurs in various configurations and that does not depend on a specific electrode structure.The self-pulsing is the transformation between a weak-current Townsend mode and a large-current normal glow mode.The behavior of the positive ions is the dominant factor in the formation of the pulse. 展开更多
关键词 self-pulsing mode transition glow discharge Townsend discharge
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Wave nature of Rosensweig instability
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作者 李柳 李德才 +2 位作者 戚志强 王璐 张志力 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第3期471-479,共9页
The explicit analytical solution of Rosensweig instability spikes'shapes obtained by Navier-Stokes(NS)equation in diverse magnetic field H vertical to the flat free surface of ferrofluids are systematically studie... The explicit analytical solution of Rosensweig instability spikes'shapes obtained by Navier-Stokes(NS)equation in diverse magnetic field H vertical to the flat free surface of ferrofluids are systematically studied experimentally and theoretically.After carefully analyzing and solving the NS equation in elliptic form,the force balanced surface equations of spikes in Rosensweig instability are expressed as cosine wave in perturbated magnetic field and hyperbolic tangent in large magnetic field,whose results both reveal the wave-like nature of Rosensweig instability.The results of hyperbolic tangent form are perfectly fitted to the experimental results in this paper,which indicates that the analytical solution is basically correct.Using the forementioned theoretical results,the total energy of the spike distribution pattern is calculated.By analyzing the energy components under different magnetic field intensities H,the hexagon-square transition of Rosensweig instability is systematically discussed and explained in an explicit way. 展开更多
关键词 FERROFLUIDS Rosensweig instability hexagon-square transition
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Theoretical analysis of the elastic Kelvin-Helmholtz instability in explosive weldings
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作者 Yuanbo Sun Jianning Gou +5 位作者 Cheng Wang Qiang Zhou Rui Liu Pengwan Chen Tonghui Yang Xiang Zhao 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第2期521-528,共8页
By considering the joint effects of the Kelvin-Helmholtz(KH) and Rayleigh-Taylor(RT) instabilities, this paper presents an interpretation of the wavy patterns that occur in explosive welding. It is assumed that the el... By considering the joint effects of the Kelvin-Helmholtz(KH) and Rayleigh-Taylor(RT) instabilities, this paper presents an interpretation of the wavy patterns that occur in explosive welding. It is assumed that the elasticity of the material at the interface effectively determines the wavelength, because explosive welding is basically a solid-state welding process. To this end, an analytical model of elastic hydrodynamic instabilities is proposed, and the most unstable mode is selected in the solid phase. Similar approaches have been widely used to study the interfacial behavior of solid metals in