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1992~2000年的俄罗斯经济:危机—转机—不稳定增长 被引量:2
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作者 陆南泉 《世界经济与政治》 CSSCI 北大核心 1998年第5期68-73,共6页
俄罗斯经济转轨已进入第七个年头,它对经济发展产生的影响一直是国内外关注的重要问题。本文就以下三个问题提出看法:(1)1992~1996年俄经济危机的特点与出现转轨危机的原因;(2)1997年俄经济出现转机是哪些因素造... 俄罗斯经济转轨已进入第七个年头,它对经济发展产生的影响一直是国内外关注的重要问题。本文就以下三个问题提出看法:(1)1992~1996年俄经济危机的特点与出现转轨危机的原因;(2)1997年俄经济出现转机是哪些因素造成的;(3)1998~2000年期间,制约俄经济难以步入稳定增长期。 展开更多
关键词 俄罗斯经济 危机期 转机期 不稳定增长
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宏观经济增长、不稳定性及其调节机制——基于后凯恩斯学派增长理论的批判性综述 被引量:1
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作者 李帮喜 顾珊 《学习与探索》 CSSCI 北大核心 2021年第12期121-129,F0002,共10页
当前世界各经济体普遍面临增长乏力及经济震荡等问题,如何解释这种不稳定现象的根源、实现长期相对稳定的增长是宏观领域的研究重点之一。后凯恩斯学者在批判萨伊定律的基础上,围绕哈罗德不稳定原理对此类问题进行了系统考察。本文对后... 当前世界各经济体普遍面临增长乏力及经济震荡等问题,如何解释这种不稳定现象的根源、实现长期相对稳定的增长是宏观领域的研究重点之一。后凯恩斯学者在批判萨伊定律的基础上,围绕哈罗德不稳定原理对此类问题进行了系统考察。本文对后凯恩斯学派具有代表性的三种增长理论进行了批判性综述:首先,文章梳理了三种理论关于不稳定性产生的根源以及如何调节以实现稳定等问题的观点;其次,文章从马克思主义理论的视角对三种增长理论存在的问题进行了批判,指出由于没有抓住资本积累的矛盾运动规律,仅将产生不稳定性的原因归结于流通领域的资本家行为和预期,因此三种理论均未能成功解决哈罗德不稳定性问题。本文认为,尽管后凯恩斯学派关于消除经济不稳定性的尝试是失败的,但其在需求不足、收入分配以及投资/储蓄等方面的研究仍然具有一定的启示性。 展开更多
关键词 不稳定增长 调节机制 收入分配 产能利用率 自发支出
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空燃比对燃气轮机燃烧室燃烧不稳定性影响的数值研究 被引量:11
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作者 王玮 肖俊峰 +3 位作者 高松 王峰 李晓丰 胡孟起 《燃烧科学与技术》 EI CAS CSCD 北大核心 2019年第5期439-444,共6页
针对某型燃气轮机旋流燃烧室,建立了全尺寸三维燃烧室数值模型,数值研究了空燃比对其扩散和预混燃烧稳定性的影响.结果表明,扩散燃烧模式下,保持燃烧室入口燃气总流量不变,空燃比变化对燃烧室压力脉动主频及燃烧稳定性影响较小.预混燃... 针对某型燃气轮机旋流燃烧室,建立了全尺寸三维燃烧室数值模型,数值研究了空燃比对其扩散和预混燃烧稳定性的影响.结果表明,扩散燃烧模式下,保持燃烧室入口燃气总流量不变,空燃比变化对燃烧室压力脉动主频及燃烧稳定性影响较小.预混燃烧模式下,保持燃烧室入口燃气总流量不变,调整空燃比,燃烧室压力脉动振幅相对稳定;但空燃比增大,燃烧室压力脉动主频减小,燃烧不稳定增长时间缩短,燃烧稳定性相对变差;而空燃比降低,燃烧室压力脉动主频增加,燃烧不稳定增长时间增加,燃烧稳定性相对增强. 展开更多
关键词 燃气轮机燃烧室 燃烧不稳定 空燃比 燃烧不稳定增长时间 燃烧调整
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Research on features and questions of Korean social welfare model
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作者 Xiaolu JU 《International Journal of Technology Management》 2015年第5期96-98,共3页
In the second half of the 1990s, South Korea has undergone dramatic changes called fetal movement of welfare state. However, after the foreign exchange crisis, members of the South Korean society are faced with unstab... In the second half of the 1990s, South Korea has undergone dramatic changes called fetal movement of welfare state. However, after the foreign exchange crisis, members of the South Korean society are faced with unstable employment and income instability, where the degree of risk of unemployment is higher than ever before. Deepening of globalization has a complex influence on social welfare development. Despite social welfare developing, the reasons of income inequality and more serious poverty are diverse. Developmentalism strategy since the 1960s in Korea has obvious limitations, which cannot continue to play an effective function according to changing internal and external conditions. In order to get rid of this situation, it should create a virtuous cycle of welfare and growth, and materialize the development strategy of the social welfare in the macro-economic and social development stratezv. 展开更多
关键词 SOCIAL WELFARE POVERTY
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Theoretical and simulation research of hydrodynamic instabilities in inertial-confinement fusion implosions 被引量:7
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作者 LiFeng Wang WenHua Ye +14 位作者 XianTu He JunFeng Wu ZhengFeng Fan Chuang Xue HongYu Guo WenYong Miao YongTeng Yuan JiaQin Dong Guo Jia Jing Zhang YingJun Li Jie Liu Min Wang YongKun Ding WeiYan Zhang 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2017年第5期1-35,共35页
Inertial fusion energy (IFE) has been considered a promising, nearly inexhaustible source of sustainable carbon-free power for the world's energy future. It has long been recognized that the control of hydrodynamic... Inertial fusion energy (IFE) has been considered a promising, nearly inexhaustible source of sustainable carbon-free power for the world's energy future. It has long been recognized that the control of hydrodynamic instabilities is of critical importance for ignition and high-gain in the inertial-confinement fusion (ICF) hot-spot ignition scheme. In this mini-review, we summarize the progress of theoretical and simulation research of hydrodynamic instabilities in the ICF central hot-spot implosion in our group over the past decade. In order to obtain sufficient understanding of the growth of hydrodynamic instabilities in ICF, we first decompose the problem into different stages according to the implosion physics processes. The decomposed essential physics pro- cesses that are associated with ICF implosions, such as Rayleigh-Taylor instability (RTI), Richtmyer-Meshkov instability (RMI), Kelvin-Helmholtz instability (KHI), convergent geometry effects, as well as perturbation feed-through are reviewed. Analyti- cal models in planar, cylindrical, and spherical geometries have been established to study different physical aspects, including