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Introduction
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作者 Qihu Qian 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2019年第3期443-444,共2页
At the instigation of some of Emeritus Professor Edwin Thomas(Ted)Brown’s PhD students,a Colloquium in his honour to celebrate his retirement and a long and distinguished career in rock mechanics was held in Brisbane... At the instigation of some of Emeritus Professor Edwin Thomas(Ted)Brown’s PhD students,a Colloquium in his honour to celebrate his retirement and a long and distinguished career in rock mechanics was held in Brisbane,Australia on the 4th December 2018,Ted’s 80th birthday. 展开更多
关键词 INTRODUCTION instigation 80th BIRTHDAY
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A Numerical Investigation of Nanocomposite of Copper and Titanium Dioxide in Water Based Fluid Influenced by Instigated Magnetic Region
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作者 Z.Iqbal Ehtsham Azhar +1 位作者 E.N.Maraj Zaffar Mehmood 《Communications in Theoretical Physics》 SCIE CAS CSCD 2018年第8期239-248,共10页
Presence of external electrical field plays a vital role in heat transfer and fluid flow phenomena. Keeping this in view present article is a numerical investigation of stagnation point flow of water based nanoparticl... Presence of external electrical field plays a vital role in heat transfer and fluid flow phenomena. Keeping this in view present article is a numerical investigation of stagnation point flow of water based nanoparticles suspended fluid under the influence of induced magnetic field. A detailed comparative analysis has been performed by considering Copper and Titanium dioxide nanoparticles. Utilization of similarity analysis leads to a simplified system of coupled nonlinear differential equations, which has been tackled numerically by means of shooting technique followed by Runge-Kutta of order 5. The solutions are computed correct up to 6 decimal places. Influence of pertinent parameters is examined for fluid flow, induced magnetic field, and temperature profile. One of the key findings includes that magnetic parameter plays a vital role in directing fluid flow and lowering temperature profile. Moreover, it is concluded that Cu-water based nanofluid high thermal conductivity contributes in enhancing heat transfer efficiently. 展开更多
关键词 water based fluid instigated magnetic region nanoscale particles Copper and titanium dioxide stagnation point flow numerical solutions
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