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Fracture evolution in coalbed methane reservoirs subjected to liquid nitrogen thermal shocking 被引量:4
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作者 YAN Hong TIAN Li-peng +3 位作者 FENG Rui-min Hani MITRI CHEN Jun-zhi ZHANG Bo 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第6期1846-1860,共15页
Thermal shocking effect occurs when the coalbed methane(CBM)reservoirs meet liquid nitrogen(LN2)of extremely low temperature.In this study,3D via X-ray microcomputer tomography(μCT)and scanning electron microscope(SE... Thermal shocking effect occurs when the coalbed methane(CBM)reservoirs meet liquid nitrogen(LN2)of extremely low temperature.In this study,3D via X-ray microcomputer tomography(μCT)and scanning electron microscope(SEM)are employed to visualize and quantify morphological evolution characteristics of fractures in coal after LN2 thermal shocking treatments.LN2 thermal shocking leads to a denser fracture network than its original state with coal porosity growth rate increasing up to 183.3%.The surface porosity of theμCT scanned layers inside the coal specimen is influenced by LN2 thermal shocking which rises from 18.76%to 215.11%,illustrating the deformation heterogeneity of coal after LN2 thermal shocking.The cracking effect of LN2 thermal shocking on the surface of low porosity is generally more effective than that of high surface porosity,indicating the applicability of LN2 thermal shocking on low-permeability CBM reservoir stimulation.The characteristics of SEM scanned coal matrix in the coal powder and the coal block after the LN2 thermal shocking presented a large amount of deep and shallow progressive scratch layers,fracture variation diversity(i.e.extension,propagation,connectivity,irregularity)on the surface of the coal block and these were the main reasons leading to the decrease of the uniaxial compressive strength of the coal specimen. 展开更多
关键词 liquid nitrogen thermal shocking coalbed methane micro fracture 3D via X-ray microcomputed tomography
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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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High temperature shock synthesis of Ni-N-C single-atom catalysts for efficient CO_(2) electroreduction to CO
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作者 PANG Peiqi XU Changjian +5 位作者 LI Ruizhu GAO Na DU Xianlong LI Tao WANG Jianqiang XIAO Guoping 《燃料化学学报(中英文)》 北大核心 2025年第8期1162-1172,共11页
Electrocatalytic reduction of carbon dioxide(CO_(2))to carbon monoxide(CO)is an effective strategy to achieve carbon neutrality.High selective and low-cost catalysts for the electrocatalytic reduction of CO_(2)have re... Electrocatalytic reduction of carbon dioxide(CO_(2))to carbon monoxide(CO)is an effective strategy to achieve carbon neutrality.High selective and low-cost catalysts for the electrocatalytic reduction of CO_(2)have received increasing attention.In contrast to the conventional tube furnace method,the high-temperature shock(HTS)method enables ultra-fast thermal processing,superior atomic efficiency,and a streamlined synthesis protocol,offering a simplified method for the preparation of high-performance single-atom catalysts(SACs).The reports have shown that nickel-based SACs can be synthesized quickly and conveniently using the HTS method,making their application in CO_(2)reduction reactions(CO_(2)RR)a viable and promising avenue for further exploration.In this study,the effect of heating temperature,metal loading and different nitrogen(N)sources on the catalyst morphology,coordination environment and electrocatalytic performance were investigated.Under optimal conditions,0.05Ni-DCD-C-1050 showed excellent performance in reducing CO_(2)to CO,with CO selectivity close to 100%(−0.7 to−1.0 V vs RHE)and current density as high as 130 mA/cm^(2)(−1.1 V vs RHE)in a flow cell under alkaline environment. 展开更多
