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Phase geometric propagation model of spherical projectile impacting thin plate based on shock wave propagation
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作者 Lvtan Chen Qiguang He +3 位作者 Chenyang Wu Ying Chen Qunyi Tang Xiaowei Chen 《Defence Technology(防务技术)》 2026年第2期14-31,共18页
Material phase-transition represents a significant phenomenon and mechanism in the context of hypervelocity protection.This study presents a thorough analysis of the phase-transition phenomena induced by shock pressur... Material phase-transition represents a significant phenomenon and mechanism in the context of hypervelocity protection.This study presents a thorough analysis of the phase-transition phenomena induced by shock pressure as the shock wave propagates initially to the rear of the projectile.The shock wave that induces a phase-transition is commonly referred to as a macroscopic phase-transition wave,whereas the interface that separates the distinct phases is referred to as macroscopic phase-boundary.The contact interface between the spherical projectile and the thin plate,characterized by its curved surface,plays a significant role in the nonlinear propagation and evolution of wave systems.The pressure distribution along the central axis of a spherical projectile is derived in accordance with the linear decay law observed for axial pressure.On this basis,a quadratic function is employed to characterize the trend of changes in wave front pressure,thereby facilitating the establishment of a model for wave front pressure distribution.Using the phase-transition pressure criterion for materials,the wave front phase evolution process is derived,and the macroscopic phase-boundary is determined.Based on the geometric propagation model(GPM)and the pressure distribution of the wave front,a phase geometric propagation model(PGPM)is proposed.The phase distribution of a spherical projectile impacting a thin plate is obtained by theoretical methods.The accuracy of the PGPM is subsequently validated through a comparison of its results with those obtained from numerical simulations. 展开更多
关键词 Hypervelocity impact Debris cloud phase-TRANSITION Pressure distribution phase distribution
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Peak current reduction in presence of RF phase modulationin the dual RF system
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作者 Jiang Bocheng Zhang Yao Tsai Cheng-Ying 《强激光与粒子束》 北大核心 2026年第1期160-165,共6页
[Background]High harmonic cavities are widely used in electron storage rings to lengthen thebunch,lower the bunch peak current,thereby reducing the IBS effect,enhancing the Touschek lifetime,as well asproviding Landau... [Background]High harmonic cavities are widely used in electron storage rings to lengthen thebunch,lower the bunch peak current,thereby reducing the IBS effect,enhancing the Touschek lifetime,as well asproviding Landau damping,which is particularly important for storage rings operating with ultra-low emittance or atlow beam energy.[Purpose]To further increase the bunch length without additional hardware costs,the phasemodulation in a dual-RF system is considered.[Methods]In this paper,turn-by-turn simulations incorporating randomsynchrotron radiation excitation are conducted,and a brief analysis is presented to explain the bunch lengtheningmechanism.[Results]Simulation results reveal that the peak current can be further reduced,thereby mitigating IBSeffects and enhancing the Touschek lifetime.Although the energy spread increases,which tends to reduce thebrightness of higher-harmonic radiation from the undulator,the brightness of the fundamental harmonic can,in fact,beimproved. 展开更多
