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首页> 外文期刊>International Journal of Heat and Mass Transfer >Light-induced latent heat reduction of silver nanofluids: A molecular dynamics simulation
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Light-induced latent heat reduction of silver nanofluids: A molecular dynamics simulation

机译:光诱导的银纳米流体的潜热减量:分子动力学模拟

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In recent years, some researches have revealed the addition of nanoparticles into base fluids can not only enhance the absorption of solar energy but also have an obvious influence on the latent heat of vaporization (LHV). In present work, a calculation model is developed based on the combination of molecular dynamics (MD) simulation and the electromagnetic theory to study the influence of the localized surface plasmon resonance (LSPR) effect on the LHV of silver nanofluids in the light-induced distillation process. The results show the LHV of silver nanofluids is slightly higher than that of pure water without the LSPR effect, and the water molecules are completely absorbed on the surface of silver nanoparticles due to the attraction force. However, under the effect of LSPR, the LHV of silver nanofluids is decreased with the increasing intensity of the local enhanced electric field on the surface of the silver nanoparticle. When the intensity reaches 3.0 × 10~(10) V/m, the LHV of silver nanofluids is reduced by 65.84% relative to that of pure water. Both of the kinetic energy and potential energy of water molecules under the local enhanced electric field induced by the LSPR are also increased with the intensity of electric field, which leads to a state conversion of water molecules from an inactive state to an active state. The required energy for water molecules from a liquid state to a vapor state is reduced under the illumination of the resonant light. Hence, the LSPR effect of nanoparticles is a significant influence in the enhanced distillation of the plasmon nanofluids.
机译:近年来,一些研究表明,将纳米颗粒添加到基础液中不仅可以增强太阳能的吸收,而且对蒸发(LHV)的潜热产生明显影响。在目前的工作中,基于分子动力学(MD)仿真和电磁理论的组合来开发计算模型,以研究局部表面等离子体共振(LSPR)对光诱导蒸馏中的银纳米流体LHV的影响过程。结果表明,没有LSPR效应的纯净水的LHV略高于纯净水,并且由于吸引力,水分子完全吸收在银纳米颗粒的表面上。然而,在LSPR的效果下,银纳米流体的LHV随着银纳米粒子表面上的局部增强电场的强度而降低。当强度达到3.0×10〜(10)v / m时,银纳米流体的LHV相对于纯水减少65.84%。通过电场的强度也增加了由LSPR引起的局部增强电场下的水分子的动能和水分子的潜在能量,这导致水分子从无活性状态转化为活性状态。在共振光的照明下,从液态到液态到蒸汽状态的水分子所需的能量减小。因此,纳米颗粒的LSPR效应是对等离子体纳米流体的增强蒸馏的显着影响。

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