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14篇 您的检索式:作者名="Sehaqui"
    题名 作者 年代 出处 被引量
1Fast preparation procedure for large, flat cellulose and cellulose/inorganic nanopaper structures显示文摘Sehaqui H Liu A D Zhou Q Berglund L A 2010Biomacromolecules2010,11,9:1
2Wood cellulose biocomposites with fibrous structures at micro-and nanoscale显示文摘Houssine Sehaqui Mael Allais Qi Zhou 2011Composites Science and Technology2011,71,3:1
3High-porosity aerogels of high specific surface area preparaed from nanofibrillated cellulose(NFC)显示文摘Houssine Sehaqui Qi Zhou Lars A Berglund 2011Composites Science and Technology2011,71,13:1
4Fast preparation procedure for large,flat cellulose and cellulose/inorganic nanopaper structures显示文摘Sehaqui H Liu A Zhou Q 0,,09:1
5Strong and tough cellulose nanopaper with high specific surface area and porosity 显示文摘SEHAQUI H ZHOU Q IKKALA O 2011Biomacromolecules2011,12,10:1
6High-porosity aerogels of high specific surface area prepared from nanofibrillated cellulose (NFC)显示文摘SEHAQUI H ZHOU Q BERGLUND L A 2011Composities Science and Technology2011,71,13:1
7Fast preparation procedure for large, fiat cellulose and cellulose/inorganic nanopaper structures 显示文摘Sehaqui H Liu A Zhou Q 2010Biomacromolecules2010,11,9:1
8High-porosity aerogels of high specific surface area prepared from nanofibrillated cellulose (NFC)显示文摘Sehaqui H Zhou Q Berglund L A 0,,13:1
9Mechanical performance tailoring of tough ultra-high porosity foams prepared from cellulose I nanofiber suspensions显示文摘Sehaqui H Salajkova M Zhou Q 2010Soft Matter2010,6,8:1
10Wood cellulose biocomposites with fibrous structures at micro- and nano-seale 显示文摘Sehaqui H Allais M Zhou Q 2011Compos Sci Technol2011,71,3:1
11Wood cellulose biocomposites with fibrous structures at micro-and nanoscale显示文摘Sehaqui H Allais M Zhou Q 2011Composites Science and Technology2011,,:1
12High-porosity aerogels of high specific surface area prepared from nan- ofibrillated cellulose (NFC) 显示文摘Sehaqui H Zhou Q Berglund L A 2011Composites Science and Technology2011,71,13:1
13Multifunc-tional nanoclay hybrids of high toughness, thermal, and barrierperformances显示文摘SEHAQUI H KOCHUMALAYIL J LIU A 2013ACS Applied Materials and Interfaces2013,5,15:1
14Mixed Convection in a Two-Sided Lid-Driven Square Cavity Filled with Different Types of Nanoparticles:A Comparative Study Assuming Nanoparticles with Different Shapes显示文摘Steady,laminar mixed convection inside a lid-driven square cavity filled with nanofluid is investigated numerically.We consider the case where the right and left walls are moving downwards and upwards respectively and maintained at different temperatures while the other two horizontal ones are kept adiabatic and impermeable.The set of nonlinear coupled governing mass,momentum,and energy equations are solved using an extensively validated and a highly accurate finite difference method of fourth-order.Comparisons with previously conducted investigations on special configurations are performed and show an excellent agreement.Meanwhile,attention is focused on the heat transfer enhancement when different nano-particles:Cu,Ag,Al2O3,TiO2 and Fe3O4 are incorporated separately in different base fluids such as:Water,Ethylene-glycol,Methanol and Kerosene oil.In this framework,the numerical results related to several mixtures are presented and concern flow pattern and heat transfer curves for various values of Richardson number[Ri=0.1,1 and 10].It turns out that the choice of the efficient binary mixture for an optimal heat transfer depends not only on the thermophysical properties of the nanofluids but also on the range of the Richardson number.Special attention is devoted to shedding light on the effect of the shape of the nanoparticles on the heat transfer in the case of Water-Ag nanofluid.It is concluded that the spherical shape is more suitable for a better heat transfer enhancement in comparison to the cylindrical ones.Mostafa Zaydan Mehdi Riahi Fateh Mebarek-Oudina Rachid Sehaqui 2021Fluid Dynamics & Materials Processing2021,17,4:0
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