关键词 dual high-frequency system phase modulation beam bunch stretching intra-beam scattering
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Phase noise in mmWave OTFS system:consequences and compensation
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作者 XU Fuchen QU Huiyang +2 位作者 LIU Chengxiang ZHOU Ji LIU Guanghui 《Journal of Systems Engineering and Electronics》 2025年第5期1140-1145,共6页
In this paper,we study the orthogonal time frequency space signal transmission over multi-path channel in the presence of phase noise(PHN)at both sides of millimeter wave(mmWave)communication links.The statistics char... In this paper,we study the orthogonal time frequency space signal transmission over multi-path channel in the presence of phase noise(PHN)at both sides of millimeter wave(mmWave)communication links.The statistics characteristics of the PHN-induced common phase error and inter-Doppler interference are investigated.Then,a column-shaped pilot structure is designed,and training pilots are used to realize linear-complexity PHN tracking and compensation.Numerical results demonstrate that the proposed scheme enables the signal to noise ratio loss to be restrained within 1 dB in contrast to the no PHN case. 展开更多
关键词 orthogonal time frequency space phase noise(PHN) millimeter wave(mmWave) common phase error(CPE) inter-Doppler interference
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Influencing factor of the characterization and restoration of phase aberrations resulting from atmospheric turbulence based on Principal Component Analysis
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作者 WANG Jiang-pu-zhen WANG Zhi-qiang +2 位作者 ZHANG Jing-hui QIAO Chun-hong FAN Cheng-yu 《中国光学(中英文)》 北大核心 2025年第4期899-907,共9页
Restoration of phase aberrations is crucial for addressing atmospheric turbulence in light propagation.Traditional restoration algorithms based on Zernike polynomials(ZPs)often encounter challenges related to high com... Restoration of phase aberrations is crucial for addressing atmospheric turbulence in light propagation.Traditional restoration algorithms based on Zernike polynomials(ZPs)often encounter challenges related to high computational complexity and insufficient capture of high-frequency phase aberration components,so we proposed a Principal-Component-Analysis-based method for representing phase aberrations.This paper discusses the factors influencing the accuracy of restoration,mainly including the sample space size and the sampling interval of D/r_(0),on the basis of characterizing phase aberrations by Principal Components(PCs).The experimental results show that a larger D/r_(0)sampling interval can ensure the generalization ability and robustness of the principal components in the case of a limited amount of original data,which can help to achieve high-precision deployment of the model in practical applications quickly.In the environment with relatively strong turbulence in the test set of D/r_(0)=24,the use of 34 terms of PCs can improve the corrected Strehl ratio(SR)from 0.007 to 0.1585,while the Strehl ratio of the light spot after restoration using 34 terms of ZPs is only 0.0215,demonstrating almost no correction effect.The results indicate that PCs can serve as a better alternative in representing and restoring the characteristics of atmospheric turbulence induced phase aberrations.These findings pave the way to use PCs of phase aberrations with fewer terms than traditional ZPs to achieve data dimensionality reduction,and offer a reference to accelerate and stabilize the model and deep learning based adaptive optics correction. 展开更多
