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FLOW RESISTANCE AND HEAT TRANSFER REDUCTION BEHAVIOR OF ORGANIC BRINE IN THE COLD HEAT TRANSPORTATION SYSTEM BY ADDING DRAG REDUCTION SURFACTANT

机译:添加减阻剂在冷热运输系统中有机卤水的流动阻力和换热行为

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There has been some interest in the flow resistance and heat transfer reduction effects of some brine flow with drag reduction additives in order to make on effective heat energy transportation system practicable. Therefore, the flow drag and forced convection heat transfer characteristics of organic brine flow (Ethylene Glycol (EG) solution) with drag reducing surfactant (Oleyldihydroxyetyl Amine Oxide (ODEAO) of non-ion surfactant) have been investigated. The main parameters in the present study were the concentration of EG (0 to 50 mass %), the concentration of ODEAO (about 2500 to 9000ppm) and temperature of the EG brine with ODEAO (-20 to 15 °C). It is found that the flow friction and heat transfer coefficients of EG brine with ODEAO are dramatically lower than those of water or the EG brine. This flow drag and heat transfer reduction effect was caused by the surfactant’s rod-like micelles aggregation, which was broken up by a high wall shear stress. The eynolds number range for the flow drag and heat transfer reduction of the EG brine with ODEAO was wider as compared with the ODEAO water solution. Also, it was found that the surfactant’s rod-like micelles aggregation was reinforced by a polar-nonpolar solubilization between the ODEAO’s rod-like micelles and the EG molecules. Finally, Useful non-dimensional correlative equations (flow resistance, heat transfer and Reynolds number) for maximum flow drag and heat transfer reduction effect are derived in terms of various non-dimensional parameters.
机译:为了使有效的热能传输系统切实可行,人们对使用减阻添加剂的一些盐水流的流动阻力和减少传热的效果感兴趣。因此,研究了具有减阻表面活性剂(非离子表面活性剂的油酸二羟基乙胺氧化物(ODEAO))的有机盐水流(乙二醇(EG)溶液)的流动阻力和强制对流换热特性。本研究的主要参数是EG的浓度(0至50质量%),ODEAO的浓度(约2500至9000ppm)和带有ODEAO的EG盐水的温度(-20至15°C)。发现与ODEAO相比,EG盐水的流动摩擦系数和传热系数显着低于水或EG盐水的流动系数和传热系数。流动阻力和传热减少效果是由于表面活性剂的棒状胶束聚集而引起的,这种聚集被高壁剪切应力破坏了。与ODEAO水溶液相比,用ODEAO降低EG盐水的流动阻力和传热的艾诺数范围更宽。另外,还发现ODEAO的棒状胶束与EG分子之间的极性-非极性增溶作用增强了表面活性剂的棒状胶束聚集。最后,根据各种无量纲参数推导了有用的无量纲相关方程(流阻,传热和雷诺数),以实现最大的流动阻力和减少传热效果。

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    《》|2007年||共8页
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    N.HARUKI; H.INABA; A.HORIBE;

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