关键词 CO_(2)electrocatalytic reduction high temperature shock method single atom catalysts coordination
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Damage assessment and fragility curve development for vehicle tires using shock tube experiments
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作者 Sung-Jun Park In-Gul Kim Jae-Sang Park 《Defence Technology(防务技术)》 2025年第11期59-75,共17页
This study presents a fragility curve to assess explosively induced damage to military vehicle tires based on shock tube experiments.To replicate lateral damage scenarios that may occur in real battlefield environment... This study presents a fragility curve to assess explosively induced damage to military vehicle tires based on shock tube experiments.To replicate lateral damage scenarios that may occur in real battlefield environments involving missile or bomb detonations,extreme overpressure conditions were generated using a shock tube.The influence of explosive charge mass on tire damage was quantitatively evaluated.Experimental results identified two critical failure thresholds:for loss of pressure,the threshold was 354 kPa peak overpressure and 3052 kPa·ms impulse;for rupture,the values were 485 kPa and 4237 kPa-ms,respectively.The same damage profile was reproduced through finite element analysis(FEA),verifying the reliability of the simulation.A Single Degree of Freedom(SDOF)model and Kingery-Bulmash(K-B)chart were employed to generate pressure-impulse data as a function of standoff distance.These data were applied to a finite element tire model using the BLAST ENHANCED keyword in LS-DYNA.The applied peak overpressures were identical to the experimental values with a 24%-27%difference in impulse.The simulation also captured recurring bead rim separation phenomenon,leading to internal pressure loss consistent with high-speed camera observations from the experiments.The resulting fragility curve clearly defines the threshold conditions for tire damage and provides a standardized damage assessment model applicable to various explosive charge masses and stand-off distances.The proposed model offers a quantitative basis for evaluating tire vulnerability,providing foundational reference data for defense applications.Specifically,the findings are expected to serve as a reliable source for weapon effects analysis and target vulnerability assessments involving wheeled military vehicles. 展开更多
关键词 Shock tube Vehicle tire Damage assessment Fragility curve
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The role of isolators in two-phase kerosene/air rotating detonation engines
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作者 Wenbo Cao Fang Wang +1 位作者 Chunsheng Weng Huangwei Zhang 《Defence Technology(防务技术)》 2025年第7期260-274,共15页
