Limit sequestration to 200 Mt/a, introduce SMR, vent stored CO2
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@ -2,7 +2,7 @@ logging_level: INFO
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results_dir: 'results/'
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summary_dir: results
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run: '190508-test_fossil'
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run: '190510-fix_fossil'
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scenario:
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sectors: [E] # ,E+EV,E+BEV,E+BEV+V2G] # [ E+EV, E+BEV, E+BEV+V2G ]
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@ -10,7 +10,7 @@ scenario:
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lv: [1.0]# or opt
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clusters: [128] #[90, 128, 181] #[45, 64, 90, 128, 181, 256] #, 362] # (2**np.r_[5.5:9:.5]).astype(int) minimum is 37
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opts: [''] #for pypsa-eur
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sector_opts: [Co2L0-3H-T-H-B-I,Co2L0p1-3H-T-H-B-I,Co2L0p25-3H-T-H-B-I,Co2L0p50-3H-T-H-B-I]#[Co2L0-3H-T-H-B-I-onwind0-solar3,Co2L0-3H-T-H-B-I-onwind0p125-solar3,Co2L0-3H-T-H-B-I-onwind0p25-solar3,Co2L0-3H-T-H-B-I-onwind0p50-solar3,Co2L0-3H-T-H-B-I-solar3]#,Co2L0-3H-T-H-B-I-onwind0p25-solar3]#,Co2L0p05-3H-T-H-B-I,Co2L0p10-3H-T-H-B-I,Co2L0p20-3H-T-H-B-I,Co2L0p30-3H-T-H-B-I,Co2L0p50-3H-T-H-B-I]#[Co2L-3H-T-H,Co2L0p10-3H-T-H,Co2L0-3H-T-H,Co2L0p20-3H-T-H] #Co2L-3H-T-H,Co2L0p10-3H-T-H,Co2L0p20-3H-T-HCo2L-3H-T-H,Co2L0p10-3H-T-H,Co2L0p30-3H-T-H,Co2L0p50-3H-T-H] #Co2L-3H,Co2L-3H-T,, LC-FL, LC-T, Ep-T, Co2L-T]
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sector_opts: [Co2L0-3H-T-H-B-I,Co2L0p1-3H-T-H-B-I,Co2L0p25-3H-T-H-B-I,Co2L0p5-3H-T-H-B-I]#[Co2L0-3H-T-H-B-I-onwind0-solar3,Co2L0-3H-T-H-B-I-onwind0p125-solar3,Co2L0-3H-T-H-B-I-onwind0p25-solar3,Co2L0-3H-T-H-B-I-onwind0p50-solar3,Co2L0-3H-T-H-B-I-solar3]#,Co2L0-3H-T-H-B-I-onwind0p25-solar3]#,Co2L0p05-3H-T-H-B-I,Co2L0p10-3H-T-H-B-I,Co2L0p20-3H-T-H-B-I,Co2L0p30-3H-T-H-B-I,Co2L0p50-3H-T-H-B-I]#[Co2L-3H-T-H,Co2L0p10-3H-T-H,Co2L0-3H-T-H,Co2L0p20-3H-T-H] #Co2L-3H-T-H,Co2L0p10-3H-T-H,Co2L0p20-3H-T-HCo2L-3H-T-H,Co2L0p10-3H-T-H,Co2L0p30-3H-T-H,Co2L0p50-3H-T-H] #Co2L-3H,Co2L-3H-T,, LC-FL, LC-T, Ep-T, Co2L-T]
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# Co2L will give default (5%); Co2L0p25 will give 25% CO2 emissions; Co2Lm0p05 will give 5% negative emissions
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@ -82,6 +82,8 @@ sector:
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'methanation' : True
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'helmeth' : True
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'dac' : True
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'co2_vent' : True
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'SMR' : True
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'ccs_fraction' : 0.9
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@ -192,6 +194,8 @@ plotting:
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"gas-to-power/heat" : "orange"
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"gas" : "brown"
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"natural gas" : "brown"
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"SMR" : "#4F4F2F"
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"oil" : "#B5A642"
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"lines" : "k"
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"transmission lines" : "k"
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"H2" : "m"
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@ -100,6 +100,10 @@ helmeth,2030,investment,2000,EUR/kW,no source
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helmeth,2030,lifetime,25,years,no source
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helmeth,2030,FOM,3,%/year,no source
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helmeth,2030,efficiency,0.8,per unit,HELMETH press release
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SMR,2030,investment,540.56,EUR/kWCH4,https://www.gov.uk/government/publications/hydrogen-supply-chain-evidence-base; slide 42 assumption for 2030; GBP 466 exchange 1.16
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SMR,2030,lifetime,25,years,TODO
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SMR,2030,FOM,5.4,%/year,https://www.gov.uk/government/publications/hydrogen-supply-chain-evidence-base; slide 42 assumption for 2030
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SMR,2030,efficiency,0.74,per unit,https://www.gov.uk/government/publications/hydrogen-supply-chain-evidence-base; slide 42 assumption for 2030
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Fischer-Tropsch,2030,investment,677.6,EUR/kWH2,Fasihi doi:10.3390/su9020306 (60 kEUR/bpd = 847 EUR/kWL (1b = 1.7 MWh) 847*0.8 = 677.6)
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Fischer-Tropsch,2030,lifetime,30,years,doi:10.3390/su9020306
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Fischer-Tropsch,2030,FOM,3,%/year,doi:10.3390/su9020306
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@ -76,15 +76,23 @@ def add_co2_tracking(n):
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n.add("Bus","co2 stored",
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carrier="co2 stored")
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#NB: can also be negative
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#cost of 10 euro/tCO2 for whatever stays
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#TODO move cost to data/costs.csv
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#TODO move maximum somewhere more transparent
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n.madd("Store",["co2 stored"],
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e_nom_extendable = True,
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marginal_cost=-1000.,
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e_nom_max=2e8,
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capital_cost=20.,
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carrier="co2 stored",
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bus="co2 stored")
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if options['co2_vent']:
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n.madd("Link",["co2 vent"],
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bus0="co2 stored",
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bus1="co2 atmosphere",
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carrier="co2 vent",
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efficiency=1.,
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p_nom_extendable=True)
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if options['dac']:
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#direct air capture consumes electricity to take CO2 from the air to the underground store
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#TODO do with cost from Breyer - later use elec and heat and capital cost
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@ -575,6 +583,20 @@ def add_storage(network):
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capital_cost=costs.at["helmeth","fixed"])
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if options['SMR']:
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network.madd("Link",
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nodes + " SMR",
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bus0=["EU gas"]*len(nodes),
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bus1=nodes+" H2",
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bus2="co2 atmosphere",
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bus3="co2 stored",
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p_nom_extendable=True,
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carrier="SMR",
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efficiency=costs.at["SMR","efficiency"],
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efficiency2=costs.at['gas','CO2 intensity']*(1-options["ccs_fraction"]),
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efficiency3=costs.at['gas','CO2 intensity']*options["ccs_fraction"],
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capital_cost=costs.at["SMR","fixed"])
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def add_transport(network):
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print("adding transport")
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