首页> 外文会议>ASME Fluids Engineering Division Meeting >PRESSURE DROP STUDY IN CYLINDRICAL MICROCHANNELS: USING GRAPHENE OXIDE AND MAGNESIA NANOFLUIDS
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PRESSURE DROP STUDY IN CYLINDRICAL MICROCHANNELS: USING GRAPHENE OXIDE AND MAGNESIA NANOFLUIDS

机译:圆柱形微通道中的压降研究:使用石墨烯氧化物和镁质纳米流体

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The pressure drop and friction factor for the flow in horizontal smooth microtubes were investigated experimentally over a wide variety of Reynolds numbers in the laminar region under hydrodynamically fully developed conditions. The plain pipes are fabricated from 316 stainless steel and provided by (Swagelok Co., USA) with inner diameters of 0.770 mm and 0.510 mm and the length is 500 mm for both microchannels. For this purpose, graphene oxide (GO) nanosheets and magnesium oxide (MgO) nanoparticles were synthesized then characterized using standard methods such as X-ray powder diffractometer (XRD) and Transmission Electron Microscope (TEM). The prepared GO and MgO nanomaterial were added to distilled water to prepare nanofluids with mass fractions of 0.25, 0.5, 0.75, and 1 wt. % as working fluids and passes through one end of the microchannel to the other by a magnetically coupled gear programmable pump with variable speed that drives it. This study predicts the behavior of fluid flow in the microchannel for the range of dimensions used. Comparisons of pressure drop characteristics are given in terms of nanoparticle mass fractions and tube diameters. As a result, MgO nanofluids recorded higher pressure drop with an increase in the concentration of the nanofluids due to its higher viscosity followed by GO nanofluids.
机译:通过在流体动力学完全发育的条件下通过实验研究水平光滑微管中的流动的压降和摩擦系数在层状区域中的各种雷诺数上进行研究。普通管道由316不锈钢制成,由(Swagelok Co.,USA)提供,内径为0.770 mm,0.510mm,微通道的长度为500 mm。为此目的,合成石墨烯(GO)纳米片和氧化镁(MgO)纳米颗粒,然后使用标准方法如X射线粉衍射仪(XRD)和透射电子显微镜(TEM)。将制备的GO和MgO纳米材料加入蒸馏水中以制备纳米流体,质量级分0.25,0.5,0.75和1wt。作为工作流体的%,通过磁耦合齿轮可编程泵通过微通道的一端,通过驱动它的可变速度。该研究预测了微通道中的流体流动的行为在所使用的尺寸范围内。根据纳米颗粒质量级分和管直径给出压降特性的比较。结果,MgO纳米流体由于其较高粘度而被纳米流体的浓度增加,纳米流体的浓度较高。

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