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10篇 您的检索式:作者名="M. GHOLAMI"
    题名 作者 年代 出处 被引量
1On the MHD squeeze flow between two parallel disks with suction or injection via HAM and HPM显示文摘分析被执行了学习磁电机水动力学(MHD ) 的问题挤压在二个无限的、平行磁盘之间的电子上进行的液体的流动。调用 Homotopy 分析方法(火腿) 的分析方法和 Homotopy 不安方法(HPM ) 被用来解决非线性的微分方程。在解决这个问题作为边界价值问题(BVP ) 与数字分析的一种类型比较显示出能力和建议方法的宽范围的应用被尝试了。另外,速度领域为物理参数的各种各样的值图形地被计算了并且出现。现在的工作的目的是调查效果在速度领域上挤压雷纳兹数字, Hartmann 数字和吸 / 注射参数。而且,结果表明火腿和 HPM 很有效、方便。D. D. GANJI M. ABBASI J. RAHIMI M. GHOLAMI I. RAHIMIPETROUDI 2014Frontiers of Mechanical Engineering2014,9,3:2
2Statistical Treatment of Low-Energy Nuclear Level Schemes显示文摘水平密度参数和背移动精力 E_1 越过整个周期表与 A 值为原子核被决定从适合在中子束缚能附近在低刺激精力完成水平计划。我们发现精力背移动 E_1 显示出复杂行为并且取决于原子核的类型,弄平甚至,奇怪集体、奇怪奇怪。Thespin 截止因素也为上面提及的原子核被调查了。结果在水平密度上与以前的结果和不同试验性的数据相比。M. Gholami M. Kildir A.N. Behkami 2007Communications in Theoretical Physics2007,47,2:2
3Seismic performance of flange plate connections between steel beams and box columns显示文摘M. Gholami A. Deylami M. Tehranizadeh 2013Journal of Constructional Steel Research2013,,:2
4Comparison of intelligence science techniques and empirical methods for prediction of blasting vibrations显示文摘M. Mohamadnejad R. Gholami M. Ataei 2011Tunnelling and Underground Space Technology incorporating Trenchless Technology Research2011,,:1
5An additive model approach for estimating returns to scale in imprecise data envelopment analysis显示文摘M. Khodabakhshi Y. Gholami H. Kheirollahi 2009Applied Mathematical Modelling2009,,:1
6Comparison of intelligence science techniques and empirical methods for prediction of blasting vibrations显示文摘M. Mohamadnejad R. Gholami M. Ataei 2011Tunnelling and Underground Space Technology incorporating Trenchless Technology Research2011,,:1
7Prediction of Repair and Maintenance Costs of Two-wheel Drive Tractors in Iran显示文摘M. Rashidi I. Ranjbar M. Gholami S. Abbassi 2010Journal of Agricultural Science and Technology2010,4,2:0
8Comparison of Optimal Place and Size of TCSC and SVC for Maximum Available Transfer Capability显示文摘M. Modiri A. Gholami A. Kazemi 2010Journal of Energy and Power Engineering2010,4,3:0
9Ignition Conditions for Simulated Fuel Pellets in Degenerate Plasma显示文摘A high-density, low-temperature plasma can be obtained during the compression phase in inertial confinement fusion. When high density and low temperature are reached in the plasma in the fast ignition approach, the plasma electrons can be degenerate. The electronic stopping of a slow ion is smaller than that given by the classical formula, because some transitions between the electron states are forbidden. In this case, bremsstrahlung emission is strongly suppressed and the ignition temperature becomes lower than that in classical plasma. The equations that predict the behavior of these plasmas are different from the classical ones, and this is the main factor in the process of decreasing the ignition temperature of the plasma. In this work, physical conditions of ignition are studied by calculating the effect of radiation loss on the ignition temperature for a simulated fuel pellet, (D/T x / 3 He y ), in degenerate plasma. In fast ignition, the energy needed for obtaining high densities is minimized and the gain can be increased considerably.M. MAHDAVI A. GHOLAMI 2013Plasma Science and Technology2013,15,4:0
10Nuclear Level Density with Non-zero Angular Momentum显示文摘A.N. Behkami M. Gholami M. Kildir M. Soltani 2006Communications in Theoretical Physics2006,46,3X:0
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