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How heat pumps and thermal energy storage with wind power

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How heat pumps and thermal energy storage with wind power ( how-heat-pumps-and-thermal-energy-storage-with-wind-power )

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*Point-to-Point Response to Reviewers Table 3.1 – Scenarios overview Scenario name HP HP + 1h ES HP + 2h ES HP + 3h ES HP + 4h ES DEH DEH + 1h ES DEH +2hES DEH +3hES DEH +4hES Description Heat pump electrification, 20 % of domestic heating sector Heat pump electrification with domestic thermal storage tank supplying energy for 1 h* Heat pump electrification with domestic thermal storage tank supplying energy for 2 h* Heat pump electrification with domestic thermal storage tank supplying energy for 3 h* Heat pump electrification with domestic thermal storage tank supplying energy for 4 h* Direct electric heating, 20 % of domestic heating sector DEH with domestic thermal storage tank supplying energy for 1 h* DEH with domestic thermal storage tank supplying energy for 2 h* DEH with domestic thermal storage tank supplying energy for 3 h* DEH with domestic thermal storage tank supplying energy for 4 h* *Volume of storage tank is based on maximum winter peak demand per average household (detailed methodology is described in methodology section) Table 4.1 – Fuel and carbon emissions prices implemented in the SEM 2030 model (DECC 2013) Fuel Price Gas, €/GJ 3.68 Coal, €/GJ 9.15 Distillate, €/GJ 27.9 Oil, €/GJ 18.4 Carbon, €/tonne 37 Table 4.2 – Electricity demand assumptions for 2030 SEM model (EirGrid, SONI, 2017) (SEM Committee, 2014) Time horizon 2015 2030 Total demand, TWh 36.7 43.2 Transmission peak, GW 6.6 7.8

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