Mohammad Reem Sabah, Aldlemy Mohammed Suleman, Hassan Mu'ataz S Al, Abdulla Aziz Ibrahim, Scholz Miklas, Yaseen Zaher Mundher
Department of Business Administration, Faculty of Administration and Economic, University of Misan, Amarah 62001, Iraq.
Department of Mechanical Engineering, College of Mechanical Engineering Technology, Benghazi 11199, Libya.
Nanomaterials (Basel). 2021 Nov 16;11(11):3094. doi: 10.3390/nano11113094.
Covalent-functionalized graphene nanoplatelets (CF-GNPs) inside a circular heated-pipe and the subsequent pressure decrease loss within a fully developed turbulent flow were discussed in this research. Four samples of nanofluids were prepared and investigated in the ranges of 0.025 wt.%, 0.05 wt.%, 0.075 wt.%, and 0.1 wt.%. Different tools such as field emission scanning electron microscopy (FE-SEM), ultraviolet-visible-spectrophotometer (UV-visible), energy-dispersive X-ray spectroscopy (EDX), zeta potential, and nanoparticle sizing were used for the data preparation. The thermophysical properties of the working fluids were experimentally determined using the testing conditions established via computational fluid dynamic (CFD) simulations that had been designed to solve governing equations involving distilled water (DW) and nanofluidic flows. The average error between the numerical solution and the Blasius formula was ~4.85%. Relative to the DW, the pressure dropped by 27.80% for 0.025 wt.%, 35.69% for 0.05 wt.%, 41.61% for 0.075 wt.%, and 47.04% for 0.1 wt.%. Meanwhile, the pumping power increased by 3.8% for 0.025 wt.%, 5.3% for 0.05 wt.%, 6.6% for 0.075%, and 7.8% for 0.1 wt.%. The research findings on the cost analysis demonstrated that the daily electric costs were USD 214, 350, 416, 482, and 558 for DW of 0.025 wt.%, 0.05 wt.%, 0.075 wt.%, and 0.1 wt.%, respectively.
本研究讨论了圆形加热管内的共价功能化石墨烯纳米片(CF-GNPs)以及充分发展的湍流中随后的压力降损失。制备了四个纳米流体样品,并在0.025 wt.%、0.05 wt.%、0.075 wt.%和0.1 wt.%的范围内进行了研究。使用了诸如场发射扫描电子显微镜(FE-SEM)、紫外可见分光光度计(UV-visible)、能量色散X射线光谱仪(EDX)、zeta电位和纳米颗粒尺寸测量等不同工具来准备数据。工作流体的热物理性质是通过计算流体动力学(CFD)模拟建立的测试条件进行实验测定的,该模拟旨在求解涉及蒸馏水(DW)和纳米流体流动的控制方程。数值解与布拉修斯公式之间的平均误差约为4.85%。相对于DW,0.025 wt.%时压力下降了27.80%,0.05 wt.%时下降了35.69%,0.075 wt.%时下降了41.61%,0.1 wt.%时下降了47.04%。同时,0.025 wt.%时泵功率增加了3.8%,0.05 wt.%时增加了5.3%,0.075 wt.%时增加了6.6%,0.1 wt.%时增加了7.8%。成本分析的研究结果表明,对于0.025 wt.%、0.05 wt.%、0.075 wt.%和0.1 wt.%的DW,每日电费分别为214美元、350美元、416美元、482美元和558美元。