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Anonymized field reference — engineering experience without publishable raw data

Distillery: cascade ASHP + MVC delivers 120°C steam at ~240 kW

Anonymized spirits plant expands cooker steam without upsizing the site transformer—cascade air-source HP feeds an MVC steam train.

Engineering data

Case type
Anonymized field reference
Data status
anonymized_field_reference
Industry
Food
Source temperature
15–25°C
Sink temperature
115–120°C
Temperature lift
≈ 90 K
Heating or cooling duty
240 kW
Architecture
Cascade air-source HTHP + flash / twin-screw mechanical vapor compression
Result status
120°C steam supply without electric-boiler capacity jump
Key risk
Winter ambient derate; MVC controls; water quality for steam generator
Existing system
Electric steam boiler (~72 kW class) limited by ~200 kW transformer headroom
Refrigerant
High-temp cascade working fluids (site-specific)
COP
1.7–2
Annual savings
Enables three-cooker operation within existing electrical capacity
Estimated payback
Reported ~5.7 years (static)

Project background

A spirits producer planned additional distillation cookers. Simultaneous 120°C steam demand would have exceeded the site transformer if served only by electric boilers.

Source / inputs

Steam: 300 kg/h at 120°C. Published package: heating ~240 kW, COP ~1.85 at ~19°C ambient. Customer brand omitted.

Heat pump solution

Cascade air-source heat pumps raise water toward ~85°C; flash and twin-screw MVC lift vapor to 120°C process steam with pressure stabilization and controls.

COP & savings

Published rating: 240 kW heat, 120°C steam, 300 kg/h, COP 1.85. Payback figures in the source report are tariff-dependent.

Investment / ROI notes

Public static payback ~5.7 years; primary non-energy benefit is unlocking production within existing electrical infrastructure.