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数量与价格调控对企业融资约束结构性传导的差异研究
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作者 杜伟岸 张小斯 《财会通讯(下)》 北大核心 2018年第4期118-124,共7页
本文采用门限回归模型分别考察了数量与价格工具对不同规模企业内生性的差异融资约束效应,并运用多层线性模型检验不同规模企业的相关特征对两种政策工具结构性传导的不同影响,实证发现:价格中介的传导结构性小于数量中介,且传导力度更... 本文采用门限回归模型分别考察了数量与价格工具对不同规模企业内生性的差异融资约束效应,并运用多层线性模型检验不同规模企业的相关特征对两种政策工具结构性传导的不同影响,实证发现:价格中介的传导结构性小于数量中介,且传导力度更大;数量调控效应具有单调性特征,企业规模越小,可抵押资产越不足,受数量调控影响越大;而价格调控则非单调,整体上大企业相对更充足的可抵押资产、更高的杠杆率及更长的债务期限使其受利率调控影响更大,但债务特征的影响呈现不均匀性,部分大企业利率敏感性不强。 展开更多
关键词 数量调控工具 价格调控工具 融资约束 结构性传导效应
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外部冲击对PPI指数的结构性传导——基于FAVAR模型的全视角分析 被引量:15
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作者 尹力博 韩立岩 《数量经济技术经济研究》 CSSCI 北大核心 2012年第12期66-81,共16页
本文基于FAVAR模型全视角分析了外部冲击对PPI指数的结构性传导,并考察了国内宏观经济政策对外部冲击的抵御效果。结果表明,外部冲击对中国PPI指数影响显著,且伴随着全球化的深入进一步加剧;国际大宗商品价格冲击是首要因素,国际流动性... 本文基于FAVAR模型全视角分析了外部冲击对PPI指数的结构性传导,并考察了国内宏观经济政策对外部冲击的抵御效果。结果表明,外部冲击对中国PPI指数影响显著,且伴随着全球化的深入进一步加剧;国际大宗商品价格冲击是首要因素,国际流动性冲击和外需拉动冲击次之;外部冲击效应沿价格链递减明显,对原料、加工和食品类PPI指数影响较大,对其他类PPI指数影响较小。国内宏观经济政策不能有效抵御外部冲击。 展开更多
关键词 外部冲击 结构性传导 PPI指数 FAVAR模型
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后危机时代外部冲击对我国工业品价格指数的动态传导及结构特征分析 被引量:1
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作者 高川 黄健柏 《财经理论与实践》 CSSCI 北大核心 2020年第3期124-131,共8页
基于SVAR模型,考量次贷危机前后外部冲击对工业品价格指数的动态影响及结构性传导。结果表明:国际金融危机爆发以来,外部冲击对我国工业品价格指数的影响呈现增强趋势,并且国际大宗商品价格冲击是最重要因素;在结构特征上,外部冲击效应... 基于SVAR模型,考量次贷危机前后外部冲击对工业品价格指数的动态影响及结构性传导。结果表明:国际金融危机爆发以来,外部冲击对我国工业品价格指数的影响呈现增强趋势,并且国际大宗商品价格冲击是最重要因素;在结构特征上,外部冲击效应具有不完全性,对生产资料PPI的影响较大,对生活资料PPI的影响较小,显示外部冲击效应的传导具有不完全性,黏滞在生产流通领域不能顺利传导至消费领域。 展开更多
关键词 外部冲击 结构性传导 工业品价格指数 SVAR模型
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俄乌冲突下天然气贸易网络的结构性风险分析及对中国的启示 被引量:7
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作者 崔巍 康立成 唐丽敏 《价格月刊》 北大核心 2022年第8期37-45,共9页
通过对俄乌冲突下天然气贸易网络的结构性风险传导过程进行数值模拟,据此构建天然气贸易网络结构性风险分析指标体系,对俄乌冲突下的天然气贸易网络结构性风险进行实证分析。结果表明:俄乌冲突下,中国的天然气贸易不会受到直接负面影响... 通过对俄乌冲突下天然气贸易网络的结构性风险传导过程进行数值模拟,据此构建天然气贸易网络结构性风险分析指标体系,对俄乌冲突下的天然气贸易网络结构性风险进行实证分析。结果表明:俄乌冲突下,中国的天然气贸易不会受到直接负面影响,将有35个贸易国存在天然气贸易直接结构性风险,欧洲的贸易国占多数,其中斯洛伐克的天然气贸易直接结构性风险最高,冰岛与芬兰次之;天然气进口过度依赖俄罗斯、多元性低和贸易灵活度低会造成较高的天然气贸易直接结构性风险;不考虑其他条件,天然气贸易网络结构破裂会使得天然气市场价格上涨0.001160%~0.003672%。根据研究结论,提出中国应顺势加强中俄天然气合作、拓展天然气对外贸易多样化、提高天然气贸易的灵活性和扩大战略天然气储备等相应启示。 展开更多
关键词 俄乌冲突 天然气贸易网络 结构性风险传导 评估
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个体医疗纠纷向群体性事件升级过程分析及干预模型建立 被引量:1
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作者 刘宗锦 方锐 沈江 《现代预防医学》 CAS 北大核心 2008年第16期3097-3101,共5页
目前,医疗纠纷愈演愈烈,随着非利益相关者的参与,个体医疗纠纷通过结构性传导迅速升级为群体性事件,严重影响了社会稳定,直接引发政府公关危机。本文通过分析此过程中各时期引起纠纷升级的原因,根据不同时期的特点建立干预模型。此模型... 目前,医疗纠纷愈演愈烈,随着非利益相关者的参与,个体医疗纠纷通过结构性传导迅速升级为群体性事件,严重影响了社会稳定,直接引发政府公关危机。本文通过分析此过程中各时期引起纠纷升级的原因,根据不同时期的特点建立干预模型。此模型可以更好地规范医疗纠纷的处理过程,各部门通力合作,有效控制事件的升级,降低群体性事件对社会造成严重危害的可能性,从而更好地维护安定团结。 展开更多
关键词 医疗纠纷 群体性事件 结构性传导 干预模型
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Microstructure and thermal conductivity of carbon/carbon composites made with different kinds of carbon fibers 被引量:2
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作者 陈洁 龙莹 +1 位作者 熊翔 肖鹏 《Journal of Central South University》 SCIE EI CAS 2012年第7期1780-1784,共5页
