用自由度折减法对耦合电动发动机进行有限时间优化

IF 2.8 3区 物理与天体物理 Q2 PHYSICS, MULTIDISCIPLINARY
A. Ocampo-García, M. A. Barranco-Jiménez, F. Angulo-Brown
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引用次数: 0

摘要

当处理涉及两个或多个控制变量的物理过程时,希望将自由度降低到澄清这种系统的计算和理解的程度。实现这一目标的一种方法是针对一个或多个变量进行优化,以便找到这些变量之间的最佳关系。在本文中,我们使用了密集变量之间的最佳关系,这些关系已经在耦合内可逆化学和电动发动机的阵列优化中找到,通过源自有限时间热力学的几个优化标准。该程序用于分析这类过程的热经济性能,仅用一个自变量。此外,还研究了这些阵列在新的操作制度下的操作,应用相同的方法也可以获得其最佳性能条件,因为它们满足相同的关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

On a finite-time optimization of coupled electric engines by using a freedom degrees reduction procedure

On a finite-time optimization of coupled electric engines by using a freedom degrees reduction procedure

When dealing with physical processes involving two or more control variables, it is desirable to reduce the freedom degrees down to an amount that clarify the calculations and comprehension of such a system. One way to achieve this goal is to optimize with respect to one or several variables in order to find optimal relationships between those variables. In this paper we use optimal relationships between intensive variables that had already been found in the optimization of arrays of coupled endoreversible chemical and electric engines by means of several optimization criteria stemming from finite-time thermodynamics. This procedure is applied to analyse the thermoeconomic performance of this kind of processes in terms of an only independent variable. Furthermore, the operation of these arrays under new operating regimes was studied, whose optimum performance conditions also can be obtained applying the same methodology, because they meet the same relationship.

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来源期刊
The European Physical Journal Plus
The European Physical Journal Plus PHYSICS, MULTIDISCIPLINARY-
CiteScore
5.40
自引率
8.80%
发文量
1150
审稿时长
4-8 weeks
期刊介绍: The aims of this peer-reviewed online journal are to distribute and archive all relevant material required to document, assess, validate and reconstruct in detail the body of knowledge in the physical and related sciences. The scope of EPJ Plus encompasses a broad landscape of fields and disciplines in the physical and related sciences - such as covered by the topical EPJ journals and with the explicit addition of geophysics, astrophysics, general relativity and cosmology, mathematical and quantum physics, classical and fluid mechanics, accelerator and medical physics, as well as physics techniques applied to any other topics, including energy, environment and cultural heritage.
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