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Modelling Study on Internal Energy Loss Due to Entropy Generation for Non-Darcy Poiseuille Flow of Silver-Water Nanofluid: An Application of Purification

机译:非达西植物纳米流体熵生成熵生成的内部能量损失建模研究:纯化应用

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摘要

In this paper, an analytical study of internal energy losses for the non-Darcy Poiseuille flow of silver-water nanofluid due to entropy generation in porous media is investigated. Spherical-shaped silver (Ag) nanosize particles with volume fraction 0.3%, 0.6%, and 0.9% are utilized. Four illustrative models are considered: (i) heat transfer irreversibility (HTI), (ii) fluid friction irreversibility (FFI), (iii) Joule dissipation irreversibility (JDI), and (iv) non-Darcy porous media irreversibility (NDI). The governing equations of continuity, momentum, energy, and entropy generation are simplified by taking long wavelength approximations on the channel walls. The results represent highly nonlinear coupled ordinary differential equations that are solved analytically with the help of the homotopy analysis method. It is shown that for minimum and maximum averaged entropy generation, 0.3% by vol and 0.9% by vol of nanoparticles, respectively, are observed. Also, a rise in entropy is evident due to an increase in pressure gradient. The current analysis provides an adequate theoretical estimate for low-cost purification of drinking water by silver nanoparticles in an industrial process.
机译:本文研究了由于多孔介质中熵产生导致的银水纳米流体的非达西泛源流动的内部能量损失的分析研究。使用体积分数0.3%,0.6%和0.9%的球形银(Ag)纳米颗粒。考虑了四种说明性型号:(i)传热不可逆性(HTI),(ii)流体摩擦不可逆性(FFI),(III)焦耳耗散不可逆性(JDI),(IV)非达碳多孔介质不可逆转(NDI)。通过在通道壁上取出长波长近似来简化连续性,动量,能量和熵产生的控制方程。结果代表了在同型分析方法的帮助下分析的高度非线性耦合常微分方程。表明,对于最小和最大平均熵产生,分别观察到0.3重量%和0.9%的纳米颗粒。此外,由于压力梯度的增加,熵的增加是显而易见的。目前的分析提供了在工业过程中银纳米粒子的饮用水的低成本净化的充分理论估算。

著录项

  • 期刊名称 Entropy
  • 作者单位
  • 年(卷),期 2018(20),11
  • 年度 2018
  • 页码 851
  • 总页数 22
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

    机译:能量损失;银 - 水纳米流体;磁场;多孔介质;非达西泊头流动;

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