#!/usr/bin/env python3 # ============================================================================== # COPYRIGHT NO ONE EVERYWHERE LLC (WYOMING HOLDING COMPANY) # PROJECT: SOVEREIGN STACK # This artifact is entirely proprietary and cryptographically proven. # Open-Source usage requires explicit permission from Brandon Scott Schneider. # ============================================================================== """ The Survival Engine: Dust Bowl Salvage Tech Built for when the crops fail and you need topsoil/food using scrap metal, sunlight, and a car battery. Phase 1: Grab moisture from the air. Phase 2: Split it with rusty solar panels and a spark. Phase 3: Smash the remaining air (Nitrogen) into topsoil food. """ import argparse def calculate_survival_loop(scrap_solar_w, days_running): # Extremely low efficiencies because a starving kid is building this with rusty pipes solar_to_elec_eff = 0.10 # Cracked PV panels water_capture_eff = 0.05 # A cold metal pipe in the shade at night elec_to_h2_eff = 0.40 # Running wires through salt water in a glass jar (Electrolysis) haber_scrap_eff = 0.01 # Using a car jack as a makeshift pressure pump for Haber # 1. Total Daily Power Harvest (Roughly 6 hours of usable daylight) daily_watt_hours = scrap_solar_w * 6 * solar_to_elec_eff # 2. Water Harvesting (assuming ~1 Liter (1000g) of moisture condenses per 100 Wh of cooling) water_grams_per_day = (daily_watt_hours / 100) * 1000 * water_capture_eff # 3. Crack the water into Hydrogen and Oxygen (roughly 9 grams water -> 1g H2) # Constrained by our terrible electrical efficiency max_h2_from_elec = (daily_watt_hours * elec_to_h2_eff) / 50.0 # ~50 Wh to make 1g H2 terribly h2_grams_per_day = min(water_grams_per_day / 9.0, max_h2_from_elec) # 4. Scrap-Metal Fertilizer (Haber-Bosch in a reinforced iron pipe heated by a campfire) # 3g H2 + ~14g N2 (from air) -> 17g Ammonia/Fertilizer precursor fert_grams_per_day = (h2_grams_per_day / 3.0) * 17.0 * haber_scrap_eff # 5. Food Yield (Assuming 1 gram of nitrogen fertilizer yields ~50 grams of potato/corn over a season) biomass_grams_per_day = fert_grams_per_day * 50.0 calories = (biomass_grams_per_day / 100.0) * 86.0 # ~86 calories per 100g of potato total_calories = calories * days_running return { "water_g": water_grams_per_day, "h2_g": h2_grams_per_day, "fert_g": fert_grams_per_day, "food_g": biomass_grams_per_day, "cals": calories, "total_cals": total_calories } def print_survival_guide(watts, days, res): print("\n" + "!"*50) print(" 🛠️ THE DUST BOWL SURVIVAL ENGINE 🛠️") print("!"*50) print("If the sky is dry and the ground is dead. Build this.") print(f"\n[ SCRAP INPUTS ]") print(f" * Scavenged Solar Panels : {watts} Watts (Cracked but working)") print(f" * Runtime : {days} Days out in the sun") print(f"\n[ DAILY OUTPUT - SCRAP METAL EFFICIENCY ]") print(f" 💧 Water Pulled From Air : {res['water_g']:.1f} grams (A few sips)") print(f" ⚡ Hydrogen Gas Made : {res['h2_g']:.1f} grams") print(f" 🌱 Raw Fertilizer Dust : {res['fert_g']:.2f} grams") print(f"\n[ THE DIFFERENCE BETWEEN LIFE AND DEATH ]") print(f" 🥔 Expected Crop Yield : {res['food_g']:.1f} grams of potatoes grown per day of running this") print(f" 🔥 Caloric Output : {res['cals']:.0f} Calories per day") print(f" 🗓️ Total Food Over {days} days: {int(res['total_cals'])} Calories") if res['cals'] < 1000: print(f"\n [!] WARNING: YOU ARE SLOWLY STARVING. Scavenge {int(1000/max(res['cals'],1))}x more solar panels.") else: print(f"\n [+] YOU LIVE. Keep the engine running.") print("!"*50 + "\n") if __name__ == "__main__": parser = argparse.ArgumentParser(description="Dust Bowl Maker Protocol") parser.add_argument("--watts", type=float, default=200.0, help="Total watts of broken solar panels found") parser.add_argument("--days", type=int, default=30, help="How many days you run it before harvest") args = parser.parse_args() res = calculate_survival_loop(args.watts, args.days) print_survival_guide(args.watts, args.days, res)