high-energy-density physics. By comparing the experimental and theoretical results, it is concluded that thermal softening,which significantly reduces the shear modulus, is necessary and sufficient for successful welding. The thermal softening is verified by theoretical analysis of the increase in temperature due to the impacting and sliding of the flyer and base plates, and some experimental observations are qualitatively validated.In summary, the combined effect of the KH and RT instabilities in solids determines the wavy morphology, and our theoretical results are in good qualitative agreement with experimental and numerical observations. 展开更多
关键词 Explosive welding Hydrodynamic instabilities ELASTICITY
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Transverse mode-coupling instability with longitudinal impedance
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作者 Hai-Sheng Xu Chun-Tao Lin +2 位作者 Na Wang Jing-Ye Xu Yuan Zhang 《Nuclear Science and Techniques》 SCIE EI CAS CSCD 2024年第6期40-53,共14页
Transverse mode-coupling instability(TMCI)is a dangerous transverse single-bunch instability that can lead to severe par-ticle loss.The mechanism of TMCI can be explained by the coupling of transverse coherent oscilla... Transverse mode-coupling instability(TMCI)is a dangerous transverse single-bunch instability that can lead to severe par-ticle loss.The mechanism of TMCI can be explained by the coupling of transverse coherent oscillation modes owing to the transverse short-range wakefield(i.e.,the transverse broadband impedance).Recent studies on future circular colliders,e.g.,FCC-ee,showed that the threshold of TMCI decreased significantly when both longitudinal and transverse impedances were included.We performed computations for the circular electron-positron collider(CEPC)and observed a similar phenom-enon.Systematic studies on the influence of longitudinal impedance on the TMCI threshold were conducted.We concluded that the imaginary part of the longitudinal impedance,which caused a reduction in the incoherent synchrotron tune,was the primary reason for the reduction in the TMCI threshold.Additionally,the real part of the longitudinal impedance assists in increasing the TMCI threshold. 展开更多
关键词 Transverse mode-coupling instability Longitudinal impedance
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Suppression of the Kelvin-Helmholtz instability by coating in the double-cone ignition scheme
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作者 Yuan-Kai Xie Cheng-Long Zhang +1 位作者 Yi-Zhen Cheng Ying-Jun Li 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第12期333-340,共8页
In order to address the issue of gold mixing caused by the Kelvin-Helmholtz instability(KHI)in the double-cone ignition(DCI)scheme,we investigate the growth rate of the KHI at the bi-interface of the DCI scheme after ... In order to address the issue of gold mixing caused by the Kelvin-Helmholtz instability(KHI)in the double-cone ignition(DCI)scheme,we investigate the growth rate of the KHI at the bi-interface of the DCI scheme after applying a coating.This is done by solving the hydrodynamic equations for an ideal incompressible fluid using linear theory.Ultimately,it is discovered that applying a coating with a thickness slightly above h=0.5(λ+10μm)and a density somewhat lower than that of the target layer can effectively reduce the growth rate of interfacial KHI.This work provides theoretical references for studying the bi-interface KHI in the DCI scheme. 展开更多
