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Optimal Sharing Electricity and Thermal Energy

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Optimal Sharing Electricity and Thermal Energy ( optimal-sharing-electricity-and-thermal-energy )

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Sustainability 2022, 14, 10125 19 of 39 unit, the number of DHCN pipelines, the required/produced energy quantities, the main related costs, as well as the main related CO2 emissions. Table 4. Total installed capacities for all nine users. Optimal components’ configuration for the three studied scenarios. ICE (kW) MGT (kW) BOI (kW) ABS (kW) HP (kW) CC (kW) PV panels (kWp) ST panels (m2) TStor (kWh) Cstor (kWh) Conventional Energy Community Solution Solution - 3270 - 400 9460 352 - 875 - 665 2954 161 - 1359 - 77 11,342 14,855 0 0 Sharing Electricity Solution 3260 0 302 1050 770 130 1315 14 13,052 0 Sharing Electricity Solution 5658 Table 5. Optimal configuration for the central unit and DHCN pipelines. Conventional Energy Community Central pipe size (kW) Central ICE (kW) Central BOI (kW) ST field (m2) Central TStor (kWh) DHN pipes (n◦) DCN pipes (n◦) Solution Solution - 4495 - 00 - 00 - 9966 11,546 - 30,543 30,984 - 88 - 64 Table 6. Optimal energy magnitudes for the three analysed scenarios. Values refer to the total energy for a whole year. (MWh) Electricity produced—ICE Electricity produced—MGT Electricity produced—PV Electricity bought Total electricity IN Electricity required—CC Electricity required—HP Electricity sold Total electricity OUT Electricity demand Heat produced—ICE Heat produced—MGT Heat produced—BOI Heat produced—HP Heat produced—STp Total heat IN Heat required—ABS Heat waste Total heat OUT Heat demand Conventional Energy Community Solution Solution - 15,903.2 - 1431.9 - 435.6 12,528.6 231.5 12,528.6 18,002.2 815.4 35.5 - 631.0 - 5622.5 815.4 6289.0 11,713.2 11,713.2 - 23,913.9 - 1598.8 32,079.3 187.1 - 895.9 - 16,038.1 32,079.3 42,633.8 - 2159.1 0 6950.1 0 9109.2 31,998.9 31,998.9 Sharing Electricity Solution 16,027.5 0 421.2 35.6 16,484.4 50.7 916.5 3804.0 4771.2 11,713.2 23,859.2 0 253.9 1670.3 18,461.6 44,245.0 2333.2 8443.3 10,776.5 31,998.9

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