In this study, the three-dimensional non-premixed two-phase kerosene/air rotating detonation engines with different isolator configurations and throat area ratios are simulated by the Eulerian-Lagrangian method. The e... In this study, the three-dimensional non-premixed two-phase kerosene/air rotating detonation engines with different isolator configurations and throat area ratios are simulated by the Eulerian-Lagrangian method. The effects of the divergence, straight, and convergence isolators on the rotating detonation wave dynamics and the upstream oblique shock wave propagation mechanism are analyzed. The differences in the rotating detonation wave behaviors between ground and flight operations are clarified.The results indicate that the propagation regimes of the upstream oblique shock wave depend on the isolator configurations and operation conditions. With a divergence isolator, the airflow is accelerated throughout the isolator and divergence section, leading to a maximum Mach number(~1.8) before the normal shock. The total pressure loss reaches the largest, and the detonation pressure drops. The upstream oblique shock wave can be suppressed within the divergence section with the divergence isolator.However, for the straight and convergence isolators, the airflow in the isolator with a larger ψ_(1)(0.3 and0.4) can suffer from the disturbance of the upstream oblique shock wave. The critical incident angle is around 39° at ground operation conditions. The upstream oblique shock wave tends to be suppressed when the engine operates under flight operation conditions. The critical pressure ratio β_(cr0) is found to be able to help in distinguishing the propagation regimes of the upstream oblique shock wave. Slightly below or above the β_(cr0) can obtain different marginal propagation results. The high-speed airflow in the divergence section affects the fuel droplet penetration distance, which deteriorates the reactant mixing and the detonation area. Significant detonation velocity deficits are observed and the maximum velocity deficit reaches 26%. The results indicate the engine channel design should adopt different isolator configurations based on the purpose of total pressure loss or disturbance suppression. This study can provide useful guidance for the channel design of a more complete two-phase rotating detonation engine. 展开更多
关键词 Rotating detonation TWO-PHASE ISOLATOR Upstream oblique shock wave
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An improved efficient adaptive method for large-scale multiexplosives explosion simulations
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作者 Tao Li Cheng Wang Baojun Shi 《Defence Technology(防务技术)》 2025年第3期28-47,共20页
Shock wave caused by a sudden release of high-energy,such as explosion and blast,usually affects a significant range of areas.The utilization of a uniform fine mesh to capture sharp shock wave and to obtain precise re... Shock wave caused by a sudden release of high-energy,such as explosion and blast,usually affects a significant range of areas.The utilization of a uniform fine mesh to capture sharp shock wave and to obtain precise results is inefficient in terms of computational resource.This is particularly evident when large-scale fluid field simulations are conducted with significant differences in computational domain size.In this work,a variable-domain-size adaptive mesh enlargement(vAME)method is developed based on the proposed adaptive mesh enlargement(AME)method for modeling multi-explosives explosion problems.The vAME method reduces the division of numerous empty areas or unnecessary computational domains by adaptively suspending enlargement operation in one or two directions,rather than in all directions as in AME method.A series of numerical tests via AME and vAME with varying nonintegral enlargement ratios and different mesh numbers are simulated to verify the efficiency and order of accuracy.An estimate of speedup ratio is analyzed for further efficiency comparison.Several