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A NUMERICAL STUDY OF FLOW BOILING HEAT TRANSFER OF NANOEMULSION IN MINI-CHANNEL HEAT EXCHANGER

机译:微通道换热器内微乳流动沸腾传热的数值研究

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In this study, a numerical study has been performed on the two-phase heat transfer of a new nanostructured heat transfer fluid: Water-in-Polyalphaolefin (PAO) Nanoemulsion Fluid inside a mini-channel heat exchanger using ANSYS FLUENT. Nanoemulsion fluids are liquid suspensions of nanosized droplets, which are part of a broad class of colloidal dispersions. The nanoemulsion fluid can be formed spontaneously by self-assembly, in which these nanodroplets are in fact swollen micelles. To simplify the complexity of the numerical model, the nanoemulsion fluid was then treated as a homogenous fluid during single-phase and only the water vaporizes during the phase change. The volume of fraction (VOF) model with Pressure-Velocity coupling based Semi Implicit Method for Pressure Linked Equations (SIMPLE) iterative algorithm is employed to solve the continuity, momentum, energy equations in two dimensional domains. The thermophysical properties of the nanoemulsion fluid were measured and used for the current simulation. The results were verified using the experimental results and has shown good agreement. This study has demonstrated the feasibility of simplyig the simulation of flow boiling heat transfer of this new heat transfer fluid through treating it as a homogenous fluid during single-phase convective heat transfer and separating the vapor phase of the nano-micelles during flow boiling. This study has also shown that this Water-in-PAO nanoemulsion could function as a good and alternative conventional working fluid in heat transfer applications.
机译:在这项研究中,已经对新型纳米结构传热流体的两相传热进行了数值研究:使用ANSYS FLUENT的微型通道换热器中的水包聚α-烯烃(PAO)纳米乳液流体。纳米乳液是纳米级液滴的液体悬浮液,是各种胶体分散体的一部分。纳米乳液流体可以通过自组装自发形成,其中这些纳米液滴实际上是溶胀的胶束。为了简化数值模型的复杂性,然后将纳米乳液流体在单相过程中视为均质流体,并且在相变过程中仅水汽化。采用基于压力-速度耦合的半隐式压力关联方程迭代方法(SIMPLE)的分数体积(VOF)模型迭代算法,在二维域中求解连续性,动量,能量方程。测量了纳米乳液流体的热物理性质,并将其用于电流模拟。使用实验结果验证了结果,并显示出良好的一致性。这项研究证明了通过在单相对流换热过程中将其视为均质流体并在流动沸腾过程中分离纳米胶束的汽相来简单模拟这种新型传热流体的流动沸腾传热的可行性。这项研究还表明,这种PAO包水纳米乳液可以在传热应用中作为优良的替代常规工作流体。

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