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Dynamic exergy analysis for the built environment : fixed or variable reference?

机译:建筑环境的动态火用分析:固定参考还是可变参考?

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摘要

Exergy is a combination of the first and second law of thermodynamics through a reference environment, also called "reference state" or "dead state", and quantifies the quality of energy. Classically, exergy analysis is used for optimising stationary processes, and the reference state is defined as a set of constant properties corresponding to the average outdoor conditions. In the case of buildings, stationary models are not accurate and a dynamic analysis is often necessary. However, the choice of the reference environment for dynamic exergy assessments is critical and still highly controversial; the main dilemma is the selection between a fixed (constant in time) or a variable (fluctuating with the outdoor conditions) definition. Although a fixed-reference selection can be justified with analytical considerations, the vast majority of authors adopt a variable reference environment, coincident with the local climate. This research proposes an alternative fixed reference and compares the numerical impact of fixed and variable reference definitions on the dynamic exergy analysis of the built environment. The exergy stored in the building envelope and in a domestic hot water tank of a case study is assessed in typical winter and summer conditions. The main advantages and criticalities of different approaches found in the literature are considered in the definition of the reference state that is finally proposed as the best option. Further debate, based on both theoretical and practical considerations, is needed to achieve a common agreement for the reference state of building exergy analysis.
机译:火用是通过参考环境(也称为“参考状态”或“死状态”)的热力学第一定律和第二定律的组合,它量化了能量的质量。传统上,用能值分析来优化固定过程,并且将参考状态定义为一组与平均室外条件相对应的恒定属性。对于建筑物,固定模型不准确,通常需要进行动态分析。然而,选择用于动态火用力评估的参考环境是至关重要的,仍然存在很大争议。主要的难题是在固定(时间常数)或变量(随室外条件变化)之间进行选择。尽管可以通过分析考虑来证明固定参考的选择是合理的,但是绝大多数作者采用了与当地气候相吻合的可变参考环境。这项研究提出了一种替代的固定参考,并比较了固定参考和可变参考定义对建筑环境的动态火用分析的数值影响。在典型的冬季和夏季条件下,评估了案例研究中建筑物围护结构和家用热水箱中存储的火用。在参考状态的定义中考虑了文献中发现的不同方法的主要优点和关键,最终将其作为最佳选择。为了在建筑物火用分析的参考状态上达成共识,需要在理论和实践两方面进行进一步辩论。

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