关键词 phase aberration atmospheric turbulence principal component analysis Zernike polynomials
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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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An in-Pixel Histogramming TDC Based on Octonary Search and 4-Tap Phase Detection for SPAD-Based Flash LiDAR Sensor
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作者 HE Wenjie NIE Kaiming WU Haoran 《传感技术学报》 北大核心 2025年第9期1547-1558,共12页
An in-pixel histogramming time-to-digital converter(hTDC)based on octonary search and 4-tap phase detection is presented,aiming to improve frame rate while ensuring high precicion.The proposed hTDC is a 12-bit two-ste... An in-pixel histogramming time-to-digital converter(hTDC)based on octonary search and 4-tap phase detection is presented,aiming to improve frame rate while ensuring high precicion.The proposed hTDC is a 12-bit two-step converter consisting of a 6-bit coarse quantization and a 6-bit fine quantization,which supports a time resolution of 120 ps and multiphoton counting up to 2 GHz without a GHz reference frequency.The proposed hTDC is designed in 0.11μm CMOS process with an area consumption of 6900μm^(2).The data from a behavioral-level model is imported into the designed hTDC circuit for simulation verification.The post-simulation results show that the proposed hTDC achieves 0.8%depth precision in 9 m range for short-range system design specifications and 0.2%depth precision in 48 m range for long-range system design specifications.Under 30×10^(3) lux background light conditions,the proposed hTDC can be used for SPAD-based flash LiDAR sensor to achieve a frame rate to 40 fps with 200 ps resolution in 9 m range. 展开更多
关键词 LiDAR sensor histogramming time-to-digital converter hybrid time of flight octonary search 4-tap phase detection
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Effects of residual solvent dimethyl formamide on the solid phase ripening of ultrafine explosive 2,2',4,4',6,6'-hexanitrostilbene
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作者 Jincan Zhu Xinfeng Wang +5 位作者 Gang Li Bing Huang Bo Jin Yu Liu Shichun Li Haobin Zhang 《Defence Technology(防务技术)》 2025年第7期128-136,共9页
Nowadays, ultrafine explosives are widely used in military fields. Ultrafine 2,2',4,4',6,6'-hexanitrostilbene(HNS) has emerged as an optimal primer for explosion foil initiators due to its excellent therma... Nowadays, ultrafine explosives are widely used in military fields. Ultrafine 2,2',4,4',6,6'-hexanitrostilbene(HNS) has emerged as an optimal primer for explosion foil initiators due to its excellent thermal stability and high-voltage short-pulse initiation performance. However, the solid phase ripening of ultrafine HNS leads to a degradation in its impact detonation performance. Previous studies have indicated that residual dimethyl formamide(DMF), which is present in ultrafine HNS prepared using the recrystallization method, affects ultrafine HNS ripening. The mechanism of residual solvent effects on solid phase ripening of ultrafine HNS is unclear. In this work, the specific surface area(SSA) derived from small angle X-ray scattering(SAXS) was utilized for kinetic fitting analysis to explore the mechanism by which residual solvents enhance the solid phase ripening of ultrafine HNS. The results of the SSA measured by insitu SAXS under conditions of 150℃ for 40 h revealed that the sample with 0.2% residual DMF exhibited a 21.51% decrease in SSA, whereas the sample with only 0.04% residual DMF showed a decrease of 15.66%.Furthermore, the higher amounts of residual DMF accelerated the reduction in SSA with