首页> 外文期刊>World Journal of Nano Science and Engineering >Influence of the Coolant Flow Containing Silver Nanoparticles (Ag) from an Aqueous Solution Based on Ethylene Glycol (EG50%) on the Thermal-Hydraulic Performance of an Automotive Radiator
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Influence of the Coolant Flow Containing Silver Nanoparticles (Ag) from an Aqueous Solution Based on Ethylene Glycol (EG50%) on the Thermal-Hydraulic Performance of an Automotive Radiator

机译:含银纳米颗粒(Ag)的冷却剂流量的影响,基于乙二醇(EG50%)对汽车散热器的热液压性能的水溶液

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A theoretical analysis of the influence of the flow of a coolant containing silver nanoparticle (Ag) in an automotive radiator is presented. The coolant fluid is composed of water or an aqueous solution of Ethylene-Glycol (EG50%) and silver nanoparticles. Ethylene glycol (EG) has been used in automobile radiators for many years due to its compatibility with metals and its anti-cooling properties. Silver nanoparticles are being incorporated into the development of high-precision surgical equipment. It is shown that the rate of heat transfer increases significantly using silver nanoparticles and ethylene glycol and water. There is a maximum for heat exchange between fluids in all analyzed coolant flows--the maximum moves to higher airflow rates when the coolant flow rate is increased. However, the energy dissipation in the stream also increases, but the relationship between the energy dissipated in the flow and the energy transferred in the form of heat is low, which justifies the use of silver nanoparticles and ethylene glycol, or silver nanoparticles and water as a coolant in the automotive vehicle radiator.
机译:介绍了含有银纳米粒子(Ag)在汽车辐射器中的冷却剂流动的影响的理论分析。冷却剂流体由水或乙二醇(EG50%)和银纳米颗粒的水溶液组成。由于其与金属及其抗冷却性能的相容性,乙二醇(例如)已用于汽车辐射器多年。银纳米粒子被纳入高精度外科设备的开发中。结果表明,使用银纳米粒子和乙二醇和水显着增加了传热速度。在所有分析的冷却剂流中,在流体中的流体之间存在最大的热交换 - 当冷却剂流速增加时,最大移动到更高的气流速率。然而,流中的能量耗散也增加,但是在流动中消散的能量与热量形式的能量之间的关系较低,这使得使用银纳米颗粒和乙二醇或银纳米颗粒和水作为汽车车辆散热器中的冷却剂。

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