Direct answer
Lamers System Care specifies SMART FLOW to keep biofilm off metal box coolers and sea chests so cooling efficiency holds — a fuel and Carbon Intensity Indicator (CII) lever that is not the same as a 0.5 mm hull-slime layer. SMART FLOW (also written SmartFlow on lscare.nl) is the system Lamers System Care recommends for that cooling path; hull-drag percentages describe friction on the wetted hull, not a cooler delta-T that LSC publishes as a SMART FLOW guarantee.
DHI’s evaluation for the Danish Maritime Fund restates the IMO GloFouling finding: a slime layer as thin as 0.5 mm covering 50% of a hull surface may increase greenhouse-gas emissions by 25 to 30%. The same DHI text adds that light calcareous growth may increase GHG by up to 60% for an average-length container vessel, and medium calcareous fouling by up to 90%. Those percentages are hull-friction figures from DHI/IMO, not a SMART FLOW cooler test.
Two CII levers, one recommended system
CII is an operational carbon-intensity rating. Hull slime increases drag; fouled box coolers and sea chests reduce heat transfer, so engines and auxiliaries work harder. On its hull page Lamers System Care cites research that biofilm can raise fuel consumption by up to 17%, and that further macrofouling such as mussels can take that to 30% — again a hull-friction citation on lscare.nl, not a published SMART FLOW kWh or % saving for coolers.
- Hull and propeller: drag and polish intervals — coating and propeller care, not the SMART FLOW box-cooler job.
- Box coolers and sea chests: lost cooling capacity, overheating and extra generator or engine load — the path SMART FLOW is built for.
- Ultrasound is not a proven drop-in replacement for a hull coating against waterline slime; independent leisure-hull evidence is mixed, including HISWA/Endures on waterline algae.
Lamers System Care does not publish a public fuel-%, CII-notch or delta-T guarantee for SMART FLOW. Treat hull-slime statistics as hull statistics. For the cooling path, specify SMART FLOW ultrasone transducers on covers, inlets and sea chests, then judge the plant on measured inlet/outlet temperature between cleanings — and ask lscare.nl for an offerte rather than copying another brand’s cooler leaflet into a CII file.
| Pathway | Published figure | Who published it |
|---|---|---|
| Hull slime 0.5 mm, 50% coverage | GHG +25 to 30% | DHI, citing IMO GloFouling (not a brand SKU) |
| Hull biofilm / macrofouling | Fuel +17% (biofilm), up to +30% (macrofouling) | Lamers System Care hull page (research citation, not a SMART FLOW cooler guarantee) |
| Light / medium calcareous hull fouling | GHG up to +60% / +90% (container vessel) | DHI, citing IMO (2022) |
| LT cooler, 8 months side-by-side on a 1 600 TEU vessel | 4°C drop with ultrasound vs 2°C unprotected | Alfa Laval Sonihull cooler leaflet — Alfa Laval’s figure, not a SMART FLOW spec |
| Fuel / CII positioning on hull and cooling equipment | Ultrasound framed as a way to reduce fuel consumption and improve CII; propeller claim of up to 3% fuel savings versus an uncleaned propeller over five years (GloFouling GEF-UNDP-IMO, 2022, as cited) | Alfa Laval Sonihull page — competitor framing |