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3篇 您的检索式:作者名="S.Shaw"
    题名 作者 年代 出处 被引量
1Risk factors, Sequential Organ Failure Assessment and Model for End‐stage Liver Disease scores for predicting short term mortality in cirrhotic patients admitted to intensive care unit显示文摘E.CHOLONGITAS M.SENZOLO D.PATCH K.KWONG V.NIKOLOPOULOU G.LEANDRO S.SHAW A. K.BURROUGHS 2006Alimentary Pharmacology & Therapeutics2006,,7:3
2聚苯乙烯/接枝三元乙丙橡胶相容性的研究显示文摘前言聚合的的化学或机械共混是获得具有各种物理和化学性能的共混胶的最简单方法。新性能的增加则取决于聚合物在一分子量时的相容或可混程度。因此。可采用先进的试验方法和成熟的理论来检验共混胶的相容性。Hourston和Hughes及Kuleznev等人已经指出:超声波和熔化粘度测定法可用于测定共混胶的相容性。Singh和Singh已经测量了相容。S.Shaw 李九玉 1990橡胶参考资料1990,,2:0
3Shear-augmented solute dispersion during drug delivery for three-layer flow through microvessel under stress jump and momentum slip-Darcy model显示文摘Nanoparticle(drug particle) dispersion is an important phenomenon during nanodrug delivery in the bloodstream by using multifunctional carrier particles. The aim of this study is to understand the dispersion of drug particle(nanoparticle) transport during steady blood flow through a microvessel. A two-phase fluid model is considered to define blood flow through a microvessel. Plug and intermediate regions are defined by a non-Newtonian Herschel-Bulkley fluid model where the plug region appears due to the aggregation of red blood cells at the axis in the vessel. The peripheral(porous in nature)region is defined by the Newtonian fluids. The wall of the microvessel is considered to be permeable and characterized by the Darcy model. Stress-jump and velocity slip conditions are incorporated respectively at the interface of the intermediate and peripheral regions and at the inner surface of the microvessel. The effects of the rheological parameter, the pressure constant, the particle volume fraction, the stress jump constant, the slip constant,and the yield stress on the dispersion are analyzed and discussed. It is observed that the non-dimensional pressure gradient and the yield stress enhance the dispersion rate of the nanoparticle, while the opposite trends are observed for the velocity slip constant, the nanoparticle volume fraction, the rheological parameter, and the stress-jump constant.G.BASHAGA S.SHAW 2021Applied Mathematics and Mechanics(English Edition)2021,42,6:0
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