关键词 COATING Kelvin-Helmholtz instability double-cone ignition scheme growth rate
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High-resolution reconstruction of the ablative RT instability flowfield via convolutional neural networks
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作者 Xia Zhiyang Kuang Yuanyuan +1 位作者 Lu Yan Yang Ming 《强激光与粒子束》 CAS CSCD 北大核心 2024年第12期42-49,共8页
High-resolution flow field data has important applications in meteorology,aerospace engineering,high-energy physics and other fields.Experiments and numerical simulations are two main ways to obtain high-resolution fl... High-resolution flow field data has important applications in meteorology,aerospace engineering,high-energy physics and other fields.Experiments and numerical simulations are two main ways to obtain high-resolution flow field data,while the high experiment cost and computing resources for simulation hinder the specificanalysis of flow field evolution.With the development of deep learning technology,convolutional neural networks areused to achieve high-resolution reconstruction of the flow field.In this paper,an ordinary convolutional neuralnetwork and a multi-time-path convolutional neural network are established for the ablative Rayleigh-Taylorinstability.These two methods can reconstruct the high-resolution flow field in just a few seconds,and further greatlyenrich the application of high-resolution reconstruction technology in fluid instability.Compared with the ordinaryconvolutional neural network,the multi-time-path convolutional neural network model has smaller error and canrestore more details of the flow field.The influence of low-resolution flow field data obtained by the two poolingmethods on the convolutional neural networks model is also discussed. 展开更多
关键词 convolutional neural networks ablative Rayleigh-Taylor instability high-resolutionreconstruction multi-time-path pooling
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Parametric instability in the pure-quartic nonlinear Schrödinger equation
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作者 张云红 刘冲 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第3期316-321,共6页
We study the nonlinear stage of modulation instability(MI)in the non-intergrable pure-quartic nonlinear Schrödinger equation where the fourth-order dispersion is modulated periodically.Using the three-mode trunca... We study the nonlinear stage of modulation instability(MI)in the non-intergrable pure-quartic nonlinear Schrödinger equation where the fourth-order dispersion is modulated periodically.Using the three-mode truncation,we reveal the complex recurrence of parametric resonance(PR)breathers,where each recurrence is associated with two oscillation periods(PR period and internal oscillation period).The nonlinear stage of parametric instability admits the maximum energy exchange between the spectrum sidebands and central mode occurring outside the MI gain band. 展开更多
