Search Results - "Zou, Mingqing"

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  1. 1

    Fractal Characterization of Spontaneous Co-current Imbibition in Porous Media by Cai, Jianchao, Yu, Boming, Zou, Mingqing, Luo, Liang

    Published in Energy & fuels (18-03-2010)
    “…Spontaneous capillary imbibition is an important fundamental phenomenon existing extensively in a variety of processes such as polymer composite manufacturing,…”
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    Journal Article
  2. 2

    Fractal analysis of invasion depth of extraneous fluids in porous media by Cai, Jianchao, Yu, Boming, Zou, Mingqing, Mei, Maofei

    Published in Chemical engineering science (01-09-2010)
    “…Applications of the fractal theory to analyze transport properties of porous media in science and engineering have received steady attention in the past two…”
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  3. 3

    Closely packed nanoparticle monolayer as a strain gauge fabricated by convective assembly at a confined angle by Zhang, Chao, Li, Juan, Yang, Shanshan, Jiao, Weihong, Xiao, Shuang, Zou, Mingqing, Yuan, Songliu, Xiao, Fei, Wang, Shuai, Qian, Lihua

    Published in Nano research (01-06-2014)
    “…The reliability and sensitivity of a strain gauge made from a nanoparticle monolayer intrinsically depend on electron tunneling between the adjacent…”
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  4. 4

    Heat conduction in fractal tree-like branched networks by Xu, Peng, Yu, Boming, Yun, Meijuan, Zou, Mingqing

    “…The geometric structures and fractal dimensions of fractal tree-like branched networks have the significant influence on the efficiency of physiological,…”
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  5. 5

    A numerical study on growth mechanism of dropwise condensation by Mei, Maofei, Yu, Boming, Zou, Mingqing, Luo, Liang

    “…Based on the intrinsic growth rate ( R ∼ T 1/3) of single droplet, processes of nucleation, growth, renucleation and sweeping of droplet are simulated in this…”
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  6. 6

    A Monte Carlo method for simulating fractal surfaces by Zou, Mingqing, Yu, Boming, Feng, Yongjin, Xu, Peng

    Published in Physica A (01-12-2007)
    “…A Monte Carlo method is presented for simulating rough surfaces with the fractal behavior. The simulation is based on power-law size distribution of asperity…”
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  7. 7

    Permeability of fractal porous media by Monte Carlo simulations by Yu, Boming, Zou, Mingqing, Feng, Yongjin

    “…The permeability of the fractal porous media is simulated by Monte Carlo technique in this work. Based on the fractal character of pore size distribution in…”
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  8. 8

    Permeabilities of unsaturated fractal porous media by Yu, Boming, Li, Jianhua, Li, Zhihua, Zou, Mingqing

    Published in International journal of multiphase flow (01-10-2003)
    “…A fractal analysis of permeabilities for unsaturated fractal porous media is presented based on the fractal natures of pores in the media. Both the fractal…”
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  9. 9

    A fractal analysis of laminar flow resistance in roughened microchannels by Yang, Shanshan, Yu, Boming, Zou, Mingqing, Liang, Mingchao

    “…The fractal geometry theory and method are used to simulate the rough surface topography. The pressure gradients, friction factors and Poiseuille numbers for…”
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  10. 10

    Fractal study on permeability characteristics in rough and dense porous media by Yang, Shanshan, Cui, Ruike, Yuan, Xianbao, Zou, Mingqing

    Published in Chemical engineering science (05-12-2023)
    “…•The effective permeability model of rough and dense porous media is studied.•The effect of relative roughness on the effective permeability is analyzed.•The…”
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  11. 11

    Permeability model for fractal porous media with rough surfaces by Yang, Shanshan, Liang, Mingchao, Yu, Boming, Zou, Mingqing

    Published in Microfluidics and nanofluidics (01-05-2015)
    “…In this paper, a permeability model is derived for porous media, which are assumed to be comprised of a bundle of tortuous capillaries whose size distribution…”
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  12. 12

    Permeability coupling model of multiple migration mechanisms in rough micro-fractures of shales by Yang, Shanshan, Wang, Mengying, Zou, Mingqing, Sheng, Qiong, Cui, Ruike, Chen, Shuaiyin

    Published in Chaos, solitons and fractals (01-09-2023)
    “…To study the gas transmission characteristics in organic pores of rough shale reservoirs, firstly, considering the effect of roughness, adsorption layer, and…”
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  13. 13

    Gas transport law in inorganic nanopores considering the influence of cross section shape and roughness by Yang, Shanshan, Wang, Mengying, Zou, Mingqing, Sheng, Qiong, Cui, Ruike, Chen, Shuaiyin

    Published in Chaos, solitons and fractals (01-10-2023)
    “…To study the gas transport characteristics in rough inorganic nanopores, the effective pore size models of circular and rectangular nanopores are established,…”
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  14. 14

    An Investigation on Transport Properties Near the Wall in Porous Media by Fractal Models by Yu, Boming, Feng, Yongjin, Zou, Mingqing, Huang, Mingtao

    Published in Heat transfer engineering (01-01-2006)
    “…A comprehensive investigation on the wall effects on the transport properties, permeability, thermal conductivity, and thermal dispersion conductivity is…”
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  15. 15

    Joining of Al2O3 ceramic to Cu using refractory metal foil by Jin, Boxi, Huang, Xu, Zou, Mingqing, Zhao, Yujie, Wang, Shenggao, Mao, Yangwu

    Published in Ceramics international (01-02-2022)
    “…Joining of Al2O3 ceramic to Cu has been conducted with Ag-26.7Cu-4.5Ti braze and refractory metal (W or Ta) foil. The interfacial microstructure in the joint…”
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  16. 16

    A comprehensive study of the effective thermal conductivity of living biological tissue with randomly distributed vascular trees by Li, Li, Yu, Boming, Liang, Mingchao, Yang, Shanshan, Zou, Mingqing

    “…The biological tissue can be treated as a porous medium consisting of randomly distributed vascular trees and solid tissue matrix. In this paper, taking into…”
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  17. 17

    Thermal conductivity of nanofluids and size distribution of nanoparticles by Monte Carlo simulations by Feng, Yongjin, Yu, Boming, Feng, Kaiming, Xu, Peng, Zou, Mingqing

    “…Nanofluids, a class of solid–liquid suspensions, have received an increasing attention and studied intensively because of their anomalously high thermal…”
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  18. 18