time. Kinetic fitting analysis demonstrated that reducing residual DMF would lower both the activation energy and the pre-exponential factor, consequently decreasing the rate constant of solid phase ripening. The mechanism was speculated that it primarily facilitated the Ostwald ripening(OR). Additionally, contrast variation small angle X-ray scattering(CV-SAXS) confirmed that coating of ultrafine HNS particles is an effective method for inhibiting ripening, significantly reducing both the rate and extent of ripening of ultrafine HNS. This study predicts how residual solvents impact the solid phase ripening process of ultrafine HNS and proposes strategies for enhancing the long-term stability of ultrafine explosives. 展开更多
关键词 Ultrafine HNS Residual solvent Solid phase ripening Small angle X-ray scattering
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Gram-scale synthesis of simple cubic phase black phosphorus via shock-induced phase transformation:Mechanistic insights and process-dependent phase control
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作者 Jinchao Qiao Qiang Zhou +9 位作者 Rufei Qiao Zhuwen Lyu Longhai Zhong Tianchu Wang Yan Liu Junbo Yan Fan Bai Xin Gao Pengwan Chen Peng Si 《Defence Technology(防务技术)》 2025年第11期293-308,共16页
Simple cubic black phosphorus(BP)has been recognized as a strategic material due to its exceptional structural stability under extreme conditions.In this investigation,simple cubic BP was successfully synthesized thro... Simple cubic black phosphorus(BP)has been recognized as a strategic material due to its exceptional structural stability under extreme conditions.In this investigation,simple cubic BP was successfully synthesized through shock-induced phase transformation,utilizing amorphous red phosphorus as the precursor material.The phase evolution process was systematically investigated using plane shock loading apparatus,with shock pressure and temperature parameters being precisely controlled to optimize transformation kinetics.Comprehensive phase characterization revealed the correlation between thermodynamic loading profiles and cubic BP formation efficiency.Precursor modification strategies were implemented through orthorhombic BP utilization,resulting in enhanced cubic phase yield and crystallinity.The synthesized cubic BP variants are considered promising candidates for advanced protective material systems,particularly where combinations of mechanical resilience and thermal stability are required under extreme operational conditions.This research provides critical insights into shock-induced phase transformation mechanics,while establishing foundational protocols for manufacturing non-equilibrium materials with potential applications in next-generation defensive technologies. 展开更多
关键词 Shock-induced phase transformation Orthorhombic black phosphorus Rhombohedral black phosphorus Simple cubic black phosphorus Shock-wave engineered materials Pressure-responsive polymorphs
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DOA estimation based on sparse Bayesian learning under amplitude-phase error and position error
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作者 DONG Yijia XU Yuanyuan +1 位作者 LIU Shuai JIN Ming 《Journal of Systems Engineering and Electronics》 2025年第5期1122-1131,共10页