The microstructure and surface state of three kinds of polyacrylonitrile-based carbon fibers (T700, T300 and M40) before and after high temperature treatment were investigated. Also, the pyrocarbon and thermal condu... The microstructure and surface state of three kinds of polyacrylonitrile-based carbon fibers (T700, T300 and M40) before and after high temperature treatment were investigated. Also, the pyrocarbon and thermal conductivity of carbon/carbon composites with different carbon fibers as preform were studied. The results show that M40 carbon fiber has the largest crystallite size and the least d002, T300 follows, and TT00 the third. With the increase of heat treatment temperature, the surface state and crystal size of carbon fibers change correspondingly. M40 carbon fiber exhibits the best graphitization property, followed by T300 and then T700. The different microstructure and surface state of different carbon fibers lead to the different microstructures of pyrocarbon and then result in the different thermal conductivities of carbon/carbon composites. The carbon/carbon composite with M40 as preform has the best microstructure in pyrocarbon and the highest thermal conductivity. 展开更多
关键词 carbon fiber thermal conductivity PYROCARBON
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Influences of Structure Disorder and Temperature on Properties of Proton Conductivity in Hydrogen-Bond Molecular Systems 被引量:1
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作者 PANG Xiao-Feng YU Jia-Feng 《Communications in Theoretical Physics》 SCIE CAS CSCD 2007年第2期235-243,共9页
The dynamic properties of proton conductivity along hydrogen-bonded molecular systems, for example, ice crystal, with structure disorder or damping and finite temperatures exposed in an externally applied electric-fie... The dynamic properties of proton conductivity along hydrogen-bonded molecular systems, for example, ice crystal, with structure disorder or damping and finite temperatures exposed in an externally applied electric-field have been numerically studied by Runge-Kutta way in our soliton model. The results obtained show that the proton-soliton is very robust against the structure disorder including the fluctuation of the force constant and disorder in the sequence of masses and thermal perturbation and damping of medium, the velocity of its conductivity increases with increasing of the externally applied electric-field and decreasing of the damping coefficient of medium, but the proton-soliton disperses for quite great fluctuation of the "force constant and damping coefficient. In the numerical simulation we find that the proton-soliton in our model is thermally stable in a large region of temperature of T ≤ 273 K under influences of damping and externally applied electric-field in ice crvstal. This shows that our model is available and appropriate to ice. 展开更多
关键词 proton conductivity structure disorder temperature hydrogen bonded system
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The impact of NiO on microstructure and electrical property of solid oxide fuel cell anode
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作者 李彦 骆仲泱 +3 位作者 余春江 罗丹 许祝安 岑可法 《Journal of Zhejiang University-Science B(Biomedicine & Biotechnology)》 SCIE CAS CSCD 2005年第11期1124-1129,共6页
Ni-Ce0.8Sm.2O.9 (Ni-SDC) cermet was selected as anode material for reduced temperature (800℃) solid oxide fuel cells in this study. The influence of NiO powder fabrication methods for Ni-SDC cermets on the electr... Ni-Ce0.8Sm.2O.9 (Ni-SDC) cermet was selected as anode material for reduced temperature (800℃) solid oxide fuel cells in this study. The influence of NiO powder fabrication methods for Ni-SDC cermets on the electrode performance was investigated so that the result obtained can be applied to make high-quality anode. Three kinds of NiO powder were synthesized with a fourth kind being available in the market. Four types of anode precursors were fabricated with these NiO powders and