large-scale near-ground explosion experiments with single/multiple explosives are performed to analyze the shock wave superposition formed by the incident wave,reflected wave,and Mach wave.Additionally,the vAME method is employed to validate the accuracy,as well as to investigate the performance of the fluid field and shock wave propagation,considering explosive quantities ranging from 1 to 5 while maintaining a constant total mass.The results show a satisfactory correlation between the overpressure versus time curves for experiments and numerical simulations.The vAME method yields a competitive efficiency,increasing the computational speed to 3.0 and approximately 120,000 times in comparison to AME and the fully fine mesh method,respectively.It indicates that the vAME method reduces the computational cost with minimal impact on the results for such large-scale high-energy release problems with significant differences in computational domain size. 展开更多
关键词 Large-scale explosion Shock wave Adaptive method Fluid field simulations Efficient method
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The detonation wave propagation and the calculation methods for shock wave overpressure distribution of composite charges
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作者 Jiaxin Yu Weibing Li +2 位作者 Junbao Li Xiaoming Wang Wenbin Li 《Defence Technology(防务技术)》 2025年第6期204-220,共17页
To explore the design criteria for composite charges and reveal the intrinsic relationship between the detonation wave propagation in composite charges and the overall energy distribution of shock waves,this study ana... To explore the design criteria for composite charges and reveal the intrinsic relationship between the detonation wave propagation in composite charges and the overall energy distribution of shock waves,this study analyzes the propagation and interaction processes of detonation waves in composite charges with different structural dimensions and explosive combinations. It also investigates the spatial distribution characteristics of the resulting shock wave loads. Based on dimensional analysis theory, a theoretical analysis of the shock wave overpressure distribution in free air fields is conducted. Utilizing the derived dimensionless function relationships, the hydrocode AUTODYN is employed to investigate the effects of charge structure parameters and explosive combinations on the internal overdriven detonation phenomena and the distribution of shock wave loads. It is found that the overdriven detonation phenomenon in the inner layer of composite charges increases the strength of the axial detonation wave,thereby enhancing the intensity of the primary end wave formed upon refraction into the air, which affects the distribution characteristics of the shock wave overpressure. Research has shown that increasing the thickness ratio and detonation velocity ratio of composite charges is beneficial for exacerbating the phenomenon of overdriven detonation, improving the primary end wave intensity and axial overpressure. This gain effect gradually weakens with the propagation of shock waves. When overdriven detonation occurs inside the composite charge, the detonation pressure first increases and then decreases. The Mach reflection pressure of the composite charge with a larger aspect ratio is attenuated to a greater extent. In addition, as the aspect ratio of the composite charge increases, the shock wave energy gradually flows from the axial direction to the radial direction. Therefore, as the aspect ratio of the composite charge increases, the primary end wave intensity and axial overpressure gradually decrease. 展开更多
