Close-up of metallic fuel injection components with valves, bolts, and connected pipes inside a methanol engine system

Engineers in Denmark are now making shipboard power low-emission too with a four-stroke dual fuel methanol genset 

By Niels Anner

With the first two-stroke dual-fuel Everllence B&W ME-LGIM methanol engines propelling large container ships across oceans, Everllence engineers from Holeby and Frederikshavn, Denmark, are now developing the ideal match for onboard power: a small-bore GenSet capable of running on conventional fuel, biofuels and green methanol. 

It began three years ago with a question: Can we make shipboard power low-emission too? Now, in Frederikshavn, Denmark, full scale trials are already being completed with a test methanol GenSet converted from a conventional L21/31 engine – a perfect match for vessels with a methanol-fueled main engine. 

Today, the small-bore four-stroke engineering team from Holeby is conducting tests on the seamless fuel shift from diesel to methanol. Upstairs in the control room, they’re monitoring all processes to make sure the operation is running smoothly. While downstairs in hall number 2, where it’s a scorching 35°C, the GenSet is humming along.

Engineer standing and working on the side of a large engine, interacting with cables, pipes, and mounted equipment in a test hall
Combining a methanol-fueled GenSet with a methanol-fueled two-stroke engine brings clean power to every part of a vessel.

Køel Andersen, Head of Four-Stroke Testing & Control, Everllence Holeby

“The L21/31 DF-M is the first small-bore, four-stroke methanol engine in our portfolio,” says Michael Køel Andersen, “and the first in the world at the 1,000- to 1,980-kilowatt power range.” Køel Andersen is Everllence’s Head of Four-Stroke Testing & Control in Holeby. Over the past three years, he and his team have been developing this dual-fuel GenSet with the goal of reducing a ship’s carbon footprint with green methanol.

“Methanol is a key green fuel for the maritime energy transition,” says Andersen, “and combining a methanol-fueled GenSet with a methanol-ready two-stroke engine brings clean power to every part of a vessel.”

95
%
reduction of lifecycle greenhouse gas emissions possible with e-methanol
Illustration cloud with arrows down
2,500
conventional L21/31 engines already in service
Illustration engine

Adopting methanol for diesel GenSets

GenSets – also known as auxiliary engines – are used for electrical power generation to run a variety of systems and equipment on board, such as lights, air conditioning, water pumps, cranes – even steering. Unlike the main engine or prime mover, which needs to provide enough power to move a ship through water, GenSets are smaller, more flexible and fuel efficient, reducing a ship’s total operating costs.

Market perception for the new GenSet is very positive, says Hakon Juel Hansen,  Promotion Manager & Business Development, Small-Bore GenSets at Everllence in Copenhagen. “Our teams have a lot experience bringing new fuel and engine technologies to the market. In fact, we’ve been working with methanol-powered main engines for nearly a decade now, and we’ve drawn on this experience and applied years of knowledge to the methanol GenSets.”

Wide view of a stationary dual-fuel methanol GenSet connected to exhaust ducts, piping, and auxiliary systems in a bright test hall
The new methanol GenSet is based on a classic, reliable standard that already has more than 110 million hours in commercial operation. ©Gorm Branderup

In evaluating the right technology and the best business case for a dual-fuel methanol GenSet, the team found that using a proven and highly reliable small-bore diesel engine was the best foundation: The L21/31 GenSet that has already accumulated over 110 million operating hours with thousands of units in service.

The conversion to methanol, however, wasn’t without its challenges, says Køel Andersen. “The biggest engineering challenge was the adaptation of our control system. Where could we find the space for injectors? Where could the ports be installed? The whole infrastructure is equipped with double-wall piping and the external system with a fuel valve train and nitrogen purging. It was a huge challenge, but we found the solution.”

Person standing in front of a large marine engine inside a test facility, with visible circular housing, pipes, and mechanical components
We have a complete decarbonization solution for shipping in the pipeline.”

Hakon Juel Hansen, Promotion Manager & Business Development, Small-Bore GenSets, Everllence CPH

The methanol GenSet retains all the features of the original, explains Andersen, such as long time between overhauls (TBOs). Plus, it offers online monitoring with an advanced SaCoS electronic control system and can run on a combination of fuels, including diesel, biofuel and methanol, making it a very flexible solution.

Two engineers leaning over a marine engine, closely examining piping, injectors, and internal components in a compact engine space
The biggest challenge for the Everllence engineers was to find enough space for the port fuel injectors. ©Gorm Branderup

The advantages of low-pressure port fuel injection

While the fuel shift test continues, Andersen points out the yellow pipes feeding methanol into the engine: “The next test will give us a complete visualization of our fuel mapping, where we can show the values for the mix of green methanol with diesel injection or for biofuel as a pilot inject to start combustion.”

Hakon Juel Hansen calls attention to another feaure of the new GenSet. “With a low-pressure port fuel injection (PFI) concept, we’re able to supply fuel safely at low pressures and cut capital expenditures for our customers.”

Person standing next to large ventilation pipes and engine structures inside an industrial test facility with metallic ducts
There are very few limitations on the type of merchant vessel this engine can be used on.

Warley Thomsen, R&D Engineer, Everllence Holeby

This was a key factor in the first order for the new GenSet: “We received an order from China Merchants Heavy Industry for six small-bore, seven-cylinder L21/31 DF-M, with the first delivery due in 2025,” says Hansen. The order is in conjunction with two Pure Car and Truck Carriers powered by Everllence B&W ME-LGIM prime movers, which shows the potential for methanol: “With both main engines and GenSets running on green methanol, we have a complete decarbonization solution for shipping in the pipeline.”

Engineer kneeling beside a row of engine cylinders, inspecting components along a large four-stroke methanol GenSet
The new L21/31DF-M GenSet is based on the proven L21/31 GenSet that already accumulated over 110 million operating hours with thousands of units in service. ©Gorm Branderup

Meeting demand for greener transportation

The testbed here in Frederikshavn was designed in 2023, and the team has now been conducting full-scale engine tests for several months. R&D Engineer Warley Thomsen has been part of the project from early on, which began with a feasibility study just three years ago in 2020. Then after a single-cylinder test in 2022, says Thomsen, things progressed quickly: “We now have everything in place to optimize the engine’s operation and performance. And there are very few limitations on the type of merchant vessel this engine can be used on.”

Thomsen adds that retrofitting GenSets to run on methanol will also be an option starting in 2025. The fact that the L21/31 DF-M is based on a diesel engine will make the conversion easier. Moreover, says Hakon Juel Hansen, it will be easier to secure financing for vessels that run on green fuels. “Consumers are demanding more green transportation. Now, we have the right technology in the main engines and the GenSets”.

About the author

Niels Anner is an independent journalist based in Copenhagen, who writes on business, science, technology and society in Northern Europe.