Most of the existing direction of arrival(DOA)estimation algorithms are applied under the assumption that the array manifold is ideal.In practical engineering applications,the existence of non-ideal conditions such as... Most of the existing direction of arrival(DOA)estimation algorithms are applied under the assumption that the array manifold is ideal.In practical engineering applications,the existence of non-ideal conditions such as mutual coupling between array elements,array amplitude and phase errors,and array element position errors leads to defects in the array manifold,which makes the performance of the algorithm decline rapidly or even fail.In order to solve the problem of DOA estimation in the presence of amplitude and phase errors and array element position errors,this paper introduces the first-order Taylor expansion equivalent model of the received signal under the uniform linear array from the Bayesian point of view.In the solution,the amplitude and phase error parameters and the array element position error parameters are regarded as random variables obeying the Gaussian distribution.At the same time,the expectation-maximization algorithm is used to update the probability distribution parameters,and then the two error parameters are solved alternately to obtain more accurate DOA estimation results.Finally,the effectiveness of the proposed algorithm is verified by simulation and experiment. 展开更多
关键词 direction of arrival estimation(DOA) amplitude and phase error array element position error sparse Bayesian
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Phase error analysis and optimization for chirp transform spectrometer
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作者 RU Penglei LIU Mengwei +1 位作者 HU Baifan WANG Wen 《Journal of Systems Engineering and Electronics》 2025年第3期597-608,共12页
In the field of deep space exploration,the rapid development of terahertz spectrometer has put forward higher requirements to the back-end chirp transform spectrometer(CTS)system.In order to simultaneously meet the me... In the field of deep space exploration,the rapid development of terahertz spectrometer has put forward higher requirements to the back-end chirp transform spectrometer(CTS)system.In order to simultaneously meet the measurement requirements of wide bandwidth and high accuracy spectral lines,we built a CTS system with an analysis bandwidth of 1 GHz and a frequency resolution of 100 kHz around the surface acoustic wave(SAW)chirp filter with a bandwidth of 1 GHz.In this paper,the relationship between the CTS nonlinear phase error shift model and the basic measurement parameters is studied,and the effect of CTS phase mismatch on the pulse compression waveform is analyzed by simulation.And the expander error optimization method is proposed for the problem that the large nonlinear error of the expander leads to the unbalanced response of the CTS system and the serious distortion of the compressed pulse waveform under large bandwidth.It is verified through simulation and experiment that the method is effective for reducing the root mean square error(RMSE)of the phase of the expander from 18.75°to 6.65°,reducing the in-band standard deviation of the CTS frequency resolution index from 8.43 kHz to 4.72 kHz,solving the problem of serious distortion of the compressed pulse waveform,and improving the uneven CTS response under large bandwidth. 展开更多
关键词 chirp transform spectrometer(CTS) microwave heterodyne spectroscopy phase error compensation surface acoustic wave(SAW) wide bandwidth
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基于转捩模型Phase VI风力机气动特性数值计算 被引量:11
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作者 赵振宙 曾冠毓 +4 位作者 王同光 李涛 汪瑞欣 钱思悦 郑源 《中国电机工程学报》 EI CSCD 北大核心 2017年第16期4739-4746,共8页
采用γ-Reθt转捩和SST湍流模型,从来流风速7、10、13、15、20和25m/s六个工况,分别模拟计算Phase VI风轮的转矩、叶片表面压力系数以及表面流线,并与S?rensen计算结果、风洞试验数据进行对比。转矩对比结果表明,转捩模型计算结果与试... 采用γ-Reθt转捩和SST湍流模型,从来流风速7、10、13、15、20和25m/s六个工况,分别模拟计算Phase VI风轮的转矩、叶片表面压力系数以及表面流线,并与S?rensen计算结果、风洞试验数据进行对比。转矩对比结果表明,转捩模型计算结果与试验值吻合良好,最大误差为7.8%;SST湍流模型最大误差为24.3%;S?rensen计算最大误差为33.4%,误差主要发生在叶片失速风速区域。在大部分叶片截面,转捩模型的表面压力系数结果与试验值更加吻合。从叶片表面流线看出,转捩模型可以反映出叶片表面转捩现象,而湍流模型无法体现。 展开更多
