Published June 2019 | Version v1
Journal article

Mapping district heating potential under evolving thermal demand scenarios and technologies: A case study for Switzerland

  • 1. Chair for Energy Efficiency, Institute for Environmental Sciences and Forel Institute, University of Geneva, Boulevard Carl-Vogt 66, 1205, Genève (Switzerland)
  • 2. Empa, Swiss Federal Laboratories for Materials Science and Technology, Überlandstrasse 129, 8600, Dübendorf (Switzerland)

Description

Highlights: • Developed map of DHN potential for Switzerland for current demand and under energy saving scenarios. • Compared potentials for high temperature and low temperature district heat technologies. • Developed method for estimating local linear demand densities at country scale. • Found large potential for development of low temperature district heat networks. • Found significant reduction in potential for current generation district heat networks. -- Abstract: In its 2016 Heating and Cooling Strategy, the European Commission (EC) highlighted the strategic importance of heating demand for the energy demand reduction, and further noted that District Heat Networks (DHN) can play an important role in decarbonising this sector. This study applied a thermal atlas approach to map the potential for district heat networks in Switzerland. It extended existing methods with a novel approach to estimating linear thermal demand density in DHN at a national scale. DHN potential for current-generation high temperature networks as well as cutting-edge low temperature networks were compared for current building space heating and hot water demand as well as for two demand reduction scenarios. The method was tested by comparing its results to those of a local engineering study conducted for a Swiss municipality (Brig-Glis). The potential percentage of demand supplied by high temperature DHN was shown to decrease from 66% to 41% with energy saving while the potential for low temperature systems increased significantly from 2.1% to 42%. The percentage of heat demand covered by heat networks decreases less than the percentage of buildings covered, reflecting the strength of heat networks for supplying large fractions of thermal demand in geographically confined areas.

Additional details

Identifiers

DOI
10.1016/j.energy.2019.04.044;
PII
S0360544219306681;

Publishing Information

Journal Title
Energy (Oxford)
Journal Volume
176
Journal Page Range
p. 682-692
ISSN
0360-5442
CODEN
ENEYDS

INIS

Country of Publication
United Kingdom
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
55017505
Subject category
S29: ENERGY PLANNING, POLICY AND ECONOMY;
Descriptors DEI
DISTRICT HEATING; ENERGY DEMAND; ENERGY SYSTEMS; GEOGRAPHIC INFORMATION SYSTEMS; HEAT; HOT WATER; RENEWABLE ENERGY SOURCES; SPACE HEATING; WATER REQUIREMENTS
Descriptors DEC
DEMAND; ENERGY; ENERGY SOURCES; HEATING; HYDROGEN COMPOUNDS; INFORMATION SYSTEMS; OXYGEN COMPOUNDS; WATER

Optional Information

Copyright
Copyright (c) 2019 Elsevier Ltd. All rights reserved.