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Journal article

Spatiotemporal and economic analysis of industrial excess heat as a resource for district heating

In Energy 2018, Volume 151, pp. 715-728
From

Department of Mechanical Engineering, Technical University of Denmark1

Thermal Energy, Department of Mechanical Engineering, Technical University of Denmark2

Department of Management Engineering, Technical University of Denmark3

Systems Analysis, Department of Management Engineering, Technical University of Denmark4

Viegand Maagøe A/S5

Industrial excess heat may often be utilised for district heating and thus replace existing expensive or CO2-emitting technologies. Previous works analysed the distribution of excess heat by temperature intervals and their geographical distribution relative to district heating areas. A more detailed analysis of the most suitable types of industries and the costs is required, allowing a targeted exploitation of this resource.

This work extends the spatial and thermodynamic analysis, to account for the temporal match between industrial excess heat and district heating demands, as well as the costs for implementation and operation of the systems. This allows the determination of cost-effective district heating potentials, as well as the analysis of different industries and technological requirements.

The results show that the temporal mismatch between excess heat and district heating demand and lack of demand, reduces the theoretical substitution potential by almost 30%. If heat storages are introduced, the total potential is reduced by only 10%. A majority of the excess heat can be utilised at socio-economic heating costs lower than the average Danish district heating price and the cost of solar district heating.

Excess heat from oil refineries, building material and food production can be utilised at the lowest specific costs.

Language: English
Year: 2018
Pages: 715-728
ISSN: 18736785 and 03605442
Types: Journal article
DOI: 10.1016/j.energy.2018.03.059
ORCIDs: Bühler, Fabian , Petrović, Stefan , Karlsson, Kenneth and Elmegaard, Brian

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