关键词 Composite charge Overdriven detonation Shock wave overpressure Dimensional analysis Numerical simulation
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Acoustic emission response and rupture evolution analysis of triaxial compression damage of hot dry rock under seawater fatigue dissolution
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作者 LI Cun-bao LAN Ling +1 位作者 XIE He-ping HU Jian-jun 《Journal of Central South University》 2025年第8期3035-3056,共22页
Analyzing the fatigue damage characteristics of hot dry rock(HDR)affected by seawater thermal shock cycles is required for the efficient exploitation of HDR and the conservation of freshwater resources.Mechanical and ... Analyzing the fatigue damage characteristics of hot dry rock(HDR)affected by seawater thermal shock cycles is required for the efficient exploitation of HDR and the conservation of freshwater resources.Mechanical and acoustic emission(AE)monitoring tests were conducted during the triaxial compression of HDR at different confining pressures,temperatures,and numbers of seawater thermal shocks to investigate the seawater damage of HDR.The test results indicated an increase in the cumulative AE counts with increasing temperature and number of seawater thermal shocks,and a decrease in AE counts with increasing confining pressure.The effect of the number of seawater thermal shocks was significant.The AE counts were 276% higher at 15 than at 0 seawater thermal shocks.The b-value increased with the number of thermal shocks and stabilized after 5 shocks.Most of the damage was small fractures,which reduced the rock’s damage resistance.The AE time series under HDR triaxial compression exhibited multifractal features.High energy AE events dominated the damage mechanism of HDR,indicating shear damage to the HDR.Therefore,this study can provide a reference for seawater as a heat transfer fluid in the design of geothermal energy resource extraction. 展开更多
关键词 fatigue damage hot dry rock seawater thermal shocks triaxial compression acoustic emission
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基于复数域非线性各向异性扩散滤波的裂缝检测方法 被引量:8
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作者 石战战 贺振华 +1 位作者 文晓涛 唐湘蓉 《石油地球物理勘探》 EI CSCD 北大核心 2012年第2期286-290,184,共5页
针对P-M模型易产生集块效应,边缘保持效果不理想,无法滤除边缘噪声,且P-M方程是病态的等缺点,本文提出了基于复数域非线性各向异性扩散滤波的储层裂缝检测方法。该方法通过将传统各向异性扩散方程拓展到复数域,将复数域扩散项加入Shock... 针对P-M模型易产生集块效应,边缘保持效果不理想,无法滤除边缘噪声,且P-M方程是病态的等缺点,本文提出了基于复数域非线性各向异性扩散滤波的储层裂缝检测方法。该方法通过将传统各向异性扩散方程拓展到复数域,将复数域扩散项加入Shock滤波器,克服了扩散滤波边缘保持能力差和Shock滤波器对噪声敏感的缺点,在压制噪声的同时保持了地震资料同相轴的边缘信息,从而增强了地震同相轴的横向连续性,使断点更加清晰。理论和实际资料试算结果表明,本文提出的基于复数域非线性各向异性扩散滤波方法具有较强的噪声压制能力,能够精确检测储层裂缝发育带分布特征。 展开更多
关键词 非线性 复数域 扩散滤波 Shock滤波器 裂缝检测
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高温下TATB基钝感炸药爆轰波波阵面曲率效应实验研究 被引量:7
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作者 郭刘伟 刘宇思 +3 位作者 汪斌 谷岩 郑贤旭 谭多望 《含能材料》 EI CAS CSCD 北大核心 2017年第2期138-143,共6页
为了研究高温环境对钝感炸药爆轰波波阵面曲率效应的影响,采用高速扫描照相技术及电探针测速技术获取了高温60℃环境下TATB基钝感炸药三种直径药柱爆轰波拟定态爆轰波形状及波速。结果表明,TATB基钝感炸药在高温60℃下的拟定态爆轰波波... 为了研究高温环境对钝感炸药爆轰波波阵面曲率效应的影响,采用高速扫描照相技术及电探针测速技术获取了高温60℃环境下TATB基钝感炸药三种直径药柱爆轰波拟定态爆轰波形状及波速。结果表明,TATB基钝感炸药在高温60℃下的拟定态爆轰波波速随着炸药直径基本呈现线性增长趋势,且相同直径的高温结果均低于常温结果。三种直径TATB基钝感炸药在高温60℃下的拟定态波阵面形状较常温结果更为陡峭。采用遗传算法对三种直径炸药的实验结果进行拟合计算,获得了TATB基钝感炸药高温曲率效应D_n(κ)关系参数。采用DSD(Detonation Shock Dynamics)方法对三种直径炸药的爆轰波非理想传播过程进行了模拟,计算结果与实验结果吻合较好。 展开更多
关键词 钝感炸药 曲率效应 拟定态波形 拟定态波速 DETONATION Shock Dynamics(DSD)方法
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孕中期热暴露对大鼠子代宫内发育及胎盘HSP70、Bax、Bcl-2表达的影响 被引量:3
