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多旋回叠合盆地烃流体源与构造变形响应:以扬子地块中古生界海相为例 被引量:5
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作者 汤济广 梅廉夫 +1 位作者 沈传波 刘昭茜 《地球科学(中国地质大学学报)》 EI CAS CSCD 北大核心 2012年第3期526-534,共9页
多旋回叠合盆地的多旋回构造演化制约着盆地的成烃演化,使烃流体源显示多源化的特征,而构造变形对烃流体源的成烃制约主要是通过对地质体的埋藏作用来体现.基于扬子地块海相构造变形,将其分为断陷反转、断块反转、逆冲推覆和复合叠加等... 多旋回叠合盆地的多旋回构造演化制约着盆地的成烃演化,使烃流体源显示多源化的特征,而构造变形对烃流体源的成烃制约主要是通过对地质体的埋藏作用来体现.基于扬子地块海相构造变形,将其分为断陷反转、断块反转、逆冲推覆和复合叠加等4类构造变区形,并确立相应构造变形作用下中新生代海相地层构造-埋藏类型.通过烃流体源与地质体构造-埋藏类型对应关系的建立,认为下扬子与中扬子江汉断陷区的强烈暴露-断陷埋藏构造变形控制的烃流体源为残留烃流体源和二次生烃;中扬子湘鄂西和大洪山的强烈隆升-海相暴露变形区烃流体源为残留烃流体源;大巴山和龙门山前陆冲断带的晚期弱抬升-推覆埋藏构造变形制约的烃流体源为干酪根裂解气、油裂解气和残留烃流体源,而江南隆起北缘推覆体下地质体的强烈隆升-推覆埋藏致使烃流体源可能为干酪根裂解气和油裂解气;上扬子持续埋藏-晚期隆升区烃流体源为干酪根裂解气、油裂解气和沥青裂解气. 展开更多
关键词 烃流体源 构造变形 多旋回叠合盆地 海相地层 扬子地块 石油地质
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Ignition of Hydrocarbon-Air Supersonic Flow by Volumetric Ionization
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作者 Marat A.Goldfeld George A.Pozdnyakov 《Journal of Thermal Science》 SCIE EI CAS CSCD 2015年第6期583-590,共8页
The paper describes the results of the electron-beam initiation of the combustion in the mixtures of hydrogen,natural gas or kerosene vapors with air.Electron beam characteristics were studied in closed volume with im... The paper describes the results of the electron-beam initiation of the combustion in the mixtures of hydrogen,natural gas or kerosene vapors with air.Electron beam characteristics were studied in closed volume with immobile gas.The researches included definition of an integrated current of an electronic beam,distribution of a current density and an estimation of average energy of electrons.Possibility of fuel mixtures ignition by means of this approach in the combustor at high velocity at the entrance was demonstrated.Experiments were carried out at Mach numbers of 4 and 5.Process of ignition and combustion under electron beam action was researched.It was revealed that ignition of mixture occurs after completion of electron gun operation.Data obtained have confirmed effectiveness of electron beam application for ignition of hydrogen and natural gas.The numerical simulation of the combustion of mixture in channel was carried out by means of ANSYS CFD 12.0 instrumentation on the basis of Reynolds averaged Navier-Stokes equation using SST/k-ωturbulence model.For combustion modeling,a detailed kinetic scheme with 38 reactions of 8 species was implemented taking into account finite rate chemistry.Computations have shown that the developed model allow to predict ignition of a mixture and flame propagation even at low flow temperatures. 展开更多
关键词 supersonic flow COMBUSTOR electron bean ignition delay numerical simulation.
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