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7篇 您的检索式:作者名="M. Hatami"
    题名 作者 年代 出处 被引量
1Tung oil: An autonomous repairing agent for self-healing epoxy coatings显示文摘M. Samadzadeh S. Hatami Boura M. Peikari A. Ashrafi M. Kasiriha 2010Progress in Organic Coatings2010,,4:2
2Dynamics of entanglement of a three-level atom in motion interacting with two coupled modes including parametric down conversion显示文摘M.J. Faghihi M.K. Tavassoly M. Hatami 2014Physica A: Statistical Mechanics and its Applications2014,,:1
3Analysis of turbulent MHD Couette nanofluid flow and heat transfer using hybrid DTM-FDM显示文摘S. Mosayebidorcheh M. Sheikholeslami M. Hatami D.D. Ganji 2016Particuology2016,14,3:1
4Exact Solutions of the Dirac Equation for an Electron in a Magnetic Field with Shape Invariant Method显示文摘把 Virac 方程岩山的准确答案基于我们获得的形状 mvanance 性质面对某个变化移动的一个电子磁性删除,然后,我们也显示出它的非相对论的限制。M. R. Setare O. Hatami 2008Chinese Physics Letters2008,25,11:1
5Solid-Phase Microextraction Gas Chromatography for Determination of Some Organophosphorus Pesticides显示文摘M.A. Farajzadeh M. Hatami 2004Chromatographia (-)2004,,3:1
6活动层合板的自由振动显示文摘双轴向位移材料在工业领域具有广泛的应用,例如生产线上的纸张、塑料和复合材料,能源运输与传送带等。在许多实例中,材料的位移是各向异性的,即由单层正交各向异性材料或多个单层正交异性组成。利用经典板壳理论来研究平面受力层合板的对称性轴向位移,它包括正交,斜交和各向异性板。首先,发展精确的方法来分析多跨斜交层的振动,然后,用半解析有限元条分法处理任意边界条件下的对称层合板位移。通过有限元条分法,平移位移模型之间可以设置弹性支撑或者是刚性支撑。这种支撑可以是点、线或者是局部分布式的支撑。S. Hatami M. Azhari M.M. Saadatpour 2008钢结构2008,23,2:0
7Optimization of the fuel rod's arrangement cooled by turbulentnanofluids flow in pressurized water reactor (PWR)显示文摘In this paper, response surface methodology(RSM) based on central composite design(CCD) is applied to obtain an optimization design for the fuel rod's diameter and distance cooled by turbulent Al_2O_3–water nanofluid for a typical pressurized water reactor(PWR). Fuel rods and nanofluid flow between them are simulated 3D using computational fluid dynamics(CFD) by ANSYS-FLUNET package software. The RNG k–ε model is used to simulate turbulent nanofluid flow between the rods. The effect of different nanoparticles concentration is also investigated on the Nusselt number from heat transfer efficiency view point. Results reveal that when distance parameter(a) is in the minimum level and diameter parameter(r) is in the maximum possible level, cooling the rods will be better due to higher Nusselt number in this situation. Also, using the different nanoparticles on the cooling process confirms that Al_2O_3 averagely 17% and TiO_2 10% improve the Nusselt numbers.M. Hatami MJ.Z. Ganfi I. Sohrabiasl D. Jing 2017Chinese Journal of Chemical Engineering2017,25,6:0
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