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作者 彭永保 黄淑晖 +3 位作者 张俊明 罗勇 周群 刘淮 《南方医科大学学报》 CAS CSCD 北大核心 2017年第1期89-92,共4页
目的探讨孕中期热暴露对大鼠胎盘和子代宫内生长发育的影响。方法 24只健康清洁级SD大鼠受孕后随机分为对照组和热暴露组,每组12只。对照组孕鼠孕期全程在23±1℃的环境中饲养,热暴露组大鼠受孕后先在23±1℃的环境中饲养,妊娠... 目的探讨孕中期热暴露对大鼠胎盘和子代宫内生长发育的影响。方法 24只健康清洁级SD大鼠受孕后随机分为对照组和热暴露组,每组12只。对照组孕鼠孕期全程在23±1℃的环境中饲养,热暴露组大鼠受孕后先在23±1℃的环境中饲养,妊娠第8~13天饲养温度调高至35±1℃,妊娠第14天回至23±1℃的环境中饲养。测量孕鼠不同妊娠时段的的体质量变化,在孕末期行剖腹取胎,检测仔鼠的数量、体质量、身长、尾长、外观、活/死胎数、胎盘质量及胎盘组织HSP70、Bax、Bcl-2等蛋白表达。结果热暴露组孕鼠孕末期体质量及孕期体质量增加值均小于对照组,且差异均有统计学意义(均P<0.05);热暴露组仔鼠的体质量、身长、尾长均小于对照组,且差异均有统计学意义(均P<0.05);两组仔鼠胎盘质量的比较差异无统计学意义;热暴露组胎盘HSP70表达(HSP70/actin)和Bax/Bcl-2均高于对照组,且差异均有统计学意义(P<0.05)。结论孕中期热暴露会影响大鼠胎盘及子代宫内的生长发育,会诱发胎盘组织的热休克反应及加速胎盘组织细胞的凋亡。 展开更多
关键词 高温 大鼠 胎盘 热休克蛋白70 凋亡 heat shock protein 70
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取食不同寄主植物对绿盲蝽热激蛋白AlHSP90表达的影响 被引量:2
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作者 孙洋 盛洋 +3 位作者 柏立新 赵静 肖留斌 谭永安 《棉花学报》 CSCD 北大核心 2014年第2期153-160,共8页
绿盲蝽热激蛋白90基因AlHSP90是绿盲蝽体内重要的抗逆基因,参与绿盲蝽耐受高温、杀虫剂等胁迫反应。为了明晰绿盲蝽取食不同寄主植物后其体内抗逆基因的表达特征,本试验通过荧光定量PCR和Western杂交技术,重点分析AlHSP90基因及其蛋白... 绿盲蝽热激蛋白90基因AlHSP90是绿盲蝽体内重要的抗逆基因,参与绿盲蝽耐受高温、杀虫剂等胁迫反应。为了明晰绿盲蝽取食不同寄主植物后其体内抗逆基因的表达特征,本试验通过荧光定量PCR和Western杂交技术,重点分析AlHSP90基因及其蛋白在绿盲蝽取食不同寄主植物后的表达谱。结果表明:绿盲蝽雌、雄成虫取食Bt棉、常规棉后,AlHSP90表达量显著高于取食其他寄主植物(P<0.01);与对照四季豆相比,取食茼蒿之后AlHSP90表达量无显著变化(P>0.05)。雌成虫取食Bt棉、常规棉后,AlHSP90表达量分别比对照上升了1.77、1.74倍;而雄成虫取食Bt棉、常规棉后,AlHSP90表达量则分别比对照上升了1.98、1.94倍。取食不同寄主植物之后,AlHSP90蛋白的表达谱结果与其基因的表达谱结果高度相似。绿盲蝽雌、雄成虫取食Bt棉、常规棉后,AlHSP90蛋白表达量显著高于取食其他寄主植物(P<0.01);而取食茼蒿之后,AlHSP90蛋白表达量无显著变化(P>0.05)。由此可见,AlHSP90基因是绿盲蝽适应棉花取食过程中重要的抗逆基因,并在绿盲蝽寄主转换过程中起到重要作用。 展开更多
关键词 绿盲蝽 热激蛋白90 表达谱分析 寄主 棉花 heat shock protein 90
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多正则化混合约束的模糊图像盲复原方法 被引量:11
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作者 唐述 谢显中 《电子与信息学报》 EI CSCD 北大核心 2015年第4期770-776,共7页
图像复原是一个长期的且极具挑战性的逆问题。为了实现模糊图像的盲复原,该文提出一种多正则化混合约束的模糊图像盲复原方法。首先,运用一种图像的局部结构提取策略(Local Structure Extraction Scheme,LSES)将图像中的大尺度图像边缘... 图像复原是一个长期的且极具挑战性的逆问题。为了实现模糊图像的盲复原,该文提出一种多正则化混合约束的模糊图像盲复原方法。首先,运用一种图像的局部结构提取策略(Local Structure Extraction Scheme,LSES)将图像中的大尺度图像边缘准确地提取出来。然后,在模糊核(Blur Kernel,BK)的估计阶段,将提取的大尺度图像边缘与前期研究中所提出的一种结合稀疏性和平滑特性的双重正则化约束模型相结合,实现模糊核更加准确的估计。在图像的复原阶段,为了得到高质量的复原图像,提出一种结合全变差(Total Variation,TV)模型和Shock滤波器不变特性的多正则化约束模型,从而实现模糊图像的清晰化复原。最后,通过半二次性的变量分裂策略对提出的模型进行最优化求解,能够在准确地估计出BK的同时得到高质量的复原图像。在人造的模糊图像和真实的模糊图像中进行了大量的实验,证明了所提方法的有效性,且与近几年的一些极具代表性的模糊图像盲复原方法相比,不仅主观视觉效果得到了显著的增强,而且客观评价指标也得到了明显的改进。 展开更多
关键词 图像盲复原 多正则化混合约束 局部结构提取策略 全变差(TV)模型 Shock滤波器不变特性
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实现自适应边缘增强的P-M模型 被引量:2
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作者 崔文超 邓小炼 《计算机工程与应用》 CSCD 北大核心 2010年第32期180-181,共2页
P-M模型利用扩散偏微分方程进行图像平滑,通过随梯度自适应变化的扩散系数实现去除噪声的同时保护图像边缘特征,为进一步提高图像视觉效果,希望在图像边缘附近进行逆扩散以增强边缘特征,为此提出了实现自适应边缘增强的P-M模型。该改进... P-M模型利用扩散偏微分方程进行图像平滑,通过随梯度自适应变化的扩散系数实现去除噪声的同时保护图像边缘特征,为进一步提高图像视觉效果,希望在图像边缘附近进行逆扩散以增强边缘特征,为此提出了实现自适应边缘增强的P-M模型。该改进模型中的边缘增强作用基于shock滤波器逆扩散方程,通过设置随梯度自适应变化的逆扩散系数而实现。实验结果表明,相比经典P-M模型,改进模型能使去噪后的图像有更好的主观视觉效果,同时峰值信噪比也更高。 展开更多
关键词 图像去噪 P-M模型 shock滤波器 自适应边缘增强
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一种权重的高阶扩散图像盲复原方法 被引量:1
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作者 陈曦 《科学技术与工程》 北大核心 2014年第17期78-82,共5页
为了实现对模糊噪声图像的清晰化盲复原,提出了一种权重的高阶扩散图像盲复原方法。首先,在模糊核的估计阶段,运用一种各向异性扩散的图像结构提取策略和shock滤波器将图像中的强边缘准确地提取出来,并利用提取的图像强边缘实现对... 为了实现对模糊噪声图像的清晰化盲复原,提出了一种权重的高阶扩散图像盲复原方法。首先,在模糊核的估计阶段,运用一种各向异性扩散的图像结构提取策略和shock滤波器将图像中的强边缘准确地提取出来,并利用提取的图像强边缘实现对模糊核的准确估计;然后,在图像的复原阶段,利用高阶扩散模型和权重平衡参数,针对复原图像,提出了一种权重的高阶正则化约束来实现图像的清晰化复原;最后,运用了一种分裂的布雷格曼(splitBregman,SB)最优化迭代策略对提出的方法进行最优化求解。实验结果表明,较近几年的一些具有代表性的图像盲复原方法相比,不仅主观的视觉效果得到了较为明显的改进,而且客观的峰值信噪比也增加了1.0~2.7dB。 展开更多
