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7篇 您的检索式:作者名="Patrick Perre"
    题名 作者 年代 出处 被引量
1Viscoelastic properties of wood across the grain measured under water - saturated condtions up to 135℃:evidence of thermal degradation显示文摘Vincent Placet Joe-lie Passard Patrick Perre 2008Journal of Materials Science2008,43,9:1
2第十九届国际干燥会议(IDS2014)介绍显示文摘1988年,法国凡尔赛成功举办了令人难忘的第6届国际干燥会议(IDS)。26年后,法国第二次在里昂国际会议中心于2014年8月24-27日荣幸并圆满的举办了第19届国际干燥会议。里昂是罗纳—阿尔卑斯地区的行政首府,是法国的第二大经济区和法国最大的学术研究中心。Julien ANDRIEU Arun S.MUJUMDAR Patrick PERRE 王维 2015干燥技术与设备2015,1,1:1
3A dual-scale computational model of kiln wood drying including single board and stack level simulation显示文摘Perre Patrick Remong Romain 2006Drying Technology2006,24,9:1
4Colony development of laser printed eukaryotic(yeast and microalga)microorganisms in co-culture显示文摘Laser Induced Forward Transfer(LIFT)bioprinting is one of a group of techniques that have been largely applied for printing mammalian cells so far.Bioprinting allows precise placement of viable cells in a defined matrix with the aim of directed three-dimensional development of tissues.In this study,laser bioprinting is used to precisely place eukaryotic microorganisms in specific patterns that allow growth and microscopic observation of the organisms’micro-colonies.Saccharomyces cerevisiae var.bayanus and Chlorella vulgaris are used as model organisms for this purpose.Growth and development of the micro-colonies are studied via confocal microscopy and the colonies’growth rates are determined by image analysis.The developed protocols for printing of microorganisms and growth-rate determination of the micro-colonies are very promising for future studies of colony growth and development.Behnam Taidi Guillaume Lebernede Lothar Koch Patrick Perre Boris Chichkov 2016International Journal of Bioprinting2016,2,2:1
5Effect of Fiber Origin, Proportion, and Chemical Composition on the Mechanical and Physical Properties of Wood-Plastic Composites显示文摘Sebastien Migneault Ahmed Koubaa Patrick Perré 2014Journal of Wood Chemistry and Technology2014,,4:1
6Evidence of Dual Scale Porous Mechanisms During Fluid Migration in Hardwood Species (Ⅰ) Using the Attenuation of a Aolychromatic X-ray Beam to Determine the Evolution of Moisture Content During Imbibition of Beech显示文摘An experimental device able to determine the moisture content of wood using X-ray attenuation is used to study the imbibition of beech samples (Fagus silvatica). The apparatus includes an X-ray generator, a protective tube, coUimating plates and a 50 mm detector. Detected particles can be categorised by energy (accuracy of the order of 20%) or by position (accuracy 100μm). The independent choice of both the energy spectrum (through the voltage) and the counting rate (through the current intensity) makes the installation very flexible. However,a rigorous treatment is necessary to deal with the attenuation of a polychromatic spectrum. The appropriate calculations are presented and validated with homogeneous samples made of wood and water. In addition, some results are presented with samples heterogeneous in density and moisture content. Finally, the experimental device is used to study the evolution of moisture content during saturation experiments, for which the moisture migration is mainly due to capillary forces. The geometrical configuration was so arranged that the transfer can be studied in two directions simultaneously.Patrick PERR Francois THIERCELIN 2004Chinese Journal of Chemical Engineering2004,12,6:0
7Evidence of Dual Scale Porous Mechanisms During Fluid Migration in Hardwood Species (Ⅱ) A Dual Scale Computational Model to Describe the Experimental Results显示文摘The second part of this paper is devoted to the computational modelling of transient water migration in hardwood. During re-saturation, the moisture content, measured during the process by using X-ray attenuation (see part 1 of this paper), increases quickly very close to the cavity, but requires a very long time for the remaining part of the sample to absorb the moisture in wetting. For this configuration and this material, the macroscopic approach fails. Consequently, a dual-porosity approach is proposed. The computational domain uses a 2-D axisymmetric configuration for which the axial coordinate represents the macroscopic longitudinal direction of the sample whereas the radial coordinate allows the slow migration from each active vessel towards the fibre zone to be considered. The latter is a microscopic space variable. The moisture content field evolution depicts clearly the dual scale mechanisms:a very fast longitudinal migration in the vessel followed by a slow migration from the vessel towards the fibre zone.The macroscopic moisture content field resulting from this dual scale mechanism is in quite good agreement with the experimental data.Patrick PERR 2004Chinese Journal of Chemical Engineering2004,12,6:0
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