关键词 modulation instability parametric resonance breather three-mode truncation energy exchange
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Growth mechanism and characteristics of electron drift instability in Hall thruster with different propellant types
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作者 陈龙 阚子晨 +4 位作者 高维富 段萍 陈俊宇 檀聪琦 崔作君 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第1期511-522,共12页
The existence of a significant electron drift instability(EDI) in the Hall thruster is considered as one of the possible causes of the abnormal increase in axial electron mobility near the outlet of the channel. In re... The existence of a significant electron drift instability(EDI) in the Hall thruster is considered as one of the possible causes of the abnormal increase in axial electron mobility near the outlet of the channel. In recent years, extensive simulation research on the characteristics of EDI has been conducted, but the excitation mechanism and growth mechanism of EDI in linear stage and nonlinear stage remain unclear. In this work, a one-dimensional PIC model in the azimuthal direction of the thruster near-exit region is established to gain further insights into the mechanism of the EDI in detail, and the effects of different types of propellants on EDI characteristics are discussed. The changes in axial electron transport caused by EDI under different types of propellants and electromagnetic field strengths are also examined. The results indicate that EDI undergoes a short linear growth phase before transitioning to the nonlinear phase and finally reaching saturation through the ion Landau damping. The EDI drives a significant ion heating in the azimuthal direction through electron–ion friction before entering the quasi-steady state, which increases the axial mobility of the electrons. Using lighter atomic weight propellant can effectively suppress the oscillation amplitude of EDI, but it will increase the linear growth rate, frequency, and phase velocity of EDI. Compared with the classical mobility, the axial electron mobility under the EDI increases by three orders of magnitude, which is consistent with experimental phenomena. The change of propellant type is insufficient to significantly change the axial electron mobility. It is also found that the collisions between electrons and neutral gasescan significantly affect the axial electron mobility under the influence of EDI, and lead the strength of the electric field to increase and the strength of the magnetic field to decrease, thereby both effectively suppressing the axial transport of electrons. 展开更多
关键词 Hall thruster electron drift instability axial electron mobility particle-in-cell simulation
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Effect of external magnetic field on the instability of THz plasma waves in nanoscale graphene field-effect transistors
