Methanol Quantity, Transfer Rate, Darcy Pressure Drop, Hose MWP, Vapor Return, High-High Buffer, ESD Shutdown & ERS Spill

Methanol Bunkering Transfer Rate, Hose Pressure Drop, ESD/ERS & Bunkering Time Tool

Turn a methanol bunker quantity into the transfer-system numbers that actually control the operation. Calculate tank receiving capacity, safe bulk transfer rate, per-hose flow and velocity, Reynolds number and Darcy pressure loss, pump discharge pressure and kW, vapor-return capacity, hose pressure-rating margin, high-high shutdown ullage, post-ESD transfer volume, ERS exposed spill volume and pool area, topping time, drain / purge time, total berth-side bunkering time, and the component that limits the transfer rate.

Currency
Currency selector changes display only. No exchange-rate conversion is performed.

Bunker Quantity & Receiving Tank

The requested bunker quantity is checked against the receiving tank group's target filling limit before hydraulic calculations are run.

tonnes.
kg/m³ at the representative bunkering temperature.
mPa·s.
m³.
% gross tank volume.
% gross tank volume.
% gross tank volume.
% gross tank volume used for post-ESD ullage screen.

Transfer-Rate Limits

m³/h total liquid rate.
m³/h.
m³/h from approved ship design / operating procedure.
m³/h.
m³/h each.
m/s, project / hose / erosion / static-control criterion.
bar(g) at the relevant flow.
%.
bar(g).
bar beyond explicit route K values.

Simple Transfer Route

m carrying total flow.
mm.
mm.
m.
mm.
mm screening value.
m. Negative value reduces static head.

Advanced Methanol Transfer Route Register

Build one representative hydraulic path from delivering pump to receiving tank. Flow share lets common segments carry 100% of total flow while one branch of a two-hose system can carry 50%.

Segment Length m ID mm Roughness mm Minor K Elevation m Flow share %

Hose, Loading Arm & Pressure Envelope

bar(g). IMO interim guidance for ship-carried methanol hoses states specified MWP should not be less than 1 MPa gauge.
bar(g).
bar(g).
bar(g).
% above steady required pump discharge.
litres.

Vapor Return / Tank Displacement

% of incoming liquid volumetric rate for screening.
mm.
m/s project / OEM criterion.

ESD Shutdown & High-High Ullage

s at full flow.
s equivalent full-flow delay.
s.
%. 50% approximates linear flow decay during closure.

ERS / Break-Away Coupling Spill Screen

m of hose / arm whose inventory is relevant at disconnection.
mm.
% of trapped inventory retained / captured.
s.
% of bunker flow used during the remaining isolation interval.
mm for approximate pool-area visualization only.

Bunkering Time & Topping

minutes.
minutes added to operation.
% of planned bunker volume.
% of safe bulk rate.
minutes.

Commercial Inputs

Selected currency/hour.

ISO 22120 / IMO Bunkering Readiness

Engineering / bunkering screening only: This tool is not an ISO 22120 conformity assessment, class-approved transfer-system calculation, HAZID / HAZOP, pump curve, transient surge analysis, CFD dispersion model, hazardous-area study, ERS certification, ESD functional-safety analysis, tank filling-limit approval or port authorization. Methanol bunkering limits depend on the exact vessel, terminal, bunker supplier, hose / arm maker, tank vent system, pressure surge, local regulation, class, flag and approved operating procedure.
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