density-gradient, interface-coupling, geometry, and convergent effects. The influence of ablation in the presence of preheating on the RTI has been extensively studied by numerical simulations. The KHI considering the ablation effect has been discussed in detail for the first time. A series of single-mode ablative RTI experiments has been performed on the Shenguang-II laser facility. The theoretical and simulation research provides us the physical insights of linear and weakly nonlinear growths, and nonlinear evolutions of the hydrodynamic instabilities in ICF implosions, which has directly supported the research of ICF ignition target design. The ICF hot-spot ignition implosion design that uses several controlling features, based on our current understanding of hydrodynamic instabilities, to address shell implosion stability, has been briefly described, several of which are novel. 展开更多
关键词 hydrodynamic instabilities inertial-confinement fusion implosions Rayleigh-Taylor instability Richtmyer-Meshkov in-stability Kelvin-Helmholtz instability convergent geometry effects perturbation feed-through
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A numerical study of shock-interface interaction and prediction of the mixing zone growth in inhomogeneous medium
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作者 Yang Wang Gang Dong 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2022年第12期33-44,共12页
The growth of mixing zone on an interface induced by Richtmyer-Meshkov(RM)instability occurs frequently in natural phenomena and in engineering applications.Usually,the medium on which the RM instability happens is in... The growth of mixing zone on an interface induced by Richtmyer-Meshkov(RM)instability occurs frequently in natural phenomena and in engineering applications.Usually,the medium on which the RM instability happens is inhomogeneous,the effect of medium inhomogeneity on the growth of the mixing zone during the RM instability is still not clear.Therefore,it is necessary to investigate the RM instability in inhomogeneous medium.Based on a high-order computational scheme,the interactions of a density interface with an incident shock wave(ISW)in inhomogeneous medium are numerically simulated by solving the compressible Navier-Stokes equations.The effect of the inhomogeneity on the interface evolution after the passage of ISW through the interface is investigated.The results show that the interface morphology develops in a distinctive "spike-spike"structure in inhomogeneous medium.Particularly,the spike structure on the bottom of the interface is due to the reverse induction of RM instability by curved ISW or reflected shock wave.With the increase of inhomogeneity,the growth rate of the mixing zone width on interface increases,and the wave patterns caused by interaction between the shock wave and interface are more complex.Compared with RM instability in homogeneous medium,the inhomogeneous distribution of the density in medium further enhances the baroclinic effect and induces larger vorticity in flow field.Therefore,the interface is stretched much more significantly under the induction of enhanced vorticity in inhomogeneous medium.Based on above analyses,a model for predicting the growth of mixing zone width on the interface after the passage of ISW is proposed,in order to provide a useful method for evaluations of perturbation growth behavior during the RM instability in inhomogeneous medium. 展开更多
关键词 RM instability Mixing zone growth Inhomogeneous medium Numerical simulation Predictive model
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Weibel Instability Growth Rate in Magnetized Plasmas with Quasi-Relativistic Distribution Function
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作者 Sayed Ahmad Hosseini Mohammad Mahdavi 《Communications in Theoretical Physics》 SCIE CAS CSCD 2016年第12期709-712,共4页
The mechanism of the Weibel instability is investigated for dense magnetized plasmas. As we know, due to the electron velocity distribution, the Coulomb collision effect of electron-ion and the relativistic properties... The mechanism of the Weibel instability is investigated for dense magnetized plasmas. As we know, due to the electron velocity distribution, the Coulomb collision effect of electron-ion and the relativistic properties play an important role in such study. In this study an analytical expression for the growth rate and the condition of restricting the Weibel instability are derived for low-frequency limit. These calculations are done for the oscillation frequency dependence on the electron cyclotron frequency. It is shown that, the relativistic properties of the particle lead to increasing the growth rate of the instability. On the other hand the collision effects and background magnetic field try to decrease the growth rate by decreasing the temperature anisotropy and restricting the particles movement. 展开更多
关键词 background Weibel instability coulomb collision growth rate quasi-Maxwellian
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