Ship Universe Port Infrastructure Tool
Port Shore Power Grid, Transformer & Cable Capacity Tool
Size port-side shore-power infrastructure from simultaneous vessel demand, diversity, transformer loading, redundancy, cable ampacity, voltage drop and available utility capacity. Estimate transformer count, installed MVA, berth cable circuits, main feeder circuits, annual energy, grid reinforcement and high-level infrastructure cost.
Currency selector changes display only. No exchange-rate conversion is performed.
Grid Capacity
Coincident ship load, conversion losses, utility capacity and reinforcement requirement
Transformer Sizing
Required MVA, unit count, loading limit, design margin and optional N+1 redundancy
Cable Capacity
Berth current, parallel circuits, derated ampacity and voltage-drop screening
Shore-Power Demand
Model a group of similar shore-power berths operating from the same port electrical system.
vessels
MW/vessel
%
%
%
hours/day
days/year
Electrical System
kV line-line
kV line-line
%
MW
Transformer Configuration
MVA/unit
%
Berth Cable Capacity
A/circuit
%
meters
mΩ/km
mΩ/km
%
Main Feeder
A/circuit
%
meters
Infrastructure Economics
$
/MVA
$
/m/circuit
$
/m/circuit
$
$
/MW added
$
/MWh
% CAPEX/year
Shore-Power Berths
Model berths with different vessel loads, power factors, voltages, utilization and cable route lengths on one shared port electrical system.
| Berth / Group | Connections | MW/Ship | Peak Diversity % | Avg Load % | Hours/Day | Voltage kV | PF | Cable Run m |
|---|
Shared Electrical System
kV line-line
%
%
MW
days/year
Transformer Configuration
MVA/unit
%
Cable Electrical Assumptions
A/circuit
%
A/circuit
%
mΩ/km
mΩ/km
%
meters
Infrastructure Economics
$
/MVA
$
/m/circuit
$
/m/circuit
$
$
/MW added
$
/MWh
% CAPEX/year
Port Shore-Power Infrastructure Results
Similar-berth infrastructure sizing
Enter shore-power data
Enter vessel demand, electrical-system, transformer and cable
assumptions to estimate port shore-power infrastructure capacity.
Planning estimate only.
Shore-power installations require detailed utility, protection,
grounding, harmonic, short-circuit, transformer, switchgear, cable,
thermal, fault, selectivity, power-quality and connection studies.
Actual cable ampacity depends on conductor material, installation method,
grouping, ambient temperature, soil or duct conditions, cooling,
insulation system and applicable electrical standards. Voltage-drop
results are a simplified balanced three-phase screening calculation.
Transformer sizing does not model harmonic derating, inrush, transient
loading, tap range, reactive-power compensation or detailed contingency
operation. Grid capacity entered here should represent capacity actually
available to the shore-power project, not total utility or port nameplate
capacity. Cost inputs are user-entered planning assumptions and should be
replaced with project-specific supplier, utility and EPC estimates.
Generated by ShipUniverse.com
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