Beyond Energy Efficiency in Building Sustainability: A Review of Emergy and Information for Systemically Characterizing Building Performance

Hwang-Jik Yi, Abhishek Mehrotra
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Abstract

Sustainable buildings tend to maximize power and information rather than efficiency. The multidimensional concepts and tools provided by systems ecology and thermodynamics aid the understanding of building performance and sustainability as part of the global and complex thermodynamic phenomena in living systems—energy is not concentrated, but it flows, increasing the flow rate of useful energy. From such an extended macroscopic perspective, this paper addresses holistic eco-systemic criteria of building performance evaluation, focusing on emergy (spelled with an "m") and information—the two critical indices of extensive and intensive analysis. Emergy aggregates the utmost and upstream energetic impacts, whereas information evaluates the structural pattern of the energy-flow distribution. These indices are theoretically correlated under the principles of ecological energy transformation and are often practically compatible. To clarify the definitions and appropriate scientific contexts of the new indices for environmental building studies, we review information theory, ecological theorems, and a few pioneering studies. Emergy and information have a great potential for advanced environmental building analysis, but building-scale implementation of emergy, information, and system principles remains a scientific challenge. The findings call for further research into the improvement of building-specific emergy/information data and reliable evidence of the analogy between building and open living systems.
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超越建筑可持续性的能源效率:系统表征建筑性能的能源和信息综述
可持续建筑倾向于最大化电力和信息,而不是效率。系统生态学和热力学提供的多维概念和工具有助于理解建筑性能和可持续性,作为生命系统中全球和复杂热力学现象的一部分——能量不是集中的,而是流动的,增加了有用能量的流动速率。从这样一个扩展的宏观视角出发,本文探讨了建筑性能评价的整体生态系统标准,重点关注能量(energy)和信息(information)这两个广泛和深入分析的关键指标。能量集中了最大和上游的能量影响,而信息则评价了能量流分布的结构格局。这些指标在生态能量转换原理下理论上是相关的,在实践上往往是相容的。为了明确环境建设研究新指标的定义和相应的科学背景,我们回顾了信息论、生态学定理和一些开创性的研究。能源和信息对于先进的环境建筑分析具有巨大的潜力,但是在建筑规模上实施能源、信息和系统原则仍然是一个科学挑战。研究结果要求进一步研究改善建筑特定的能量/信息数据,并提供建筑和开放式生活系统之间类比的可靠证据。
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