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迈向能源系统分析中电力与热力等效性的框架。

Moving toward a framework for electricity and heat equivalence in energy systems analysis.

作者信息

Kassem Nazih, Galantino Christopher R, Tester Jefferson W, Anderson C Lindsay, Moore Michal C

机构信息

Department of Biological and Environmental Engineering, Riley Robb Hall, Cornell University, Ithaca, NY, USA.

Cornell Energy Systems Institute, Kimball Hall, Cornell University, Ithaca, NY, USA.

出版信息

iScience. 2021 Sep 11;24(10):103123. doi: 10.1016/j.isci.2021.103123. eCollection 2021 Oct 22.

Abstract

Sustaining, maintaining, and upgrading the electricity grid, while meeting decarbonization goals is a challenge facing policymakers, regulators, grid operators, and investors. Simultaneously meeting demands for future capacity, retiring older inefficient technologies, and addressing externalities from energy production and use requires more diverse and inclusive technologies to avoid constraints and shortfalls in grid capability. Changing the energy production paradigm by encouraging alternative technologies was a key driver for FERC Order 2222. This stimulus for developing new small-scale generation will complement and supplement the existing fleet only if it attracts new investment. This investment must reflect technology that goes beyond the energy-only characteristics of traditional generation, creating systems where suites of energy-equivalent outputs are enhanced by environmental quality benefits and offsets. We use energy system designs to highlight the contribution that measuring and accounting for equivalency values provides net increases in capacity, electricity, and alternative fuels while simultaneously reducing carbon waste impacts.

摘要

在实现脱碳目标的同时,维持、维护和升级电网是政策制定者、监管机构、电网运营商和投资者面临的一项挑战。要同时满足未来容量需求、淘汰老旧低效技术,并应对能源生产和使用带来的外部影响,就需要更多样化和包容性更强的技术,以避免电网能力受到限制和出现短缺。通过鼓励替代技术来改变能源生产模式是联邦能源监管委员会第2222号命令的关键驱动力。只有吸引到新投资,这种对发展新型小规模发电的刺激措施才能补充和完善现有发电设施。这种投资必须体现超越传统发电仅关注能源特性的技术,创造出这样的系统:一系列能量等效产出因环境质量效益和抵消作用而得到增强。我们利用能源系统设计来突出衡量和核算等效值所做出的贡献,即它能在增加容量、电力和替代燃料净产量的同时,减少碳废物影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/499f/8482482/b0713ebaf778/fx1.jpg

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