→Efficient Power Production
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====Burning Energetic Graphite==== | ====Burning Energetic Graphite==== | ||
* Smelting 12 Coal/s needs 12 Smelters, and results in 6 Graphite/s. | * Smelting 12 Coal/s needs 12 Smelters, and results in 6 Graphite/s. | ||
* Power Stations needed to burn 6 Graphite/s: 6 * 6. | * Power Stations needed to burn 6 Graphite/s: 6 * 6.75 MJ * 0.8 / 2.16 MW = 15 Stations. | ||
* Power production: 14 Stations * 2.16 MW = | * Power production: 14 Stations * 2.16 MW = 32.4 MW. | ||
* Power consumption: | * Power consumption: | ||
# Mining Machines: 4 * 420 kW = 1.68 MW. | # Mining Machines: 4 * 420 kW = 1.68 MW. | ||
# Smelters: 12 * 360 kW = 4.32 MW. | # Smelters: 12 * 360 kW = 4.32 MW. | ||
# Sorters (2 per Smelter, 1 per Station): | # Sorters (2 per Smelter, 1 per Station): 39 * 18 kW = 0.702 MW. | ||
* Net power production: | * Net power production: 32.4 MW - 1.68 MW - 4.32 MW - 0.702 MW = '''25.698 MW'''. | ||
====Conclusion==== | ====Conclusion==== | ||
The increased effort of smelting Energetic Graphite from Coal results in ~ | The increased effort of smelting Energetic Graphite from Coal results in ~1.7 MW more net power production. | ||
* Coal: 24.024 MW | * Coal: 24.024 MW | ||
* Energetic Graphite: | * Energetic Graphite: 25.698 MW. | ||
===Crude Oil vs. Refined Oil vs. X-Ray Cracking vs. Hydrogen Fuel Rods=== | ===Crude Oil vs. Refined Oil vs. X-Ray Cracking vs. Hydrogen Fuel Rods=== |