关键词 图像盲复原 高阶扩散 各向异性扩散 shock滤波器 分裂的布雷格曼
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HSP受体与肿瘤免疫应答 被引量:2
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作者 邵柏棕 张意 《中国肿瘤生物治疗杂志》 CAS CSCD 北大核心 2011年第5期565-568,共4页
热激蛋白(heat shock proteins,HSP,曾称热休克蛋白)是一类广泛存在于原核、真核生物细胞内的热应激蛋白质,和HSP受体结合发挥应激、抗感染、抗肿瘤作用。与肿瘤免疫相关的HSP受体主要包括TLR2/4、CD91、SR、CCR5等。TLR2/4一方面可与C... 热激蛋白(heat shock proteins,HSP,曾称热休克蛋白)是一类广泛存在于原核、真核生物细胞内的热应激蛋白质,和HSP受体结合发挥应激、抗感染、抗肿瘤作用。与肿瘤免疫相关的HSP受体主要包括TLR2/4、CD91、SR、CCR5等。TLR2/4一方面可与CD14形成受体复合物结合HSP,促进树突状细胞(DC)和免疫效应细胞聚集,激活抗肿瘤免疫应答;另一方面也可在肿瘤细胞表面高表达,促进肿瘤生长分化。CD91能够发挥肿瘤抗原提呈作用,作为信号性受体启动抗肿瘤免疫应答;但表达于肿瘤细胞上的CD91往往会促进肿瘤的迁移和侵袭。SR参与内源性抗原识别和交叉提呈,可以识别肿瘤细胞,进而激活大量CD8+T细胞发挥抗肿瘤作用。CCR5参与致癌机制,是多种肿瘤发生、发展和预后判断的新型生物学标志。随着研究的深入HSP受体有望成为未来肿瘤防治的新突破口。 展开更多
关键词 热激蛋白(heat shock proteins HSP) 受体 肿瘤免疫 抗原提呈
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基于稀疏表示的单帧运动图像盲复原 被引量:1
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作者 李信一 刘宁钟 王林宁 《计算机应用研究》 CSCD 北大核心 2013年第4期1212-1215,共4页
提出一种基于稀疏表示的单帧运动盲复原方法,它充分利用自然图像中存在的各种先验知识进行求解。该方法分为模糊核估计和图像修复两个阶段。在估计模糊核时,它运用shock滤波器从模糊图像中预测出清晰边缘,以此指导全局图像的复原,并运... 提出一种基于稀疏表示的单帧运动盲复原方法,它充分利用自然图像中存在的各种先验知识进行求解。该方法分为模糊核估计和图像修复两个阶段。在估计模糊核时,它运用shock滤波器从模糊图像中预测出清晰边缘,以此指导全局图像的复原,并运用多尺度策略来解决大模糊核问题。在图像修复阶段,运用稀疏表示理论对复原图像进行降噪和重建,最终提高图像复原质量。实验结果表明,在不同噪声和模糊核条件下,该算法能有效消除运动模糊。 展开更多
关键词 盲目反卷积 运动模糊 稀疏表示 单帧图像 shock滤波器 多尺度
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Modeling on the shock wave in spheres hypervelocity impact on flat plates 被引量:14
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作者 Ken Wen Xiao-Wei Chen De-Ning Di 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2019年第4期457-466,共10页
In hypervelocity impacts of projectiles into thin flat targets,shock initiation and interaction dominate the responses of projectiles and targets,and especially dominate the features of the debris cloud.To estimate th... In hypervelocity impacts of projectiles into thin flat targets,shock initiation and interaction dominate the responses of projectiles and targets,and especially dominate the features of the debris cloud.To estimate the geometric features of the wave front during the first complete propagation in the sphericalprojectile,the Geometric Propagation Model(GPM)is built in this paper to describe the geometry of the shock wave front,which proposes an ellipse contour as a function of time and equivalent speed.The GPM identifies the geometric features of the wave front as a function of time and impact velocity successfully.Combined with the GPM and SPH simulation,the shock pressure distribution and attenuation in the spherical-projectile have been obtained.Meanwhile,the attenuation of shock pressure and speed are presented as a function of impact velocity,respectively,and a method for obtaining the equivalent speed of the shock wave is proposed by the GPM.The GPM may be applicable to hypervelocity events involving any monolithic materials as long as the equivalent speed could be supplied from numerical simulation.The GPM proposed in this paper and the corresponding shock wave analysis provide a new insight into the processes of the quantitative analysis of the initiation of the debris cloud. 展开更多
关键词 HYPERVELOCITY impact Shock wave NUMERICAL simulation DEBRIS CLOUD formation
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Shock wave and bubble characteristics of underwater array explosion of charges 被引量:14
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作者 Hong-Wei Hu Pu Song +2 位作者 Shuang-feng Guo Hai-yun Feng Dao-kui Li 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2022年第8期1445-1453,共9页
