相火,Ministerial fire
1)Ministerial fire相火
1.The article discusses "fire-heat"of LIU Wan-su,"cool" and "catharis" of ZHANG Zi-he,"yin fire"of LI Dong-yuan and "ministerial fire"of ZHU Dan-xi,and explains their different academic views for "fire-heat"which describes their effect about consummating "fire-heat"and forming pyretology of mingqing.通过详细论述刘完素的"火热论",张子和的"寒凉"而"攻下",李东垣的"阴火论"以及朱丹溪的"相火论",阐述了金元四大家对火热论的认识和各自的学术的观点,说明了他们对后世医家丰富和完善关于火热之证的辨证论治体系,以及由伤寒向温病的过渡和明清温热病学的形成和发展产生了深远的影响,这种学术争论鸣也对于中医学的发展起到了很好的推动作用。
2.This paper studies the visual mechanisms of eye spirit and the essence of ministerial fire,and holds that eye spirit is in close relation with ministerial fire and reflects the functions of ministerial fire.通过对目中神光生理照视功能机制的探讨,联系相火学说的本质内涵,认为神光与人身相火关系密切,人身相火为目中神光之源,相火功能的正常与否直接影响了神光的照视功能。
2)homogeneous ignition均相着火
1.The model for homogeneous ignition of pulverized coal stream and the model for heterogeneous ignition(TET)of pulverized coal char were adopted to investigate the relationship be- tween denitration efficiency and ignition status of pulverized coal.采用煤粉气流均相着火模型和炭粒非均相热力着火模型对煤粉再燃脱硝效率与其着火状态的相互作用进行了研究。
2.The homogeneous ignition time can also be predicted.煤粒均相着火规律的研究张军,傅维标(清华大学工程力学系北京100084)关键词均相着火,简化模型,预报1前言煤粉颗粒既能发生均相着火,又能发生非均相着火山。
3.In this paper, based on the theoretical prediction method investigation of homogeneous ignition temperature of pulverized coal, the interaction between two extremely complicated and highly non-linear critical phenomena during pulverized coal reburning, i.针对全耦合燃烧瞬态模型计算过程复杂、计算时间太长等缺点,本文开发了基于可燃气体着火极限理论的单颗粒煤粉非稳态均相着火简化模型,并采用全耦合瞬态模型对简化模型的计算精度进行了验证。
英文短句/例句

1.Moving Flame Front Model for Volatile Combustion after Homogeneous Ignition均相着火后挥发分燃烧的移动火焰锋面模型
2.A fire is comparable with the sun;both give light and heat.火可以和太阳相比,两者均可放出光和热。
3.TEM OBSERVATION OF THE Al_3Er PHASE DURING HOMOGENIZING OF THE 5083 ALLOY WITH Er ADDITION含Er 5083合金均匀化退火过程中Al_3Er相的TEM观察
4.Homogeneous Reaction Mechanism Research on NO in CH_4 Flame Under O_2/CO_2 AtmosphereO_2/CO_2气氛下甲烷火焰中NO均相反应机理研究
5.Still simmering with anger, I was forced to be polite to that rude woman.我强压着火以礼相待那粗野的女人。
6.Theoretical and Numerical Study on the Ignition and Combustion Process of HCCI Engines;均质压燃(HCCI)发动机着火与燃烧过程的理论与数值研究
7.Experimental and Numerical Simulation Study on the Effect of Fuel Additives on the Ignition for HCCI Engine;添加剂(DTBP)改善均质充量压燃(HCCI)着火的数值模拟与试验研究
8.This paper stresses usable method effect and matters needing attention with even pressure tech-nology, discuss usable situation of even pressure fire-exting uished in Qianqiu coal mine.着重就均压技术使用的方法、果及注意事项来论述均压灭火在千秋煤矿使用的情况。
9.The Norse believed that each spark from the fire represented a new pig or calf that would be born during the coming year.挪威人相信火中的每一颗火星象征着来年出生的一头猪或一只羊。
10.It will be a long time before any landing on Mars can be attempted.想要在火星着陆还需要相当长的一段时间。
11.The Heat, however, left town with losses far greater than the C-note a Rockets player has to pay Wells.火箭在星期三晚上碰上了与之同病相怜的热火队,两队本赛季均有大将遭遇伤病。
12.Last year, the average time limit for post delivery was cut by two to three days from the previous year. With the speed rise in the railway sector, the time limit for post delivery will be shortened further.去年普通信函的传递时限比前年平均缩短了2—3天,随着火车时刻的调整,邮件还将全面提速。
13.Experimental Research on the Improvement of Combustion about Homogeneous Charge Compression Ignition (HCCI) Engine Using Fuel Additives;燃料添加剂改善均质充量压燃(HCCI)发动机着火和燃烧性能的试验研究
14.Resistant to catching fire.耐火的能防止着火的
15.tongues of flame lapping the edges of the bonfire舔着火堆边缘的火舌.
16.My Rice Crispies crackled in the bowl.火炉中的火在噼啪响着。
17.He poked the coals up into a blaze.他拨动炭火使火着得旺。
18.uniform mixture【治】均匀[单相]混合物; 均质[均一]混合物
相关短句/例句

