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首页> 外文期刊>Journal of Thermal Science and Technology >Physical instability suppression of microencapsulated phase change material(MPCM) suspensions
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Physical instability suppression of microencapsulated phase change material(MPCM) suspensions

机译:微囊化相变材料(MPCM)悬浮液的物理不稳定性抑制

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摘要

Physical Instability of the MPCM suspensions tends to suppress suspensions’ heat transportation in heat exchangers and thermal energy storage tanks. The aim of current work is to determine the optimal surfactant and its content, pH-value, and density of the carrier fluid by experimental investigation. In current work, the near infrared transmitting and backscattering fluxes were measured using a universal stability analyzer (TURBISCAN LAb). Such two fluxes characterize the physical stability. It was found, the sodium dodecyl sulfate (SDS) was the better surfactant among the selected surfactants. Experimental data indicates that the optimum SDS mass concentration ratio was 0.2wt.%. The best pH-value was 8 among the selected values. It was also found the MPCM suspension was the most stable at the carrier fluid density of 0.941 g?cm-3. The density difference between the dispersion phase and carrier fluid is the most significant parameter. A near zero density difference, combining the appropriate setup of the other parameters involving surfactant type, its concentration, pH-value, can improve the physical stability of MPCM suspensions significantly, enabling their applications in heat transfer and thermal energy storage.
机译:MPCM悬架的物理不稳定性趋于抑制悬架在热交换器和热能储罐中的热传输。当前工作的目的是通过实验研究确定最佳的表面活性剂及其含量,pH值和载液的密度。在当前工作中,使用通用稳定性分析仪(TURBISCAN LAb)测量了近红外透射和反向散射通量。这两个通量表征了物理稳定性。发现在所选表面活性剂中十二烷基硫酸钠(SDS)是更好的表面活性剂。实验数据表明,最佳SDS质量浓度比为0.2wt。%。在所选值中,最佳pH值为8。还发现MPCM悬浮液在0.941g?cm-3的载液密度下是最稳定的。分散相和载体流体之间的密度差是最重要的参数。接近零的密度差,结合涉及表面活性剂类型,其浓度,pH值的其他参数的适当设置,可以显着提高MPCM悬浮液的物理稳定性,使其能够用于热传递和热能存储。

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