In this study, we focused on the effect of the underwater explosion parameters of multi-point array explosion. The shock wave and bubble parameters of aggregate charge, two charges, and four charges were measured thro... In this study, we focused on the effect of the underwater explosion parameters of multi-point array explosion. The shock wave and bubble parameters of aggregate charge, two charges, and four charges were measured through an underwater explosion test, and their influence on the explosion power field of charge quantity and array distance was analyzed. Results show that the multi-shock wave collision of array explosion can be approximated to a linear superposition, and the interaction of delayed shock wave can be deemed as the increase of the shock wave baseline. Shock wave focusing and delayed superposition increase the shock wave peak pressure. Compared with the aggregate charge, the greater the number of array explosion points is, the higher the impulse and the gain of the bubble peak pressure are. At the same array distance, the smaller the charge quantity is, the higher the bubble impulse will be. At the same charge quantity, the smaller the array distance is, the higher the bubble impulse will be. The bubble period decreases gradually with the increase of the charge quantity, but the test orientation has little effect on the bubble period. 展开更多
关键词 Explosion mechanics Underwater explosion Array explosion Shock waveBubble
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Damage assessment of the target area of the island/reef under the attack of missile warhead 被引量:12
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作者 Cheng-lin Zhai Xiao-wei Chen 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2020年第1期18-28,共11页
Under the background of vigorously developing facilities of island/reef in the world,the economic value and strategic significance of the island/reef have become increasingly important.Unfortunately,they may easily be... Under the background of vigorously developing facilities of island/reef in the world,the economic value and strategic significance of the island/reef have become increasingly important.Unfortunately,they may easily become the attacking target of missiles in the war time.Therefore,aiming at the damage quantification of the targets in the island/reef under the missile attacking,a macroscopic damage assessment model for the target area is proposed in this paper.The model focuses on the construction of the assessment model framework.Firstly,the analytic hierarchy process and the grey relational analysis are applied to measure the importance of each target in the region through four indicators of the target hazard,striking urgency,damage advantage and mission relevance,respectively.Secondly,based on the damage mechanism of shock wave and fragments to target,the corresponding damage model is established,and the damage grade of each target in the evaluated area is obtained according to the damage criteria and grading standard.Finally,the model obtains the overall damage grade of the target area by employing the fuzzy comprehensive evaluation method,with synthesizing the importance and the damage grade of each target.Through the verification of an example,it demonstrates the certain feasibility of the model and provides a certain basis and reference for the subsequent research. 展开更多
关键词 Island/reef facilities Shock wave FRAGMENT DAMAGE assessment Fuzzy COMPREHENSIVE evaluation method
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