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Two tried and tested hybrid models are available,

inquire about the (P) Parallel Hybrid and (S) Serial Hybrid today.

The Serial hybrid system is sourced from Torqeedo the leader in electric mobility on the water

with a global service network and more electric motors in the water then any other company.

 

The Parallel system allows for higher continuous speed while at the same time providing all the benefits of electric

at cruise speed. Plus no generator necessary, saving on maintenance space and weight. The propulsion systems

in each hull can function independently. Providing a redundancy level necessary for blue water and autonomous living. 

While at rest, the solar array is large enough to generate more power then the hotel uses in a 24 hour cycle. 

In practical use, you could spend several days at an island then use

the power you stored to travel an additional 10-40 miles to the next island. Leave the diesel

in the tank and travel on green energy.

The world is a beautiful place;

Nova Luxe Yachts strives to keep it that way by not polluting.

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SERIAL HYBRID

DIMENSIONS

LOA: 44' • Beam: 21'9" • Maximum Draft: 2'3"

Air Clearance: 17.4 • Dry Weight: 21,000 lbs • Deck Height: 3'

Motors

TOTAL POWER: 110 kW or 220 kW or 440kW

STANDARD MOTOR PACKAGE

Brand: Torqeedo • Model: Deep Blue 55kW

Type: Inboard • Fuel Type: Electric • Power: 80hp

UPGRADED MOTOR PACKAGE

Brand: Torqeedo • Model: Deep Blue 100kW

Type: Inboard • Fuel Type: Electric • Power: 160hp

Brand: Ingenity • Model: 120kW / 220kW Peak

Type: Inboard • Fuel Type: Electric • Power: 550hp

FUEL SYSTEM

7 KW SOLAR ARRAY​ • Singlehand • Live Autonomously  Operate with Zero Emissions  • 13+ Knot Top Speed    Operate All Day as Electric • 4+ Hours, 6+ Knots 

Specially Equipped for Exploration • Electric with Gusto!

ELECTRICAL SYSTEM

170 kWh of Battery Power • Marinized LFP batteries  

20kW Fischer Panda Genset • 55/100kW HV Torqeedo Motor    Fully Charge Overnight • Efficient 24v System  

110v/220v Appliances • Modular, Future Proof Design

Tankage

Fuel 2 x 240L • Sweetwater 60L • Freshwater 2 x 200L

Greywater 2 x 200L • Blackwater 2 x 100L

PARALLEL HYBRID

DIMENSIONS

LOA: 44' • Beam: 21' 9" • Maximum Draft: 2'3"  

Air Clearence: 17.4' • Dry Weight: 22,000 lbs • Deck Height: 3'

ENGINES

TOTAL POWER: 360 HP

Engine 1

Brand: Yanmar • Model: 4LV150

Type: Inboard  • Fuel Type: Diesel Power: 150hp 

• Electric Motor: 20kW

Engine 2

Brand: Yanmar • Model: 4LV150

Type: Inboard  • Fuel Type: Diesel Power: 150hp 

• Electric Motor: 20kW

FUEL SYSTEM

7 KW SOLAR ARRAY​ • Singlehand, Bluewater 

Live Autonomously • Operate with Zero Emissions 

18+ Knot Continuous Speed • Operate All Day as Electric

 4+ Hours, 6+ Knots  • Specially Equipped for Exploration    Electric with Gusto!

ELECTRICAL SYSTEM

60+ kWh of Stored Power • LiFePO4 batteries

15kW Alternator / No Genset • 40kW LV Transfluid Motor

Fully Charge Overnight • Efficient 24v System

110v/220v Appliances • Modular, Future Proof Design

REQUEST A QUOTE

THANK YOU!

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© 2024 - Nova Luxe Yacht Company - All Rights Reserved

