具有质量阻力和质量泄漏的单向等温扩散传质过程的最小质量-恒量耗散曲线

IF 4.4 2区 工程技术 Q1 ENGINEERING, MULTIDISCIPLINARY
LinGen Chen, ShaoJun Xia
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引用次数: 0

摘要

作为一个新概念,传质是传质理论核心的孪生兄弟之一。它可以描述质量传递过程(MTPes)的质量传递能力,就像热传递能力一样。因此,质量恒定耗散可以用来评估传质能力的损失。最小传质耗散(MMED)可用于优化具有质量泄漏和传质规律(g∝Δ(c),其中 c 表示浓度)的单向等温扩散 MTPes。对于低浓度侧质量转移关键组分的给定净量,可通过平均优化法获得等温扩散 MTPes 的 MMED 的最优化条件。分析了质量转移量和质量泄漏量对优化结果的影响,并将获得的优化曲线与恒定浓度差(c1 - c2 = 常值)和恒定浓度比(c1 / c2 = 常值)的 MTP 曲线进行了比较。对于无质量泄漏的 MTP 的 MMED,高浓度侧和低浓度侧的关键组分浓度(KCC)差的平方与高浓度侧的惰性组分浓度的乘积是一个常数,而有质量泄漏的高浓度侧和低浓度侧的 KCC 的最佳关系与前者明显不同。当质量泄漏相对较小时,采用 c1 - c2 = const 策略的 MTP 优于采用 c1 / c2 = const 策略的 MTP,随着质量泄漏的增加,后者优于前者。质量半径概念、有限时间热力学和平均优化方法的结合是优化 MTP 的有效工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Minimum mass-entransy dissipation profile for one-way isothermal diffusive mass-transfer process with mass-resistance and mass-leakage

As a new concept, mass-entransy is one of the twins in the core of entransy theory. It can describe mass-transfer ability for mass-transfer processes (MTPes), just as thermal-entransy for describing heat-transfer ability. Accordingly, mass-entransy dissipation can be utilized to evaluate the loss of mass-transfer ability. Minimum mass-entransy dissipation (MMED) is utilized to optimize one-way isothermal diffusive MTPes with mass-leakage and mass-transfer law (g ∝ Δ(c), where c means concentration). For a given net amount of mass-transferred key components at the low-concentration side, optimality-condition for the MMED of isothermal diffusive MTPes is obtained by using the averaged-optimization-method. Effects of the amount of mass-transferred and mass-leakage on optimal results are analyzed, and the obtained optimization profiles are compared with those for MTP profiles of constant-concentration-difference (c1c2 = const) and constant-concentration-ratio (c1 / c2 = const). The product of square of key-component-concentration (KCC) difference between high- and low-concentration sides and inert component concentration at high-concentration side for the MMED of the MTP with no mass-leakage is a constant, and the optimal relationship of the KCCs between high- and low-concentration sides with mass-leakage is significantly different from the former. When mass-leakage is relatively small, the MTP with c1c2 = const strategy is superior to that with c1 / c2 = const strategy, and the latter is superior to the former with an increase in mass-leakage. A combination of mass-entransy concept, finite-time thermodynamics, and averaged-optimization-method is a meaningful tool for optimizing MTPes.

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来源期刊
Science China Technological Sciences
Science China Technological Sciences ENGINEERING, MULTIDISCIPLINARY-MATERIALS SCIENCE, MULTIDISCIPLINARY
CiteScore
8.40
自引率
10.90%
发文量
4380
审稿时长
3.3 months
期刊介绍: Science China Technological Sciences, an academic journal cosponsored by the Chinese Academy of Sciences and the National Natural Science Foundation of China, and published by Science China Press, is committed to publishing high-quality, original results in both basic and applied research. Science China Technological Sciences is published in both print and electronic forms. It is indexed by Science Citation Index. Categories of articles: Reviews summarize representative results and achievements in a particular topic or an area, comment on the current state of research, and advise on the research directions. The author’s own opinion and related discussion is requested. Research papers report on important original results in all areas of technological sciences. Brief reports present short reports in a timely manner of the latest important results.
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