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12篇 您的检索式:作者名="Fokion"
    题名 作者 年代 出处 被引量
1An experimental and modeling study of the propagation of cyclohexane and mono-alkylated cyclohexane flames显示文摘Chunsheng Ji Enoch Dames Baptiste Sirjean Hai Wang Fokion N. Egolfopoulos 2010Proceedings of the Combustion Institute2010,,1:1
2Measurement of laminar flame speeds through digital particle image velocimetry: Mixtures of methane and ethane with hydrogen, oxygen, nitrogen, and helium显示文摘Yufei Dong Christina M. Vagelopoulos Geoffrey R. Spedding Fokion N. Egolfopoulos 2002Proceedings of the Combustion Institute2002,,2:1
3Direct numerical simulation of heat release and NOx formation in turbulent nonpremixed flames显示文摘Benoit Bedat Fokion N Egolfopoulos Thierry Poinsot 1999Combustion and Flame1999,119,:1
4Propagation and extinction of premixed C5-C12 n-alkane flames 显示文摘Ji Chunsheng Enoch D Fokion E 2010Combustion andFlame2010,157,2:1
5Direct numerical simulation of heat release and NOx formation in turbulent non-premixed flames 显示文摘Benoit B Fokion N E Thierry P 1999Combustion and Flame1999,119,:1
6A comparative experimental and computational study of methanol, ethanol, and n -butanol flames显示文摘Peter S. Veloo Yang L. Wang Fokion N. Egolfopoulos Charles K. Westbrook 2010Combustion and Flame2010,,10:1
7Propagation and extinction of premixed C 5 –C 12 n -alkane flames显示文摘Chunsheng Ji Enoch Dames Yang L. Wang Hai Wang Fokion N. Egolfopoulos 2009Combustion and Flame2009,,2:1
8Effect of environmental stress during tuber development on accumulation of glycoalkaloids in potato显示文摘Fokion P Samuel H M Sally W 1999Journal of the Science of Food and Agriculture1999,79,:1
9Flame propagation of mixtures of air with high molecular weight neat hydrocarbons and practical jet and diesel fuels显示文摘Bo Li Ning Liu Runhua Zhao Hai Zhang Fokion N. Egolfopoulos 2013Proceedings of the Combustion Institute2013,,1:1
10An optimized kinetic model of H 2 /CO combustion显示文摘Scott G. Davis Ameya V. Joshi Hai Wang Fokion Egolfopoulos 2004Proceedings of the Combustion Institute2004,,1:1
11Testing Taylor’s Power Law association of maize interplant variation with mean grain yield显示文摘Plant-to-plant variability is a crop stability component.The objective of this study in maize(Zea mays L.)was to test the validity of the theoretical background of the hypothesis that the coefficient of variation(CV)for grain yield per plant and mean yield are connected exponentially,following the Taylor’s Power Law(TPL)Model.Field experimentation was conducted across two sites,two seasons,and two planting densities.Densities were the main plots,corresponding to the typical practice of 8.89 plants m–2(TCD)and the low-input optimal of 5.33 plants m–2(LCD),while hybrids were the subplots.Data from 26 subplots in the first site averaged CV values of 22.6%at the TCD and 21.9%at the LCD,and mean yields of 19.1 and 13.9 t ha–1,respectively,following the TPL Model.The same was true for the second site,with average CVs and means of 41.5%and 14.3 t ha–1 at the TCD and 36.8%and 11.5 t ha–1 at the LCD.A test was performed on the simple correlation between the logarithms of variances and their respective means to investigate whether there is a systematic variance dependence on mean,thus questioning the reliability of TPL.The validity of TPL was verified in the first site.Nevertheless,there was a systematic dependence of yield variance on mean yield in the second site,implying that the CV-yield correlation might be not biologically meaningful.Conversion of the variance to remove its dependence on the mean did not validate the CV-yield negative relationship,meaning that caution is needed when interpreting the CV as a stability index for intra-crop variation.Whether the determinant factor of invalidity of TPL was the extensive intra-crop variation in the lower yielding second site can be assessed in future research.Chrysanthi PANKOU Louloudia KOULYMBOUDI Fokion PAPATHANASIOU Fotakis GEKAS Ioannis PAPADOPOULOS Evaggelia SINAPIDOU Ioannis S.TOKATLIDIS 2022Journal of Integrative Agriculture2022,21,12:0
12异十六烷和十氢萘的非预混火焰熄灭特性的实验研究显示文摘在常压和初始温度443 K的条件下,使用对冲火焰技术实验研究了异十六烷和十氢萘非预混火焰的熄灭特性,测得其熄灭极限K_(ext),并与正十六烷/氮气的K_(ext)进行了对比。实验结果表明,随着燃料侧燃料质量分数的增加,异十六烷/氮气和十氢萘/氮气的K_(ext)增大,异十六烷/氮气的K_(ext)低于相同燃料浓度的正十六烷/氮气的K_(ext),分析表明,这主要是由于异十六烷在氧化过程中产生了稳定不易分解的产物所致。李博 张海 Fokion N Egolfopoulos 2014工程热物理学报2014,35,4:0
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