Ce0.8Sm.2O.9 (SDC), and then were reduced to anode wafers for sequencing measurement. The electrical conductivity of the anodes was measured and the effect ofmicrostructure was investigated. It was found that the anode electrical conductivity depends strongly on the NiO powder morphologies, microstructure of the cermet anode and particle sizes, which are decided by NiO powder preparation technique. The highest electrical conductivity is obtained for anode cermets with NiO powder synthesized by NiCO3-2Ni(OH)2-4H2O or Ni(NO3)2-6H2O decomposition technique. 展开更多
关键词 Solid oxide fuel cell Ni-SDC anode Electrical conductivity MICROSTRUCTURE NiO powder Fabrication method
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Constructal entransy dissipation rate minimization for leaf-like fins 被引量:19
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作者 FENG HuiJun CHEN LinGen SUN FengRui 《Science China(Technological Sciences)》 SCIE EI CAS 2012年第2期515-526,共12页
Based on constructal theory,the constructs of the leaf-like fins are optimized by taking minimum entransy dissipation rate(for the fixed total thermal current,i.e.,the equivalent thermal resistance) as optimization ob... Based on constructal theory,the constructs of the leaf-like fins are optimized by taking minimum entransy dissipation rate(for the fixed total thermal current,i.e.,the equivalent thermal resistance) as optimization objective.The optimal constructs of the leaf-like fins with minimum dimensionless equivalent thermal resistance are obtained.The results show that there exists an optimal elemental leaf-like fin number,which leads to an optimal global heat conduction performance of the first order leaf-like fin.The Biot number has little effects on the optimal elemental fin number,optimal ratios of length and width of the elemental and first order leaf-like fins;with the increase of the thermal conductivity ratio of the vein and blade,the optimal elemental fin number and optimal ratio of the length and width of the elemental leaf-like fin increase,and the optimal shape of the first order leaf-like fin becomes tubbier.The optimal construct based on entransy dissipation rate minimization is obviously different from that based on maximum temperature difference minimization.The dimensionless equivalent thermal resistance based on entransy dissipation rate minimization is reduced by 11.54% compared to that based on maximum temperature difference minimization,and the global heat conduction performance of the leaf-like fin is effectively improved.For the same volumes of the elemental and first order leaf-like fins,the minimum dimensionless equivalent thermal resistance of the first order of the leaf-like fin is reduced by 30.10% compared to that of the elemental leaf-like fin,and the global heat conduction performance of the first order leaf-like fin is obviously better than that of the elemental leaf-like fin.Essentially,this is because the temperature gradient field of the first order leaf-like fin based on entransy dissipation rate minimization is more homogenous than that of the elemental leaf-like fin.The dimensionless equivalent thermal resistance defined based on entransy dissipation rate reflects the average heat transfer performance of the leaf-like fin,and can provide some guidelines for the thermal design of the fins from the viewpoint of heat transfer optimization. 展开更多
关键词 constructal theory entransy dissipation rate leaf-like fin heat transfer optimization generalized thermodynamic optimization
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