Tan Zouqing, Ren Xiangcheng
School of Mechanical Engineering and Rail Transit, Changzhou University, Changzhou 213164, China.
Micromachines (Basel). 2025 Jan 5;16(1):63. doi: 10.3390/mi16010063.
This study analyzes the impact of slip-dependent zeta potential on the heat transfer characteristics of nanofluids in cylindrical microchannels with consideration of thermal radiation effects. An analytical model is developed, accounting for the coupling between surface potential and interfacial slip. The linearized Poisson-Boltzmann equation, along with the momentum and energy conservation equations, is solved analytically to obtain the electrical potential field, velocity field, temperature distribution, and Nusselt number for both slip-dependent (SD) and slip-independent (SI) zeta potentials. Subsequently, the effects of key parameters, including electric double-layer (EDL) thickness, slip length, nanoparticle volume fraction, thermal radiation parameters, and Brinkman number, on the velocity field, temperature field, and Nusselt number are discussed. The results show that the velocity is consistently higher for the SD zeta potential compared to the SI zeta potential. Meanwhile, the temperature for the SD case is higher than that for the SI case at lower Brinkman numbers, particularly for a thinner EDL. However, an inverse trend is observed at higher Brinkman numbers. Similar trends are observed for the Nusselt number under both SD and SI zeta potential conditions at different Brinkman numbers. Furthermore, for a thinner EDL, the differences in flow velocity, temperature, and Nusselt number between the SD and SI conditions are more pronounced.
本研究在考虑热辐射效应的情况下,分析了滑移相关的zeta电位对圆柱形微通道中纳米流体传热特性的影响。建立了一个分析模型,该模型考虑了表面电位和界面滑移之间的耦合。通过解析求解线性化的泊松-玻尔兹曼方程以及动量和能量守恒方程,以获得滑移相关(SD)和滑移无关(SI)zeta电位下的电位场、速度场、温度分布和努塞尔数。随后,讨论了包括电双层(EDL)厚度、滑移长度、纳米颗粒体积分数、热辐射参数和布林克曼数在内的关键参数对速度场、温度场和努塞尔数的影响。结果表明,与SI zeta电位相比,SD zeta电位下的速度始终更高。同时,在较低的布林克曼数下,特别是对于较薄的EDL,SD情况下的温度高于SI情况下的温度。然而,在较高的布林克曼数下观察到相反的趋势。在不同布林克曼数的SD和SI zeta电位条件下,努塞尔数也观察到类似的趋势。此外,对于较薄的EDL,SD和SI条件之间的流速、温度和努塞尔数差异更为明显。