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Numerical study of heat and mass transfer enhancement for bubble absorption process of ammonia-water mixture without and with nanofluids

机译:含和不含纳米流体的氨水混合物气泡吸收过程中传热和传质增强的数值研究

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摘要

This paper presents a detailed analysis of a combined heat and mass transfer enhancement by using binary nanofluid in NH3/H2O bubble absorption processes. A differential mathematical model of ammonia-water absorption has been developed on the basis of mass and energy balances and heat and mass transfer equations, in order to analyses the effects of binary nanofluid on ammonia absorption. A finite difference technique was employed to solve the numerical model. A parametric analysis was conducted to assess the effect of key parameters are the effective absorption rate, the concentration of nanoparticles, kinds of additives of nanoparticles, the bubble diameter and the gas holdup on the performance of the absorber. As expected, the addition of nanoparticles enhances the absorption performance during the bubble absorption process. Also, it is found that the highest effective absorption ratio was reported for solution with Copper (Cu). The concentration of nanoparticles has a significant effect on the absorber size.
机译:本文介绍了在NH3 / H2O气泡吸收过程中使用二元纳米流体对传热和传质的综合增强作用的详细分析。为了分析二元纳米流体对氨吸收的影响,在质量和能量平衡以及传热和传质方程的基础上,开发了一种氨-水吸收的微分数学模型。采用有限差分技术求解数值模型。进行了参数分析,以评估关键参数对有效吸收率,纳米粒子的浓度,纳米粒子的添加剂种类,气泡直径和气体滞留率对吸收器性能的影响。如预期的那样,纳米颗粒的添加增强了气泡吸收过程中的吸收性能。而且,发现对于铜(Cu)溶液报告了最高的有效吸收率。纳米粒子的浓度对吸收体的尺寸有重大影响。

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