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作者 张丽萍 孙宗耀 +1 位作者 李佳妮 苏俊燕 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第4期683-689,共7页
The instability of plasma waves in the channel of field-effect transistors will cause the electromagnetic waves with THz frequency.Based on a self-consistent quantum hydrodynamic model,the instability of THz plasmas w... The instability of plasma waves in the channel of field-effect transistors will cause the electromagnetic waves with THz frequency.Based on a self-consistent quantum hydrodynamic model,the instability of THz plasmas waves in the channel of graphene field-effect transistors has been investigated with external magnetic field and quantum effects.We analyzed the influence of weak magnetic fields,quantum effects,device size,and temperature on the instability of plasma waves under asymmetric boundary conditions numerically.The results show that the magnetic fields,quantum effects,and the thickness of the dielectric layer between the gate and the channel can increase the radiation frequency.Additionally,we observed that increase in temperature leads to a decrease in both oscillation frequency and instability increment.The numerical results and accompanying images obtained from our simulations provide support for the above conclusions. 展开更多
关键词 graphene field-effect transistors external magnetic field radiation frequency instability increment
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Instability mechanisms of slope in open-pit coal mines:From physical and numerical modeling
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作者 Guanghe Li Zihuan Hu +5 位作者 Dong Wang Laigui Wang Yanting Wang Lichun Zhao Hongjun Jia Kun Fang 《International Journal of Mining Science and Technology》 SCIE EI CAS CSCD 2024年第11期1509-1528,共20页
The stability of open-pit mine slopes is crucial for safe and efficient mining operations.However,the presence of weak interlayers poses significant challenges in maintaining the stability of slopes.To explore the imp... The stability of open-pit mine slopes is crucial for safe and efficient mining operations.However,the presence of weak interlayers poses significant challenges in maintaining the stability of slopes.To explore the impact of the rock arching effect on slopes during excavation,understand the deformation zones and evaluation stages in such environments,and analyze the formation and characteristics of cracks,this study investigated the instability mechanism of open-pit mine slopes with weak interlayers through physical and numerical modeling.Focusing on the Zaharnur open-pit coal mine in China as a prototype,a sophisticated physical model test employing particle image velocimetry and Brillouin optical frequency domain analysis was conducted to comprehensively analyze the displacement and strain variation characteristics of open-pit mine slopes.The displacement,strain,stress redistribution,and failure processes of slopes under excavation were comprehensively analyzed through physical and numerical modeling.The results showed that the slope model exhibited a strain pattern in which the