关键词 转捩模型 phase VI风力机 旋转力矩 表面压力系数 壁面极限流线
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基于Surpac和Phase^2耦合的采空区稳定性模拟分析 被引量:46
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作者 罗周全 刘晓明 +2 位作者 吴亚斌 刘望平 张保 《辽宁工程技术大学学报(自然科学版)》 CAS 北大核心 2008年第4期485-488,共4页
为了解决数值模拟计算中复杂建模和单元剖分等前处理难度大的问题,采用三维地学模拟与数值模拟耦合的方法,研究了Surpac和Phase2耦合采空区围岩稳定性模拟。结合某矿山复杂空区群的实际情况,应用Surpac建立了矿山地学三维模型,将数据转... 为了解决数值模拟计算中复杂建模和单元剖分等前处理难度大的问题,采用三维地学模拟与数值模拟耦合的方法,研究了Surpac和Phase2耦合采空区围岩稳定性模拟。结合某矿山复杂空区群的实际情况,应用Surpac建立了矿山地学三维模型,将数据转换后导入Phase2软件构建了数值分析模型,进行了数值模拟计算,并根据模拟计算结果对采空区的围岩稳定性进行了分析。结果表明,采用数据转换方法将Surpac和Phase2两者的优势充分结合起来,为岩土工程的稳定性数值模拟研究提供了一条新的有效途径。 展开更多
关键词 SURPAC 三维地学模型 phase^2 数值模拟 空区
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基于Phase2的不同配比充填体厚度的数值模拟研究 被引量:4
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作者 黄敏 唐绍辉 +2 位作者 黄英华 吴亚斌 吕冠颖 《中国安全生产科学技术》 CAS CSCD 北大核心 2017年第7期124-131,共8页
在充填体作用机理,稳定性分析与监测,爆破地震效应,静动态特性及损伤理论等方面的研究基础上,依托安庆铜矿高阶段大直径深孔采矿法第一步骤采场的充填现状,采用Phase2软件建立了多种数值分析模型对不同灰砂比充填体厚度的充填效果进行... 在充填体作用机理,稳定性分析与监测,爆破地震效应,静动态特性及损伤理论等方面的研究基础上,依托安庆铜矿高阶段大直径深孔采矿法第一步骤采场的充填现状,采用Phase2软件建立了多种数值分析模型对不同灰砂比充填体厚度的充填效果进行数值模拟研究,并进行了多方案技术经济对比分析。研究结果表明:灰砂比为1∶4,1∶8,1∶10对应充填体厚度分别为10,24,22 m时,为最优方案。该充填体厚度可为矿山采场充填配比设计、充填管理及充填质量提供技术参考。 展开更多
关键词 phase2 高阶段大直径深孔采矿法 充填体厚度 充填体强度 数值模拟
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基于相场-流场耦合模型的Phase Lab:多相生长与形核的微观结构演化模拟
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作者 胡祖徽 况望望 +4 位作者 杨梦圆 郭盼 张辉 王音 任伟 《上海大学学报(自然科学版)》 北大核心 2025年第5期848-859,共12页
在介观尺度上建立的材料微观组织演化模拟技术,对于揭示材料组织与性能之间的关系意义重大,如今已成为材料加工以及性能研究领域的热门方向.在金属材料经历铸造、增材制造和焊接等工艺过程时,对流会对枝晶、共晶等组织的转变过程产生直... 在介观尺度上建立的材料微观组织演化模拟技术,对于揭示材料组织与性能之间的关系意义重大,如今已成为材料加工以及性能研究领域的热门方向.在金属材料经历铸造、增材制造和焊接等工艺过程时,对流会对枝晶、共晶等组织的转变过程产生直接影响.因此,在对凝固组织进行模拟时,考虑对流作用下的多相形核与生长情况至关重要.基于Phase Lab软件的凝固相场模拟功能进行拓展,构建了多序参量相场方程,并引入纳维-斯托克斯(Navier-Stokes,N-S)方程来描述流场的演化,同时将流场与相场控制方程耦合,进而实现了对对流作用下凝固组织演化过程的模拟功能.更进一步,借助随机形核理论对凝固过程中多相、多位点的自发形核过程进行描述,从而成功实现对复杂凝固过程的模拟.该模型已成功应用于合金在过冷条件下的均质形核,随后的核枝晶生长过程、两固相竞争协作生长所形成的片层状共晶组织,以及流动中固体相对运动等典型现象的模拟. 展开更多
关键词 相场 流场 数值模拟
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混合自动机的多项式phase-portrait近似 被引量:1
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作者 刘保罗 裴海龙 +1 位作者 李坚强 张胜祥 《计算机科学》 CSCD 北大核心 2008年第5期180-183,共4页
抽象近似是验证混合系统安全性的主要方法,模型转换是构造一个可判定的(或半判定的)混合自动机来近似原混合自动机。本文将线性phase-portrait近似推广到多项式phase-portrait近似,叙述了如何自动构造多项式phase-portrait近似自动机及... 抽象近似是验证混合系统安全性的主要方法,模型转换是构造一个可判定的(或半判定的)混合自动机来近似原混合自动机。本文将线性phase-portrait近似推广到多项式phase-portrait近似,叙述了如何自动构造多项式phase-portrait近似自动机及如何精化近似模型。 展开更多
关键词 混合自动机 弱时间模拟 phase-portrait近似
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Phased-MIMO雷达恒模正交波形优化设计 被引量:2
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作者 陈志坤 冯翔 +2 位作者 李风从 乔晓林 赵宜楠 《系统工程与电子技术》 EI CSCD 北大核心 2016年第6期1288-1294,共7页
由于受到发射机功率和波形能量的限制,现代雷达系统一般选择恒模波形来实现发射功率的最大化利用。针对Phased-MIMO雷达子阵单元之间的恒模正交波形优化设计问题,基于矩阵谱逼近的思想,本文提出了一种新的波形设计框架。首先假设输出信... 由于受到发射机功率和波形能量的限制,现代雷达系统一般选择恒模波形来实现发射功率的最大化利用。针对Phased-MIMO雷达子阵单元之间的恒模正交波形优化设计问题,基于矩阵谱逼近的思想,本文提出了一种新的波形设计框架。首先假设输出信干比的需求得到划分的子阵数目,根据最大信噪比准则对子阵单元进行波束形成,提高了雷达系统的抗干扰性能,其次采用迭代矩阵谱逼近算法(iterative matrix spectral approximation algorithm,IMSAA)对子阵单元之间的正交波形进行优化设计,相对于multi-CAN算法,该算法能够获得更好的相关性能,而且运算效率较高,最终实现了恒模波形的优化设计。仿真结果证明了算法的有效性。 展开更多
关键词 phased-MIMO雷达 波形设计 正交波形 恒模波形
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Phase change microcapsules in thermal Energy applications:A critical review 被引量:1
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作者 XIAO Anna YUAN Qingchun 《储能科学与技术》 CAS CSCD 2017年第4期607-622,共16页
