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成功大规模部署所需的供暖电气化。

Electrification of Heating-Requirements for Successful Wide-Scale Deployment.

作者信息

Hewitt Neil James

机构信息

Ulster University Belfast UK.

出版信息

Wiley Interdiscip Rev Energy Environ. 2024 Nov-Dec;13(6):e542. doi: 10.1002/wene.542. Epub 2024 Dec 17.

Abstract

Electrification is potentially the most efficient method of decarbonization of space, water, and in certain instances, process heating through the deployment of electrically driven heat pumps. However, challenges are noted in terms of electricity network capacity that ultimately must influence a holistic approach to building/process heating demand reductions which in turn must influence heat pump development, heat pump operations, heat pump capital cost, and the role of thermal storage. Approaches to these challenges are presented from a global and, a UK and Ireland perspective, as for the UK and Ireland, it is often muted that the electricity network is less well suited to addressing the electrification of heating. Thus, this work will consider the likely cost-effective heat demand reductions in buildings and processes, how might heat pumps operate in future electricity markets and systems, how can we make heat pumps cheaper to purchase and cheaper to operate and what is the role and type of energy storage in terms of demand side management. Thermal energy storage will be considered for space heating (30°C-80°C), water heating (60°C+ to negate legionella), and lower temperature industrial process (up to e.g., 300°C). Furthermore, an analysis of a UK housing development is presented as a retrofit case study for social housing, illustrating the impacts of the electricity network, and approaches that can be taken, for example, thermal storage, to minimize such impacts. Higher temperature systems will be considered for process applications.

摘要

电气化可能是实现空间、水以及在某些情况下通过部署电动热泵进行工艺加热脱碳的最有效方法。然而,在电网容量方面存在挑战,这最终必然会影响到减少建筑/工艺供热需求的整体方法,进而影响热泵的发展、热泵的运行、热泵的资本成本以及蓄热的作用。本文从全球以及英国和爱尔兰的角度介绍了应对这些挑战的方法,因为对于英国和爱尔兰来说,人们常说电网不太适合应对供热电气化。因此,这项工作将考虑建筑和工艺中可能具有成本效益的热需求减少情况、热泵在未来电力市场和系统中的运行方式、如何降低热泵的购买成本和运行成本,以及在需求侧管理方面蓄能的作用和类型。将考虑用于空间供暖(30°C - 80°C)、热水供应(60°C以上以消除军团菌)和低温工业工艺(例如高达300°C)的热能储存。此外,还将以一个英国住房开发项目为例进行分析,作为社会住房的改造案例研究,说明电网的影响以及可以采取的措施,例如蓄热,以尽量减少此类影响。对于工艺应用,将考虑更高温度的系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5efc/11652342/c1df3dc8ff7c/WENE-13-e542-g003.jpg

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