strain incrementally increased from its center toward the edges,and the landslide thrust was converted into an internal force along the arch axis and transmitted to the supports.The concept of the rock arching effect specific to soft rocks was proposed,shedding new light on an important phenomenon specific to open-pit slopes with weak interlayers.Based on its deformation characteristics,the slope could be divided into three areas:The excavation influence area,the crack area and the failure area.In addition,the ratios of the height and width of the outermost cracks to the excavation width fluctuated in the ranges of 0.36–0.49 and0.72–1.00,respectively.These findings contribute to a better understanding of the instability mechanisms in open-pit mine slopes with weak interlayers and provide valuable guidelines for safe mining practices. 展开更多
关键词 Open-pit mine slopes instability mechanisms Rock arching Particle image velocimetry Strain monitoring
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The Hyers-Ulam Stability and Hyers-Ulam Instability for Some Nonhomogeneous Ordinary Differential Equations
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作者 DENG Jing-tao 《Chinese Quarterly Journal of Mathematics》 2024年第4期420-430,共11页
In this paper,we get a necessary and sufficient condition such that a class of differential inequalities hold.Using this necessary and sufficient condition,we prove that a class of first order nonhomogeneous ordinary ... In this paper,we get a necessary and sufficient condition such that a class of differential inequalities hold.Using this necessary and sufficient condition,we prove that a class of first order nonhomogeneous ordinary differential equations have the Hyers-Ulam stability.And then,we prove that some first order nonhomogeneous ordinary differential equations and some second order nonhomogeneous ordinary differential equations do not have the Hyers-Ulam instability under some suitable conditions. 展开更多
关键词 Hyers-Ulam stability Hyers-Ulam instability Ordinary differential equations Necessary and sufficient condition
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钢混水塔爆破参数的安全校核及数值模拟验证分析
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作者 刘涛 李洪伟 +4 位作者 刘伟 梁昊 吴延梦 黄昕旭 储亚坤 《工程爆破》 北大核心 2025年第1期74-81,共8页
为实现复杂环境下38 m高配筋率钢混水塔的拆除爆破,充分考虑了水塔筒体直径小、筒壁薄、配筋率高、水塔底部结构复杂且不对称的结构特点,利用水塔原有门洞沿倒塌中心线设计对称卸荷槽、定向窗,爆破切口设计为圆心角230°、切口高度1... 为实现复杂环境下38 m高配筋率钢混水塔的拆除爆破,充分考虑了水塔筒体直径小、筒壁薄、配筋率高、水塔底部结构复杂且不对称的结构特点,利用水塔原有门洞沿倒塌中心线设计对称卸荷槽、定向窗,爆破切口设计为圆心角230°、切口高度1.5 m的正梯形切口,运用理论计算和数值模拟相结合的方法对水塔倒塌失稳进行安全校核,结果表明:通过优化的弯矩破坏准则对水塔倒塌失稳进行验算并运用ANSYS/LS-DYNA软件对水塔倒塌进行数值模拟,验证水塔爆破后在塑性角形成前不会发生下坐和后坐,确保了水塔可以顺利倒塌失稳并且定向倾倒,水塔实际倒塌过程与模拟倒塌过程一致,验证了爆破参数的安全性与数值模拟的实用性,可以为同类工程提供一定的参考。 展开更多
关键词 拆除爆破 数值模拟 高配筋率钢混水塔 倒塌失稳
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大型客机翼尖涡不稳定性及其模态特征研究综述
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作者 向阳 吴奕铭 +2 位作者 陈炫羽 程泽鹏 刘洪 《空气动力学学报》 北大核心 2025年第1期62-94,I0002,共34页