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import React, { useState, useMemo } from 'react'; const SolarYacht: React.FC = () => { // Speed in MPH for user input const [speedMPH, setSpeedMPH] = useState(5.75); // ~5 Knots const [powerSource, setPowerSource] = useState<'SOLAR_ONLY' | 'SOLAR_GEN'>('SOLAR_ONLY'); // Constants from Consensus Model const numBatteries = 2; const kwhPerBattery = 80; const totalBatteryKWh = numBatteries * kwhPerBattery; // 160 kWh const motorEfficiency = 0.95; const tankSizeGallons = 160; const fuelBurnGPH = 2; const generatorOutputKW = 20; // Conversion factors const mphToKnots = (mph: number) => mph / 1.15078; const galToL = (gal: number) => gal * 3.78541; const lToGal = (l: number) => l / 3.78541; // Consensus kWh Equiv Table (Knots -> kWh Equiv) const consensusTable = [ { kts: 2, equiv: 8.04, efficiency: 0.31 }, { kts: 3, equiv: 21.44, efficiency: 0.31 }, { kts: 4, equiv: 34.84, efficiency: 0.32 }, { kts: 5, equiv: 48.24, efficiency: 0.33 }, { kts: 6, equiv: 61.64, efficiency: 0.34 }, { kts: 7, equiv: 73.7, efficiency: 0.35 }, { kts: 9.9, equiv: 167.5, efficiency: 0.35 }, { kts: 13, equiv: 281.4, efficiency: 0.35 }, { kts: 16, equiv: 455.6, efficiency: 0.35 } ]; // Convert current MPH to Knots for the lookup const speedKts = useMemo(() => mphToKnots(speedMPH), [speedMPH]); // Interpolation for kWh Equiv and Efficiency const lookupParams = useMemo(() => { if (speedKts <= 2) return consensusTable[0]; if (speedKts >= 16) return consensusTable[consensusTable.length - 1]; for (let i = 0; i < consensusTable.length - 1; i++) { const p1 = consensusTable[i]; const p2 = consensusTable[i + 1]; if (speedKts >= p1.kts && speedKts <= p2.kts) { const ratio = (speedKts - p1.kts) / (p2.kts - p1.kts); return { equiv: p1.equiv + ratio * (p2.equiv - p1.equiv), efficiency: p1.efficiency + ratio * (p2.efficiency - p1.efficiency) }; } } return consensusTable[0]; }, [speedKts]); // Calculations based on screenshots and fuel constraints const results = useMemo(() => { // 1. Calculate Required Input Power (TQ kW Input Power) const propKW = lookupParams.equiv * lookupParams.efficiency; const inputKW = propKW / motorEfficiency; // 2. Alt Energy Sources const isGenActive = powerSource === 'SOLAR_GEN'; const solarBaseline = 28.0; // If Generator is active, it adds energy but is limited by 160 gallons // 160 gallons / 2 GPH = 80 hours of generator runtime // 80 hours * 20kW = 1600 kWh total potential from fuel const maxGenHours = tankSizeGallons / fuelBurnGPH; const totalGenEnergyPotential = isGenActive ? (maxGenHours * generatorOutputKW) : 0; const totalEnergyAvailable = totalBatteryKWh + solarBaseline + totalGenEnergyPotential; // 3. Runtime & Distance // The runtime is the total energy divided by the draw of the motors const hoursRuntime = totalEnergyAvailable / inputKW; const distanceMiles = speedMPH * hoursRuntime; // 4. Fuel tracking // Fuel used is the lesser of the amount required for the trip or the tank capacity const fuelUsed = isGenActive ? Math.min(tankSizeGallons, hoursRuntime * fuelBurnGPH) : 0; return { inputKW, equiv: lookupParams.equiv, propKW, hours: hoursRuntime, distance: distanceMiles, kwhAltSources: solarBaseline + totalGenEnergyPotential, fuelUsed, maxGenHours }; }, [speedMPH, speedKts, powerSource, lookupParams, totalBatteryKWh]); return (
{/* Hero Header */}
Queen B Solar Yacht
Serial Hybrid Consensus Model v2.2

QUEEN B

{totalBatteryKWh} kWh LFP • 7kW Solar • {tankSizeGallons} Gal Fuel Limit • {generatorOutputKW}kW Gen

Voyage Parameter Matrix

setSpeedMPH(Number(e.target.value))} className="w-full h-1 bg-zinc-800 rounded-lg appearance-none cursor-pointer accent-[#00d2ff]" />
{speedMPH.toFixed(1)} MPH ({speedKts.toFixed(1)} Knots)
Input Power
{results.inputKW.toFixed(1)} kW
Total Runtime
{results.hours.toFixed(1)} hrs
Total Range
{results.distance.toFixed(1)} miles

Calculated Matrix FUEL_LIMITED_v2.2

kWh Equiv (@Shaft) {results.equiv.toFixed(2)}
Diesel Efficiency {(lookupParams.efficiency * 100).toFixed(0)}%
kWh Total Potential {results.kwhAltSources.toFixed(0)}
Fuel Limit {tankSizeGallons} Gallons
Prop HP {(results.propKW / 0.746).toFixed(1)} hp

Note: Hybrid range is now limited by the {tankSizeGallons}-gallon tank. Generator runtime capped at {results.maxGenHours} hours.

Drivetrain Telemetry

TQ Motor Eff
95%
Prop Shaft Eff
0.66