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two-dimensional numerical study of the transient flow conditions in complete shock tunnel
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نویسنده
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mohsen a.m. ,yusoff m.z. ,aljibori hakim s. sultan ,al-falahi a. ,kadhum abdul amir h.
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منبع
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journal of applied and computational mechanics - 2021 - دوره : 7 - شماره : 2 - صفحه:956 -964
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چکیده
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In the current research, an axisymmetric model is developed to study highspeed unsteady flow in the test section of a 7 meterlong shock tunnel. the computational calculations of the shock tunnel are conducted using the fluent cfd solver. the finite volume method (fvm) is used to discretize the governing equations of mass, momentum, and energy. the accuracy of the numerical model is investigated with firstorder upwind, secondorder upwind, and thirdorder muscl schemes. adaptive mesh refinement is implemented to resolve the shock wave and contact surface regions accurately. the numerical results are compared with theoretical calculations and experimental data from experimental tests and the comparison shows good agreement. different test gases of helium, air and co2, are utilized in the current study. the results show that steady test conditions are maintained for a longer test time by adjusting the pressure ratio and gas combination across the diaphragm. the highest shock wave speed and strength are achieved for a gas combination of heliumco2, but a longer test duration is observed when using air as the test gas.
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کلیدواژه
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shock tunnel ,supersonic flow ,shock wave ,cfd ,mach number
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آدرس
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university of warith al-anbiyaa, department of air-conditioning and refrigeration techniques engineering, iraq, universiti tenaga nasional, centre of advanced computational engineering, college of engineering, malaysia, university of warith al-anbiyaa, department of air-conditioning and refrigeration techniques engineering, iraq, sheridan college, davis campus, canada, university of al-ameed, iraq
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پست الکترونیکی
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amir1719@gmail.com
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Authors
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