翼尖涡是客机尾涡的重要组成部分,不仅会产生诱导阻力影响飞机的经济性,同时还会带来尾迹遭遇问题进而影响到后续飞机的安全性。随着数值模拟和实验技术的提升,对翼尖涡结构特征、动力学特征、不稳定性发展、演变规律等现象和机理的认... 翼尖涡是客机尾涡的重要组成部分,不仅会产生诱导阻力影响飞机的经济性,同时还会带来尾迹遭遇问题进而影响到后续飞机的安全性。随着数值模拟和实验技术的提升,对翼尖涡结构特征、动力学特征、不稳定性发展、演变规律等现象和机理的认知不断加深,并取得了丰富的研究成果。近些年,随着不稳定性理论和模态解析方法的发展,研究者针对翼尖涡的不稳定性及其模态特征开展研究,试图揭示翼尖涡不稳定性演变的规律及机制,并期望能建立一种基于不稳定性的流动策略,从而实现对翼尖涡失稳衰减的最优化控制。本文对飞机翼尖涡不稳定性及其模态特征的研究展开综述,首先介绍翼尖涡的不稳定性特征,然后比较典型模态分析方法的基本原理,进而分析翼尖涡不稳定性及其模态结构特征,最后讨论翼尖涡不稳定性模态分析的研究现状及未来发展趋势。 展开更多
关键词 大型客机 翼尖涡 模态分解 涡不稳定性 流动控制
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自旋-轨道耦合作用下极化激元凝聚中的调制不稳定性
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作者 陈海军 《原子与分子物理学报》 CAS 北大核心 2025年第6期136-143,共8页
利用线性稳定性分析方法,对存在自旋-轨道耦合(SOS)作用的二维极化激元玻色-爱因斯坦凝聚(BEC)系统中的调制不稳定性(MI)进行了研究.分析了组分内部,组分之间以及SOC相互作用对系统调制不稳定性的影响.结果显示,当系统内部不存在SOC作用... 利用线性稳定性分析方法,对存在自旋-轨道耦合(SOS)作用的二维极化激元玻色-爱因斯坦凝聚(BEC)系统中的调制不稳定性(MI)进行了研究.分析了组分内部,组分之间以及SOC相互作用对系统调制不稳定性的影响.结果显示,当系统内部不存在SOC作用,组分之间的相互作用为0,组分内部存在排斥作用时,不会出现调制不稳定性,组分内部存在吸引作用时,会出现调制不稳定性,并且调制不稳定性区间长度随吸引作用的增强而增加;组分之间相互作用不为0时,组分之间的相互作用以平方形式出现,其正负不会对调制不稳定性产生实质性影响.存在SOC相互作用时,SOC相互作用会引起增益谱曲线的不规则振荡,破坏原来的调制不稳定性区间. 展开更多
关键词 极化激元凝聚 调制不稳定性 自旋-轨道耦合 双分量
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基于RSM–BBD的复合煤岩冲击动力学特征
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作者 解北京 栾铮 +3 位作者 李恒 武博文 李晓旭 程昌昊 《煤炭科学技术》 北大核心 2025年第2期109-123,共15页
深部煤岩体及煤岩组合承载结构的整体失稳是诱发矿井煤岩动力灾害的主要原因之一。为探究复合煤岩的动力学响应行为,首先借助?50 mm的分离式霍普金森压杆系统,对复合煤岩开展冲击加载试验,探究应变率A(50~350 s-1)、侧向围压B(4~16 MPa... 深部煤岩体及煤岩组合承载结构的整体失稳是诱发矿井煤岩动力灾害的主要原因之一。为探究复合煤岩的动力学响应行为,首先借助?50 mm的分离式霍普金森压杆系统,对复合煤岩开展冲击加载试验,探究应变率A(50~350 s-1)、侧向围压B(4~16 MPa)、来压比C(1~4)的影响;其次,借助Design Expert12软件,设计三因素–三水平的响应曲面试验方案,探究单一因素及因素交互作用对动抗压强度σ、能耗率k的影响;最后,基于叠加理论、Weibull分布等,构建叠加损伤本构模型。结果表明:(1)复合煤岩的力学特性受单因素及因素交互作用影响显著;单因素对σ、k影响:A>C>B;因素交互对σ影响:AC>AB>BC;因素交互对k影响:AB>AC>BC。(2)复合煤岩中煤组分以剪切破坏为主,宏观裂纹易发育至岩组分比例较低的区域,且三元复合煤岩的强度分布呈区域分布特征。其中,复合煤岩强度规律从小到大依次为煤组分–非交界面区域、煤组分–交界面区域、低组分–岩交界面区域、低组分–岩非交界面区域、高组分–岩交界面区域、高组分–岩非交界面区域。(3)构建的损伤本构模型可表征复合煤岩体的动力响应关系,其中理论与试验曲线拟合系数R2≥0.97。研究结果为探究采动阶段工作面的动静载叠加现象、灾害防控提供理论支撑。 展开更多
关键词 复合煤岩 响应面法 SHPB 破坏失稳 本构模型
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螺旋管式蒸汽发生器管束流体弹性不稳定性机理研究
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作者 王越 谭蔚 《原子能科学技术》 北大核心 2025年第3期607-615,共9页
螺旋管束由于其结构紧凑、传热效率高等特点广泛应用于快堆与第4代核电堆型中。为揭示螺旋管束流体弹性不稳定性,本文在验证激振模型的冲击实验基础上,利用螺旋管束激振模型系统地研究了管的相对位置、管束结构参数对螺旋管振动响应的... 螺旋管束由于其结构紧凑、传热效率高等特点广泛应用于快堆与第4代核电堆型中。为揭示螺旋管束流体弹性不稳定性,本文在验证激振模型的冲击实验基础上,利用螺旋管束激振模型系统地研究了管的相对位置、管束结构参数对螺旋管振动响应的作用机制。研究发现面外方向的振幅远大于面内方向的,相邻管层节径比对螺旋管振动响应的影响强于同层管间节径比与螺旋角。通过改变管间流速,探究了螺旋管束流体弹性不稳定性机理,提出了预测临界流速的半经验公式,并且同现有直管管束的国家标准与先前的研究成果进行了对比分析,结果为螺旋管式蒸汽发生器的设计与工程评估提供了理论基础。 展开更多
关键词 螺旋管式蒸汽发生器 管束振动 流体弹性不稳定性 临界流速半经验公式
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库岸塔柱状危岩的压裂耦合损伤-突变失稳预测
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作者 唐红梅 宋刚 +2 位作者 杨健 毛柯洁 周福川 《三峡大学学报(自然科学版)》 CAS 北大核心 2025年第1期28-36,共9页
位于三峡库区巫峡段消落带的塔柱状危岩,其底部多损伤因素的耦合作用下常呈压裂诱发座溃整体失稳模式,危岩底部耦合损伤至突变机制是研究该类库岸危岩体失稳预警的关键科学问题.以三峡库区库岸巫峡段箭穿洞塔柱状危岩体为例,将危岩体简... 位于三峡库区巫峡段消落带的塔柱状危岩,其底部多损伤因素的耦合作用下常呈压裂诱发座溃整体失稳模式,危岩底部耦合损伤至突变机制是研究该类库岸危岩体失稳预警的关键科学问题.以三峡库区库岸巫峡段箭穿洞塔柱状危岩体为例,将危岩体简化为中上部非劣化区和下部劣化区的二元地质力学模型,基于应变等价原理获得其危岩体下部劣化区的荷载效应、溶蚀效应、干湿循环弱化效应的耦合损伤本构模型和总损伤度演化方程,根据地质力学模型概化为等效弹簧模型转化为力-位移的耦合损伤本构方程;基于能量平衡原理和突变理论建立了塔柱状危岩的耦合损伤-折叠突变模型,获取了其失稳判据和临界位移的表达式.通过案例分析结果表明:该危岩体突变失稳时的系统控制变量为-0.0073,预测模型计算理论的突变起点垂向位移为42.2mm,终止点位移为60.5mm,当监测数据危岩体最大垂向累积位移为26.2mm时,小于突变起始位移时就采用及时治理措施,与危岩未失稳的状态吻合.其研究成果可为三峡库区灰岩地区库岸塔柱状压溃型危岩的监测预警与防治提供重要的理论支撑. 展开更多