Phase change microcapsules can carry large amounts of heat and be dispersed into other mediums either as a solid composite or as slurry fluids without changes to their appearance or fluidity. These two standout featur... Phase change microcapsules can carry large amounts of heat and be dispersed into other mediums either as a solid composite or as slurry fluids without changes to their appearance or fluidity. These two standout features make phase change microcapsules ideal for use in thermal energy applications to enhance the efficiency of energy utilisation. This review paper includes methods used for the encapsulation of phase change materials, especially the method suitable for large scale productions, the trends of phase change microcapsule development and their use in thermal energy applications in static and dynamic conditions. The effect of phase change microcapsules on convective heat transfer through addition to thermal fluids as slurries is critically reviewed. The review highlighted that so far the phase change microcapsules used mainly have polymeric shells, which has very low thermal conductivities. Their enhancement in convective heat transfer was demonstrated in locations where the phase change material experiences phase change. The phase change results in the slurries having higher apparent local specific heat capacities and thus higher local heat transfer coefficients. Out of the phase change region, no enhancement is observed from the solid microcapsule particles due to the low specific heat capacity and thermal conductivity of the phase change microcapsules compared to that of water, which is normally used as slurry media in the test. To further the research in this area, phase change microcapsules with higher specific heat capacity, higher thermal conductivity and better shape stability need to be applied. 展开更多
关键词 phase change microcapsule complex microencapsulation SLURRY phase change patterns convective heat transfer enhancement
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镧系超导体中条纹相(stripe phase)的研究评述
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作者 路庆凤 杜保立 李喜贵 《河南师范大学学报(自然科学版)》 CAS CSCD 2004年第2期38-42,共5页
镧系超导体中,当掺杂空穴浓度等于1/8时出现的超导反常抑制现象一直是超导研究方面的一个焦点.J.M.Tranquada将La2-XSrXCuO4中出现的动态二唯无公度(incommensurate)自旋关联解释为电荷自旋相互分离的条纹相之后,人们对镧系超导体的电子... 镧系超导体中,当掺杂空穴浓度等于1/8时出现的超导反常抑制现象一直是超导研究方面的一个焦点.J.M.Tranquada将La2-XSrXCuO4中出现的动态二唯无公度(incommensurate)自旋关联解释为电荷自旋相互分离的条纹相之后,人们对镧系超导体的电子-电子、电子-晶格、以及磁相互作用进行了系统的研究.但条纹相形成的驱动机制以及条纹相与超导电性的关系等基本问题仍没有得到充分的解释. 展开更多
关键词 LMCO 高温超导 STRIPE phase 1/8超导反常现象
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EFFECT OF INTERSTITIAL IMPURITIES ON THE PHASETRANSFORMATION OF Ti-Al ALLOYS
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作者 李文 支文 朴英锡 《兵工学报》 EI CAS CSCD 北大核心 2000年第1期-,共4页
应用固体与分子经验电子理论的平均晶胞和平均原子模型分析计算了间隙杂质对Ti-Al合金价电子结构和相变的影响。同时根据该理论的键能公式计算了间隙杂质影响下的键能、熔点和液相线的变化。据此解释了Ti-Al合金相变目前尚有争议的主要... 应用固体与分子经验电子理论的平均晶胞和平均原子模型分析计算了间隙杂质对Ti-Al合金价电子结构和相变的影响。同时根据该理论的键能公式计算了间隙杂质影响下的键能、熔点和液相线的变化。据此解释了Ti-Al合金相变目前尚有争议的主要实验结果。表明,间隙杂质提高了合金元素的原子杂阶,引起键结构呈严重的各向异性,阻碍了β→α相转变,导致中间成分相变的复杂性。间隙杂质也降低了熔点及高温液相线,采用近似处理由该理论可较好地计算其平均降低程度。 展开更多
关键词 TI-AL合金 相变 价电子结构 间隙杂质 EFFECT OF INTERSTITIAL IMPURITIES ON THE phase
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定性推理在矩形phase-portrait近似中的应用
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作者 刘保罗 裴海龙 李坚强 《计算机科学》 CSCD 北大核心 2008年第9期203-205,共3页
抽象近似是验证混合系统安全性的主要方法,矩形phase-portrait近似是通过构造简单的线性混合自动机来近似原混合自动机。phase-portrait近似的关键步骤是如何划分状态空间。本文采用定性推理的方法,叙述了如何根据系统动态特征来划分状... 抽象近似是验证混合系统安全性的主要方法,矩形phase-portrait近似是通过构造简单的线性混合自动机来近似原混合自动机。phase-portrait近似的关键步骤是如何划分状态空间。本文采用定性推理的方法,叙述了如何根据系统动态特征来划分状态空间及如何精化抽象模型。 展开更多
关键词 混合自动机 phase-portrait近似 李导数
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