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| 1 | Ordovician Carbonate Reservoir Bed Characteristics and Reservoir-Forming Conditions in the Lungudong Region of the Tarim Basin显示文摘在 Tarim 盆的东北部分的 Lungudong 区域的奥陶纪碳酸盐水库床的基本特征详细被描述,油和气体的形成水库的条件被收集并且整理大量数据 preliminarily 在这份报纸讨论。碳酸盐水库床主要被开发在开站台并且站台边缘的外形;水库床有大变化在并且物理性质的低平均价值;主要类型第二是有破裂多孔的类型的折断的水库床。水库床发展被沉积外形,构造活动和 karstification 的分发主要控制。而在这个区域的烃的累积和分发被一个有益的结构的地点,好 reservoir-caprock 联合和一个有利搬运系统控制,与地区水平地描绘的分发和带垂直地,油和气体主要在区域被集中与结构高举,浓密地发达的破裂,并且表面石灰岩地区常见的地形,一个垂直 vadose 地区,和水平潜流 palaeokarst 系上带子。 | GU Qiaoyuan PANG Xiongqi LIU Luofu YANG Haijun WANG Ying JIANG Zhenxue XIANG Caifu HAN Jianfa | 2010 | Acta Geologica Sinica(English Edition)2010,84,5: | 2 |
| 2 | Regional Polarization under the Socialist-market System since 1978 : A Case Study of Guangdong Province in South China显示文摘 | Gu Chaolin Shen Jianfa Wong Kwan-yinetal | 2001 | Environment and Planning A2001,33,: | 1 |
| 3 | Transformation of urban socio-spatial structure in socialist market economies: the ease of Beijing显示文摘 | GU Chaolin Jianfa Shen | 2003 | Habi- tat International2003,27,1: | 1 |
| 4 | Transformation of Urban Sociospatial Structure in Socialist Market Economies:the Case of Beijing显示文摘 | Gu Chaolin Shen Jianfa | 2003 | Habitat International2003,27,: | 1 |
| 5 | Effects of mode coupling between low-mode radiation flux asymmetry and intermediate-mode ablator roughness on ignition capsule implosions显示文摘The low-mode shell asymmetry and high-mode hot spot mixing appear to be the main reasons for the performance degradation of the National Ignition Facility(NIF)implosion experiments.The effects of the mode coupling between low-mode P2 radiation flux asymmetry and intermediate-mode L=24 capsule roughness on the implosion performance of ignition capsule are investigated by two-dimensional radiation hydrodynamic simulations.It is shown that the amplitudes of new modes generated by the mode coupling are in good agreement with the second-order mode coupling equation during the acceleration phase.The later flow field not only shows large areal density P2 asymmetry in the main fuel,but also generates large-amplitude spikes and bubbles.In the deceleration phase,the increasing mode coupling generates more new modes,and the perturbation spectrum on the hot spot boundary is mainly from the strong mode interactions rather than the initial perturbation conditions.The combination of the low-mode and high-mode perturbations breaks up the capsule shell,resulting in a significant reduction of the hot spot temperature and implosion performance. | Jianfa Gu Zhensheng Dai Shiyang Zou Wenhua Ye Wudi Zheng Peijun Gu Shaoping Zhu | 2017 | Matter and Radiation at Extremes2017,2,1: | 1 |
| 6 | An Analysis of Dual - Track Urbansition in the Pearl River Delta Since 1980 显示文摘 | Kwan - Yiu Wong Jianfa Shen Zhiqiang Feng Chaolin Gu | 2003 | Economische en Sociale Geografie2003,94,2: | 1 |
| 7 | Transformation of urban socio-spatial structure in socialist market economies:The case of Beijing显示文摘 | Gu Chaolin Shen Jianfa | 2003 | Hab- itat International2003,27,1: | 1 |
| 8 | P2 asymmetry of Au's M-band flux and its smoothing effect due to high-Z ablator dopants显示文摘X-ray drive asymmetry is one of the main seeds of low-mode implosion asymmetry that blocks further improvement of the nuclear per-formance of“high-foot”experiments on the National Ignition Facility[Miller et al.,Nucl.Fusion 44,S228(2004)].More particularly,the P2 asymmetry of Au's M-band flux can also severely influence the implosion performance of ignition capsules[Li et al.,Phys.Plasmas 23,072705(2016)].Here we study the smoothing effect of mid-and/or high-Z dopants in ablator on Au's M-band flux asymmetries,by modeling and comparing the implosion processes of a Ge-doped ignition capsule and a Si-doped one driven by X-ray sources with P2 M-band flux asymmetry.As the results,(1)mid-or high-Z dopants absorb hard X-rays(M-band flux)and re-emit isotropically,which helps to smooth the asymmetric M-band flux arriving at the ablation front,therefore reducing the P2 asymmetries of the imploding shell and hot spot;(2)the smoothing effect of Ge-dopant is more remarkable than Si-dopant because its opacity in Au's M-band is higher than the latter's;and(3)placing the doped layer at a larger radius in ablator is more efficient.Applying this effect may not be a main measure to reduce the low-mode implosion asymmetry,but might be of significance in some critical situations such as inertial confinement fusion(ICF)experiments very near the performance cliffs of asymmetric X-ray drives. | Yongsheng Li Chuanlei Zhai Guoli Ren Jianfa Gu Wenyi Huo Xujun Meng Wenhua Ye Ke Lan Weiyan Zhang | 2017 | Matter and Radiation at Extremes2017,2,2: | 1 |
| 9 | Regional polarization under the socialist-market system since 1978:A case study of Guangdong Province in South China显示文摘 | Gu Chaolin Shen Jianfa Wong Kwan-yin | 2001 | Environment and Planning A2001,33,: | 1 |
| 10 | Numerical simulations of instabilities in the implosion process of inertial confined fusion in 2D cylindrical coordinates显示文摘In this paper, we introduce a multi-material arbitrary Lagrangian and Eulerian method for the hydrodynamic radiative multi-group diffusion model in 2D cylindrical coordinates. The basic idea in the construction of the method is the following: In the Lagrangian step, a closure model of radiation-hydrodynamics is used to give the states of equations for materials in mixed cells. In the mesh rezoning step, we couple the rezoning principle with the Lagrangian interface tracking method and an Eulerian interface capturing scheme to compute interfaces sharply according to their deformation and to keep cells in good geometric quality. In the interface reconstruction step, a dual-material Moment-of-Fluid method is introduced to obtain the unique interface in mixed cells. In the remapping step, a conservative remapping algorithm of conserved quantities is presented. A number of numerical tests are carried out and the numerical results show that the new method can simulate instabilities in complex fluid field under large deformation,and are accurate and robust. | Heng Yong ChuanLei Zhai Song Jiang Peng Song ZhenSheng Dai JianFa Gu | 2016 | Science China(Physics,Mechanics & Astronomy)2016,59,1: | 1 |