关键词 库岸塔柱状危岩 压溃失稳型 耦合损伤 突变模型
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基于MPC的轮毂电机驱动车辆轨迹跟踪控制
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作者 付翔 刘毅 +1 位作者 万佳琦 刘泽轩 《汽车工程学报》 2025年第1期81-94,共14页
为解决轮毂电机驱动车辆在复杂工况下轨迹跟踪精度低、横摆稳定性差的问题,提出一种协调控制方法。通过神经网络动态辨识以车辆质心侧偏角-质心侧偏角速度相平面划分的稳定域边界,并基于边界线特征值得出失稳因子;将该因子作为目标函数... 为解决轮毂电机驱动车辆在复杂工况下轨迹跟踪精度低、横摆稳定性差的问题,提出一种协调控制方法。通过神经网络动态辨识以车辆质心侧偏角-质心侧偏角速度相平面划分的稳定域边界,并基于边界线特征值得出失稳因子;将该因子作为目标函数权重影响参数,构建轨迹跟踪MPC模型,输出前轮转角和四轮力矩控制量,同时,采用滑模控制方法防止车轮过度滑转。仿真表明,该轨迹跟踪控制策略与单目标MPC轨迹跟踪控制策略相比,在低附着路面车辆最大横向跟踪误差降低了61.7%,最大质心侧偏角降低了75.7%,车辆高速行驶时,运动状态均保持在稳定域范围内,实现了轨迹跟踪精度与车辆横摆稳定性能的综合提升。 展开更多
关键词 轮毂电机驱动车辆 轨迹跟踪 车辆稳定域辨识 失稳因子
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大肠癌KRAS/BRAF突变、微卫星不稳定及P53异常表达与肿瘤病理特征的关系
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作者 杨泽然 马杰 叶美华 《浙江临床医学》 2025年第2期172-175,共4页
目的分析大肠癌中KRAS/BRAF突变、微卫星不稳定及P53异常表达模式与肿瘤病理特征之间的关系。方法回顾性分析247例接受根治性手术的大肠癌患者的临床病理资料,探讨大肠癌KRAS/NRAS/BRAF突变、微卫星不稳定状况和P53表达模式等分子表型特... 目的分析大肠癌中KRAS/BRAF突变、微卫星不稳定及P53异常表达模式与肿瘤病理特征之间的关系。方法回顾性分析247例接受根治性手术的大肠癌患者的临床病理资料,探讨大肠癌KRAS/NRAS/BRAF突变、微卫星不稳定状况和P53表达模式等分子表型特征,并分析这些特征与肿瘤黏液分化(>5%的细胞外黏液)、淋巴转移及TNM分期等病理特征的相关性。结果在大肠癌中,伴黏液分化的肿瘤占19.0%,其KRAS、BRAF突变和/或高频微卫星不稳定性(MSI-H)等异常分子表型检出率为74.5%,显著高于经典型大肠腺癌(<5%的细胞外黏液)的39.5%(P<0.05)。伴黏液分化的大肠癌显示较高的P53野生型表达模式检出率(P<0.05)。单变量分析表明,KRAS突变(OR=1.98,95%CI:1.04~3.76,P<0.05)、BRAF突变(OR=7.17,95%CI:1.94~26.55,P<0.01)和MSI-H表型(OR=4.35,95%CI:1.58~11.99,P<0.01)显著增加了伴黏液分化大肠癌的风险。这些相关性在考虑肿瘤部位、性别和年龄的多因素分析中差异具有统计学意义。P53异常表达模式在淋巴转移组和高TNM分期组中的检出率分别为67.6%和66.7%,明显高于无淋巴结组和低TNM分期组(分别为47.5%和48.3%)(P<0.05)。多变量分析显示,P53异常表达模式显著增加左半结肠癌淋巴转移风险(OR=2.60,95%CI:1.24~5.43,P<0.05)和高TNM分期风险(OR=2.23,95%CI:1.06~4.72,P<0.05),而MSI-H表型则显著降低了这些风险(OR=0.21,95%CI:0.04~0.98,P<0.05;OR=0.18,95%CI:0.04~0.84,P<0.05)。结论伴黏液分化的大肠癌与高频KRAS、BRAF突变、MSI-H表型和P53野生型表达模式正相关;P53异常表达模式显著增加了左半结肠癌淋巴转移和高TNM分期的风险。 展开更多
关键词 黏液腺癌 大肠癌 黏液分化 KRAS BRAF 微卫星不稳定 病理学 P53 表达模式
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冲击地压扰动响应失稳理论并行计算
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作者 潘一山 王学滨 +1 位作者 郑一方 陈双印 《煤炭学报》 北大核心 2025年第1期81-91,共11页
目前,冲击地压理论研究已经完成了从定性分析到定量分析的转变。巷道围岩临界应力计算是巷道安全性评价的重要依据。鉴于冲击地压问题的极度复杂性,在理论上继续取得突破极为困难。基于理论公式的巷道围岩临界应力计算,无法考虑更复杂... 目前,冲击地压理论研究已经完成了从定性分析到定量分析的转变。巷道围岩临界应力计算是巷道安全性评价的重要依据。鉴于冲击地压问题的极度复杂性,在理论上继续取得突破极为困难。基于理论公式的巷道围岩临界应力计算,无法考虑更复杂的实际情况,例如非圆形巷道、非静水压力和复杂岩层结构。冲击地压理论和数值计算相结合具有更加广阔的应用前景,能使冲击地压理论进一步走向实际应用,这是极有价值的发展方向。这方面研究成果的成功取得依赖于数值计算技术的快速发展。研究将当今较先进的岩层运动并行计算系统StrataKing(一种自主开发的以拉格朗日元与离散元耦合方法为基础的非线性断裂力学GPU并行计算方法)与冲击地压扰动响应失稳理论相结合,首次提出了圆形巷道扰动响应失稳理论的数值模拟方法。该方法的思想是将非线性断裂力学数值分析方法中的Ⅱ型断裂能设定为中间变量,从而建立了静水压力条件下圆形巷道围岩临界应力与冲击能指数之间的关系。为了获取冲击能指数的数值解,采用了仅出现一个剪切面的理想岩样进行单轴压缩数值试验,以排除其他因素对应力-应变曲线峰后倾向于直线部分斜率的影响。对于高角度剪切破裂,提出了将非标准岩样的计算结果转换成标准岩样的结果的折算方法。折算后冲击能指数的范围为0.17~13.52,位于全国131个冲击地压矿井的调研数据之内。巷道围岩临界应力的计算结果是理论结果的0.4~2.5倍,这与针对全国20个冲击地压矿井的调研数据(临界应力的修正系数普遍大于1,甚至接近8)定性相符,从局部化破坏围岩比均匀破坏围岩的承载力高的角度进行了解释。冲击地压与局部化的关系过去有讨论,扰动响应失稳理论与局部化过去并无关系。通过局部化,扰动响应失稳理论与冲击地压之间在破坏机理上产生了密切的关联。StrataKing可为冲击地压矿井巷道安全性评价提供强大的算力支撑。 展开更多
关键词 冲击地压 定量分析 扰动响应失稳理论 冲击能指数 局部化 并行计算 临界应力
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