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Correlation between Thermodynamic Efficiency and Ecological Cyclicity for Thermodynamic Power Cycles

机译:热力循环的热力学效率与生态循环之间的相关性

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摘要

A sustainable global community requires the successful integration of environment and engineering. In the public and private sectors, designing cyclical (“closed loop”) resource networks increasingly appears as a strategy employed to improve resource efficiency and reduce environmental impacts. Patterning industrial networks on ecological ones has been shown to provide significant improvements at multiple levels. Here, we apply the biological metric cyclicity to 28 familiar thermodynamic power cycles of increasing complexity. These cycles, composed of turbines and the like, are scientifically very different from natural ecosystems. Despite this difference, the application results in a positive correlation between the maximum thermal efficiency and the cyclic structure of the cycles. The immediate impact of these findings results in a simple method for comparing cycles to one another, higher cyclicity values pointing to those cycles which have the potential for a higher maximum thermal efficiency. Such a strong correlation has the promise of impacting both natural ecology and engineering thermodynamics and provides a clear motivation to look for more fundamental scientific connections between natural and engineered systems.
机译:一个可持续的全球社区需要环境与工程的成功整合。在公共和私营部门中,设计循环(“闭环”)资源网络越来越成为一种提高资源效率和减少环境影响的策略。在生态网络上对工业网络进行模式化已显示出可以在多个层面上显着改善。在这里,我们将生物度量周期性应用于复杂性不断提高的28个熟悉的热力学功率循环。从科学上讲,这些由涡轮机等组成的循环与自然生态系统有很大不同。尽管存在这种差异,该应用仍会在最大热效率与循环的循环结构之间产生正相关。这些发现的直接影响导致了一种比较循环的简单方法,较高的循环度值指出了那些可能具有更高的最大热效率的循环。如此强的相关性有望影响自然生态学和工程热力学,并为寻找自然与工程系统之间更基本的科学联系提供了明确的动力。

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