homogeneous ignition均相着火
1.The model for homogeneous ignition of pulverized coal stream and the model for heterogeneous ignition(TET)of pulverized coal char were adopted to investigate the relationship be- tween denitration efficiency and ignition status of pulverized coal.采用煤粉气流均相着火模型和炭粒非均相热力着火模型对煤粉再燃脱硝效率与其着火状态的相互作用进行了研究。
2.The homogeneous ignition time can also be predicted.煤粒均相着火规律的研究张军,傅维标(清华大学工程力学系北京100084)关键词均相着火,简化模型,预报1前言煤粉颗粒既能发生均相着火,又能发生非均相着火山。
3.In this paper, based on the theoretical prediction method investigation of homogeneous ignition temperature of pulverized coal, the interaction between two extremely complicated and highly non-linear critical phenomena during pulverized coal reburning, i.针对全耦合燃烧瞬态模型计算过程复杂、计算时间太长等缺点,本文开发了基于可燃气体着火极限理论的单颗粒煤粉非稳态均相着火简化模型,并采用全耦合瞬态模型对简化模型的计算精度进行了验证。
3)volcanic lithofacies火山岩相
1.The basic characteristics of Gama Ray(GR)and dual laterolog(DLL)in volcanic lithofacies are obtained based on the analysis of the well logging data of volcanic rocks in Xingcheng area of Songliao Basin.通过对松辽盆地兴城地区火山岩相测井资料的研究,得到了自然伽马和深、浅双侧向测井在火山岩相中的基本特征:火山通道相除了火山颈亚相玄武岩显示低伽马和火山颈亚相凝灰岩显示低阻外,均为高伽马、中阻;爆发相除了空落亚相为低—中低阻外都是低阻;自然伽马测井可以区分喷溢相火山岩的岩性,双侧向测井显示喷溢相火山岩为中低阻、中阻;侵出相火山熔岩自然伽马测井显示高值,双侧向测井显示低—中低值,侵出相外带亚相凝灰熔岩为中伽马、中阻的特征。
2.The volcanic lithofacies and reservoir characteristics in Wangshen 1 block in northern Songliao Basin are analyzed.以松辽盆地北部汪深1区块为例,对火山岩岩性、岩相特征进行了深入分析,探讨了火山岩相类型与储层发育特征的关系,进而对火山岩储层发育特征进行了分析和预测。
4)volcanic rock facies火山岩相
1.By the research and analysis of log data on volcanic rock facies in Xingcheng region of Songliao Basin, the characteristic-value′s ranges of both gamma-ray log and deep-shallow DLL are summarized for volcanic conduit facies, explosive facies, effusive facies and intrusive facies.通过对松辽盆地兴城地区火山岩相测井资料的研究与分析,归纳总结了火山通道相、爆发相、喷溢相和侵入岩相的自然伽马和深浅双测向的特征值范围,利用实例具体分析了测井曲线在火山岩相中如何识别岩性、气层和岩相界面,并在生产中得到了良好的应用。
2.It is showed that volcanic rock facies,unconformity surface and tectonic fissures are the most important factors which affect volcanic rock reservoirs.本文在对岩心资料、录井资料、常规测井及成像测井资料综合研究的基础上,对徐深气田火山岩储层类型进行了研究,说明火山岩相、不整合面和构造裂缝是影响火山岩储层最重要因素。
5)Igneous rock facies火成岩相
6)ministerial fire theory相火论
1.The recognition on each pathogensis and syndrome of ZANG-fu organ had been enriched by the theory of ZANG-fu organ pathgenesis by LIU Wan-su,spleen and stomach theory by LI Gao,ministerial fire theory by ZHU Dan-xi,etc.刘完素的脏腑病机论、李杲的“脾胃论”、朱丹溪的“相火论”等丰富了对各脏腑病机病证的认识。
延伸阅读

相火相火 与君火相对而言,寄藏于下焦肝肾,其根源在于命门,主人之先天,有温养脏腑,主司生殖的功能,与君火相配,共同维持机体的正常生理活动。相火过亢,则有害。