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Why is adiabatic compressed air energy storage yet to become a viable energy storage option?

机译:为什么绝热压缩空气能量存储尚未成为可行的能量存储选项?

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摘要

Recent theoretical studies have predicted that adiabatic compressed air energy storage (ACAES) can be an effective energy storage option in the future. However, major experimental projects and commercial ventures have so far failed to yield any viable prototypes. Here we explore the underlying reasons behind this failure. By developing an analytical idealized model of a typical ACAES design, we derive a design-dependent efficiency limit for a system with hypothetical, perfect components. This previously overlooked limit, equal to 93.6% under continuous cycling for a typical design, arises from irreversibility associated with the transient pressure in the system. Although the exact value is design dependent, the methodology we present for finding the limit is applicable for a wide range of designs. Turning to real systems, the limit alone does not fully explain the failure of practical ACAES research. However, reviewing the available evidence alongside our analytical model, we reason that underestimation of the system complexity, difficulty with the integration of off-the-shelf components, and a number of misleading performance claims are the primary reasons hindering ACAES development.
机译:最近的理论研究已经预测,绝热压缩空气能量存储(ACAES)可以是未来有效的能量存储选项。然而,主要的实验项目和商业企业到目前为止未能产生任何可行的原型。在这里,我们探讨了这种失败背后的基本原因。通过开发典型的ACAES设计的分析理想化模型,我们为一个具有假设,完美部件的系统获得了设计依赖效率限制。这一先前被忽视的极限,等于连续循环的93.6%用于典型设计,从与系统瞬态压力相关的不可逆转。虽然确切的值是设计依赖的,但我们提出的限制的方法是适用于各种设计。转向真实的系统,仅限极限并没有完全解释实际ACAES研究的失败。然而,审查我们的分析模型的可用证据,我们有理由低估了系统复杂性,难以与货架上的集成,以及许多误导性能索赔是妨碍ACAE开发的主要原因。

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