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src/reports/plants.jl
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79
src/reports/plants.jl
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# RELOG: Reverse Logistics Optimization
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# Copyright (C) 2020, UChicago Argonne, LLC. All rights reserved.
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# Released under the modified BSD license. See COPYING.md for more details.
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using DataFrames
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using CSV
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function plants_report(solution)::DataFrame
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df = DataFrame()
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df."plant type" = String[]
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df."location name" = String[]
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df."year" = Int[]
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df."latitude (deg)" = Float64[]
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df."longitude (deg)" = Float64[]
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df."capacity (tonne)" = Float64[]
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df."amount processed (tonne)" = Float64[]
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df."amount received (tonne)" = Float64[]
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df."amount in storage (tonne)" = Float64[]
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df."utilization factor (%)" = Float64[]
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df."energy (GJ)" = Float64[]
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df."opening cost (\$)" = Float64[]
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df."expansion cost (\$)" = Float64[]
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df."fixed operating cost (\$)" = Float64[]
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df."variable operating cost (\$)" = Float64[]
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df."storage cost (\$)" = Float64[]
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df."total cost (\$)" = Float64[]
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T = length(solution["Energy"]["Plants (GJ)"])
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for (plant_name, plant_dict) in solution["Plants"]
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for (location_name, location_dict) in plant_dict
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for year = 1:T
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capacity = round(location_dict["Capacity (tonne)"][year], digits = 2)
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received = round(location_dict["Total input (tonne)"][year], digits = 2)
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processed = round(location_dict["Process (tonne)"][year], digits = 2)
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in_storage = round(location_dict["Storage (tonne)"][year], digits = 2)
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utilization_factor = round(processed / capacity * 100.0, digits = 2)
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energy = round(location_dict["Energy (GJ)"][year], digits = 2)
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latitude = round(location_dict["Latitude (deg)"], digits = 6)
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longitude = round(location_dict["Longitude (deg)"], digits = 6)
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opening_cost = round(location_dict["Opening cost (\$)"][year], digits = 2)
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expansion_cost =
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round(location_dict["Expansion cost (\$)"][year], digits = 2)
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fixed_cost =
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round(location_dict["Fixed operating cost (\$)"][year], digits = 2)
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var_cost =
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round(location_dict["Variable operating cost (\$)"][year], digits = 2)
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storage_cost = round(location_dict["Storage cost (\$)"][year], digits = 2)
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total_cost = round(
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opening_cost + expansion_cost + fixed_cost + var_cost + storage_cost,
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digits = 2,
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)
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push!(
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df,
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[
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plant_name,
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location_name,
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year,
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latitude,
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longitude,
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capacity,
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processed,
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received,
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in_storage,
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utilization_factor,
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energy,
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opening_cost,
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expansion_cost,
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fixed_cost,
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var_cost,
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storage_cost,
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total_cost,
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],
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)
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end
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end
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end
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return df
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end
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write_plants_report(solution, filename) = CSV.write(filename, plants_report(solution))
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