灵活性(工程)
消费者
资产(计算机安全)
地理信息系统
余热
环境科学
采暖系统
热能储存
计算机科学
建筑工程
软件
能量(信号处理)
可再生能源
高效能源利用
土木工程
环境经济学
工艺工程
工程类
可再生能源
机械工程
遥感
经济
热交换器
地质学
统计
生物
计算机安全
电气工程
生态学
数学
程序设计语言
混合热
作者
Станислав Чичерин,Jonathan Hachez,Afraz Mehmood Chaudry,Svend Bram
标识
DOI:10.7250/conect.2024.002
摘要
This research addresses the need for a method to compare waste heat potential and recovery in 5th Generation District Heating and Cooling (5GDHC) systems. Prosumer buildings, known for enhancing flexibility, are analyzed using Geographic Information Systems (GIS) and image vectorization to evaluate 5GDHC systems. The study predicts the amount of waste heat available with an R2 of 0.96, utilizing Chaikin's algorithm to refine thermal images for automatic recognition of the sources of waste heat. Emphasis is placed on the absence of a method for asset design in 5GDHC, with considerations for annual energy calculations, radial network connections, and energy shares among building types. Recommendations for building connecting in Belgium are proposed, favoring 'B'/'C'-labeled buildings. The research explores the impact of building design on heating and suggests energy savings through regulation strategy changes. Dynamic models for heat pumps aim to reduce errors and emissions. The study connects energy indicators and GIS software, contributing to a top-down design approach in 5GDHC systems. The overall goal is to contribute to decarbonization and reduce CO2 emissions in the energy sector.
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