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18篇 您的检索式:作者名="KAMAN H"
    题名 作者 年代 出处 被引量
1Use of waste materials for control of acid mine drainage and subsidence显示文摘SIRIWARDANE H J KAMAN R S S ZIEMKIEWICZ P F 2003Journal of Environmental Engineering2003,129,10:1
2Compact and scalable three-dimensional microelectromechanical system optical switches显示文摘 Roger J H John E B 2007Journal of Optical Networking2007,6,1:1
3Use of waste materials for control of acid mine drainage and subsidence显示文摘SIRIWARDANE H J KAMAN R S S ZIEMKIEWICZ P F 2003Journal of Environmental Engineering2003,129,10:1
4Identification and characterization of a novel gene, C13orf25, as a target for 13q31-q32 amplification in malignant lymphoma 显示文摘Ota A Tagawa H Kaman S 2004Cancer Res2004,64,9:1
5The fat-derived hormone adiponectin reverses insulin resistance associated with both lipoatrophy and obesity显示文摘Yamanchi T Kaman J Waki H 2001Nat Med2001,7,8:1
6Identification and characterization of a novel gene, C130rf25, as a target for 13q31-q32 amplification in malignant lymphoma显示文摘Ota A Tagawa H Kaman S 2004Cancer Res2004,64,9:1
7Grain yield response and N-fertiliser recovery of maize under deficit irrigation显示文摘Kirda C Topcu S Kaman H 2005Field Crops Research2005,93,23:1
8Grain yield response and N-fertilizer recovery of maize under deficit irrigation 显示文摘Kirda C Topcu S Kaman H 2005Field Crops Research2005,93,23:1
9Salt accumulation in the root zones of tomato and cotton irrigated with partial root-drying technique显示文摘KAMAN H KIRDA C CETIN M 2006Irrigation and Drainage2006,55,:1
10Using an electromagnetic sensor combined with geographic informa- tion systems to monitor soil salinity in an area of Southern Turkey irrigated with drainage water显示文摘Cetin M Ibrikci H Kird C Kaman H Karnez E Ryan J Topcu S Eren Oztekin M Dingil M Sesveren S 2012Fresenius Environ- mental Bulletin2012,21,5:1
11Use of waste materials for control of acid mine drainage and subsidence显示文摘SIRIWARDANE H J KAMAN R S S ZIEMKIEWICZ P F 2003Journal of Environmental Engineering2003,129,10:1
12Identification and characterization of a novel gene,C13 or f25,as a target for 13q31-q32 amplification in malignant lymphoma显示文摘Ota A Tagawa H Kaman S 2004Cancer Res2004,64,9:1
13Lincoff temporary balloon buckle in retinal detachment surgery 显示文摘Oge I Birinci H Havuz E Kaman A 2001Eur J Ophthalmol2001,11,4:1
14Dynamic assessment of the ecological risk of the discharge of produced water from oil and gas producing platforms显示文摘Kaman C C Reerink H G 1998Journal of Hazandous Materials1998,61,13:1
15The fat-derived hormone adiponectin reverses insulin resistance asso- ciated with both lipoatrophy and obesity显示文摘Yamauchi T Kaman J Waki H 2001Nat Med2001,7,8:1
16I-dentification and characterization of a novel gene, C13orf25,asa target for I3q31-q32 amplification in malignant lymphoma显示文摘Ota A Tagawa H Kaman S Tsuzuki S Karpas A Kira S 2004Cancer i2es2004,64,9:1
17What I think you see is what you get:Influence of prejudice on assimilation to negative meta-stereotypes among Dutch Moroccan teenagers显示文摘Kamans E Gordijn E H Oldenhuis H 2009European Journal of Social Psychology2009,39,5:1
18Macro and micro issues in turbulent mixing显示文摘Numerical prediction of turbulent mixing can be divided into two subproblems: to predict the geometrical extent of a mixing region and to predict the mixing properties on an atomic or molecular scale, within the mixing region. The former goal suffices for some purposes, while important problems of chemical reactions(e.g. flames) and nuclear reactions depend critically on the second goal in addition to the first one. Here we review recent progress in establishing a conceptual reformulation of convergence, and we illustrate these concepts with a review of recent numerical studies addressing turbulence and mixing in the high Reynolds number limit. We review significant progress on the first goal, regarding the mixing region, and initial progress on the second goal, regarding atomic level mixing properties. New results concerning non-uniqueness of the infinite Reynolds number solutions and other consequences of a renormalization group point of view, to be published in detail elsewhere, are summarized here.The notion of stochastic convergence(of probability measures and probability distribution functions) replaces traditional pointwise convergence. The primary benefit of this idea is its increased stability relative to the statistical 'noise' which characterizes turbulent flow. Our results also show that this modification of convergence, with sufficient mesh refinement, may not be needed. However, in practice, mesh refinement is seldom sufficient and the stochastic convergence concepts have a role.Related to this circle of ideas is the observation that turbulent mixing, in the limit of high Reynolds number, appears to be non-unique. Not only have multiple solutions been observed(and published) for identical problems, but simple physics based arguments and more refined arguments based on the renormalization group come to the same conclusion.Because of the non-uniqueness inherent in numerical models of high Reynolds number turbulence and mixing, we also include here numerical examples of validation. The algorithm we use here has two essential components. We depend on Front Tracking to allow accurate resolution of flows with sharp interfaces or steep gradients(concentration or thermal), as are common in turbulent mixing problems. The higher order and enhanced algorithms for interface tracking, both those already developed, and those proposed here, allow a high resolution and uniquely accurate description of sample mixing problems. Additionally, we depend on the use of dynamic subgrid scale models to set otherwise missing values for turbulent transport coefficients, a step that breaks the non-uniqueness.MELVIN J KAUFMAN R LIM H KAMAN T RAO P GLIMM J 2013Science China(Technological Sciences)2013,56,10:0
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