BIOSPIRALOSâ„¢ / HENNA SIMULATION 04
THE ELECTRIC HARBOUR
BUILD THE PORT THAT REMEMBERS ENERGY
HELSINKI WEST HARBOUR · FUTURE 2032
CAPITAL€300M
GRID CAPACITY10 MW
BATTERY RESERVE0 MWh
THERMAL MEMORY0 MWh
SIMULATION TIME00:00
ELECTRICITY PRICE€60
SHIPS COMPLETED0 / 10
HENNA STATUSOFFLINE
01 / HARBOUR ENERGY NETWORK
âš¡ HELEN GRID10 MW
→
â—ˆ ENERGY MEMORYNO STORAGE
→
âš“ ELECTRIC SHIPS0 MW DEMAND
Available electrical capacity
10 MW available
02 / BUILD INFRASTRUCTURE
âš¡ GRID EXPANSION
Increase the harbour's grid connection by 20 MW. Grid power can supply ships and recharge batteries.
Current: 10 MW
â–£ ELECTRICAL BATTERY
Install 25 MWh of electrical storage with 15 MW additional discharge capability.
Current: 0 MWh
♨ SAND + BIOCHAR MEMORY
Store surplus electricity as heat. Supply simulated harbour heating demand without drawing additional grid electricity.
Current: 0 MWh thermal
â—‰ ACTIVATE HENNA AI
Predict ship arrivals, reserve electrical energy, and automatically manage charging priorities.
Requires at least one battery installation.
03 / ELECTRIC FERRY TERMINAL
Simulated ferry charging. Each ship requires 35 MW while charging. One simulation tick equals 15 minutes.
04 / HENNA INTELLIGENCE
AWAITING ACTIVATION
Install electrical storage to unlock predictive energy management.
05 / OPERATIONS
BATTERY STATE OF CHARGE
0 / 0 MWh
THERMAL STATE OF CHARGE
0 / 0 MWh thermal
Battery charging and thermal charging consume available grid capacity. Thermal storage supplies a separate heating load, not direct ferry propulsion.
06 / SYSTEM EVENT LOG
INFRASTRUCTURE EVOLUTION COMPLETE
THE HARBOUR REMEMBERS.
You have built a 100+ MW intelligent electric harbour, activated HENNA and successfully charged ten electric ferries.
Infrastructure is no longer passive. It anticipates demand.

