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Heat Roadmap Europe: Identifying local heat demand and supply areas with a European thermal atlas

机译:欧洲热力路线图:通过欧洲热力图集确定本地热力需求和供应区域

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In 2016 the first Strategy for Heating and Cooling of the European Union has shown that district heating and cooling networks can integrate renewable energies in an increasingly energy-efficient built environment. At the same time, the heating and cooling sector is probably the most diverse and least mapped component of the European energy system. The aim of the Pan-European Thermal Atlas is to improve the knowledge base for the geographical distribution of heat and cooling demands across Europe. Demand densities of the demanded thermal services themselves, the spatial coherence of these demands, and their location relative to sources of heating greatly affect the economy of district heating schemes compared to individual solutions. The objective is therefore to develop a comprehensive model, which can be used to a) quantify heat demands by density, b) group coherent areas with demands into prospective supply zones, c) produce supply curves for these zones, and d) ultimately calculate local energy mixes on the basis of allocated excess heat as well as renewable energy sources. The developed method spatially disaggregates national demand data to high-resolution geospatial data on urban structures. The resulting atlas allows for an advanced quantitative screening process, which can establish the basis for energy systems analyses relying on geographically explicit information on the heating demand and supply volumes and costs. The present paper presents version 4 of the Pan-European Thermal Atlas, which takes another step towards higher spatial resolution and confidence in comparison to its predecessors, version 1 to 3. For the first time, a 100 m resolution heat atlas of Europe is being presented, which may help describing the heating sector in the required spatial resolution. By means of spatial statistical analyses using ordinary least square linear regressions, multiple spatial inputs such as population, degree of built-up and its derivatives are turned into a coherent model of the urban tissue. Plot ratios form the basis of models of heat demand in single and multi-family residential buildings as well as the service sector. Prospective district heating areas have been delineated, and the resulting zoning of heat supply has been linked to a resource-economic analysis, which allows for cost-supply studies in disaggregated form. The present heat atlas version 4 is now available for 14 countries that altogether represent 90% of the heat demand in the 28 European Union member states. First results are being presented with emphasis on the achieved methodological improvements. Moreover, a newly developed online mapping system is being presented, which will assist in mapping the new geography of heating and cooling demands and supplies.
机译:2016年,欧盟的第一个供热和制冷策略表明,区域供热和制冷网络可以将可再生能源整合到越来越节能的建筑环境中。同时,供热和制冷行业可能是欧洲能源系统中种类最多,分布最少的组成部分。泛欧热力图集的目的是要改善整个欧洲供热和制冷需求的地理分布知识。与单个解决方案相比,所需热服务本身的需求密度,这些需求的空间连贯性以及它们相对于供热源的位置极大地影响了区域供热计划的经济性。因此,目标是开发一个综合模型,该模型可用于a)通过密度量化热量需求,b)将具有需求的相干区域分组到预期的供应区域中,c)生成这些区域的供应曲线,以及d)最终计算局部区域根据分配的多余热量以及可再生能源混合能源。所开发的方法在空间上将国家需求数据分解为有关城市结构的高分辨率地理空间数据。生成的图集允许进行高级的定量筛选过程,该过程可以依赖于关于供热需求以及供应量和成本的地理上明确的信息,为能源系统分析奠定基础。本文介绍了第4版《泛欧热力地图集》,与之前的第1至3版相比,它朝着更高的空间分辨率和可信度迈出了又一步。 ,这可能有助于描述所需的空间分辨率中的加热部门。通过使用普通最小二乘线性回归的空间统计分析,将诸如人口,建筑程度及其派生度之类的多个空间输入转化为城市组织的连贯模型。地积比率构成了单户和多户住宅建筑以及服务业供热模型的基础。划定了预期的区域供热区,并将由此产生的供热区划与资源经济分析联系在一起,从而可以以分类形式进行成本供应研究。当前的热量图集第4版现已在14个国家/地区可用,这些国家/地区总共占欧盟28个成员国热需求的90%。最初的结果将重点放在已取得的方法改进上。此外,目前正在展示一种新开发的在线制图系统,该系统将有助于制图供热和制冷需求和供应的新地理位置。

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