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Hotel on-premise laundry installation
HOTEL OPL APPLICATION

Hotel OPL Ozone Engineering Platform

On-premise laundry engineering for hospitality washer demand, dissolved ozone performance and operating maintenance.

INLINE OZONE WATERPOINT-OF-USE ENGINEERINGEXISTING WASHER
ENGINEERING SIMULATION

Validate the Hotel OPL operating point

DESIGN INPUTS

Hotel OPL operating condition

Every editable value recalculates the selected operating point immediately.

Advanced adjustment requires an authorized engineering workflow.
BES DESIGN STANDARD0.50 mg/L
Hospitality LaundryLinen HygieneOdor ControlCommercial Washing
Preliminary institutional product-class reference · WDS3000X
01 / HYDRAULIC DESIGN

Hydraulic sizing and capacity

Adequate
Actual Fill Flow8.0 L/min480 LPH total peak at 1 concurrent
Suggested Fill Flow8.0 L/min480 LPH per washer · size/type basis
Peak Water Flow480 LPH8.0 L/min × 1 concurrent
Required Dissolved Ozone144.0 mg/hPeak flow × target concentration
Required Generator Output180.0 mg/hAt 80.0% effective MTE
Estimated Dissolved Ozone0.333 mg/LHotel OPL BES standard 0.50 mg/L
Selected Product Capacity200 mg/h60–2,300 LPH rated flow basis
Maximum Supported Flow533 LPH · 8.9 L/min0.30 mg/L target · per-washer limit at current concurrency
Safety Margin11%20.0 mg/h remaining
System StatusAdequateActual flow checked against ozone and hydraulic limits
AI HYDRAULIC RECOMMENDATIONAuto Recommend evaluated all four supported WDS models and selected the smallest compatible model, WDS2000X. It can supply the requested dissolved ozone concentration at the calculated inlet flow with 11% generator safety margin.Total estimated treated-water basis: 1,920 L/day. Pressure, temperature and water quality apply visible estimated factors to MTE.
HYDRAULIC CALCULATION BASIS

Transparent engineering sequence

01Peak Flow

8.0 L/min × 1 × 60 = 480 LPH

02Dissolved Demand

480 LPH × 0.30 mg/L = 144.0 mg/h

03Generator Demand

144.0 ÷ 80.0% = 180.0 mg/h

04Capacity Check

200180.0 = 20.0 mg/h

Effective MTE = WDS 80% product parameter × pressure factor 1.00 × temperature factor 1.00 × water-quality factor 1.00. Maximum target flow = min(2,300 LPH rated flow, 533 LPH ozone-limited flow).

02 / OZONE PROCESS PERFORMANCE

Stage concentration and decay

Each stage receives fresh ozonated water, follows an independent decay profile, and resets to zero at drain. Exposure values are engineering information, not acceptance criteria.

Initial Dissolved Ozone0.333 mg/LBelow BES Design Standard · fresh concentration
Estimated Main Wash Concentration0.146 mg/LEstimated concentration at Main Wash drain
Estimated Final Rinse Concentration0.253 mg/LEstimated concentration at Final Rinse drain
Program Contact Time30.0 minWash and agitation contact; fill time excluded
Estimated Ozone Exposure9.44 mg·min/LCumulative sum of independent stage exposures
Ozone Decay Profile0.055 min⁻¹Exponential engineering decay coefficient
PROCESS ENGINEERING RECOMMENDATIONCalculated dissolved ozone is below the Hotel OPL BES Design Standard. Consider reducing fill flow, increasing generator capacity, or reducing concurrent demand.Every drain stops the current stage exposure, resets concentration to zero, and starts the next stage as a new exposure event.
OZONE DECAY TIMELINE

Actual dissolved ozone and BES Design Standard

Ozone exposure continues through wet contact while the generator is OFF. Drain resets concentration before the next stage.

Below BES Design Standard
01Main WashExposure 3.82 mg·min/L
BES 0.50 mg/L
Fill 2.5 minContact 15.0 minDrain
Actual Dissolved OzoneBES Design Standard
Generator
ONOFF
C₀ 0.333 mg/LCend 0.146 mg/L
02Rinse 1Exposure 1.87 mg·min/L
BES 0.50 mg/L
Fill 2.5 minContact 5.0 minDrain
Actual Dissolved OzoneBES Design Standard
Generator
ONOFF
C₀ 0.333 mg/LCend 0.253 mg/L
03Rinse 2Exposure 1.87 mg·min/L
BES 0.50 mg/L
Fill 2.5 minContact 5.0 minDrain
Actual Dissolved OzoneBES Design Standard
Generator
ONOFF
C₀ 0.333 mg/LCend 0.253 mg/L
04Final RinseExposure 1.87 mg·min/L
BES 0.50 mg/L
Fill 2.5 minContact 5.0 minDrain
Actual Dissolved OzoneBES Design Standard
Generator
ONOFF
C₀ 0.333 mg/LCend 0.253 mg/L
03 / EXPECTED OPERATIONAL BENEFITS

Reference operating ranges

Indicative ranges from the supplied BES ROI Annex guidance. These are expected operational benefits, not project-specific ROI calculations or guaranteed savings.

Estimated Water Heating Reduction80–100%ROI Annex reference range
Estimated Chemical Reduction30–50%ROI Annex reference range
Estimated Main Wash Time Reduction15–20%ROI Annex reference range
Estimated Rinse ReductionApplication-dependentConfirm against the approved wash program
Estimated Softener Reduction50–100%ROI Annex reference range
Estimated Drying Improvement10–20%ROI Annex reference range
04 / MAINTENANCE & RUNTIME

Fill-only generator duty

The generator clock advances only while an inlet valve is open. Wash, soak and agitation contact time never adds EOG runtime.

Total Fill Time10.0 min/cycle4 independent fills
EOG Runtime per Cycle0.167 hAll fill times only
Estimated Generator Runtime1.00 h/day6.0 cycles/washer/day · 1 fill group(s)
Estimated Monthly Runtime30.4 h/monthCurrent daily operating schedule
Estimated EOG Life1,000 h0 of 1,000 rated hours entered
Estimated Replacement Interval32.9 months1,000 operating days at current schedule
Estimated Treated Water1,920 L/dayCurrent washer count and runtime basis