This is a legacy page. Please click here to view the latest version.
Tue 20 Apr 2010, 10:04 GMT

Technology developed to cut diesel engine emissions


Two-stage turbocharging technology is said to offer significant advantages in fuel consumption and engine emissions.



Wärtsilä and ABB Turbo Systems are co-operating in a joint development programme for what is said to be a groundbreaking application of two-stage turbocharging on large diesel engines.

Accordinng to Wärtsilä, advanced engine technology, together with two-stage turbocharging, offers significant advantages in fuel consumption and engine emissions.

The application of two-stage turbocharging technology on Wärtsilä diesel engines has been developed through close co-operation between Wärtsilä and ABB Turbo Systems.

In this programme, Wärtsilä is focusing on developing advanced engine technology with the turbocharger, which the company says is able to reach the highest possible performance and become a cost-effective commercial solution for its customers. ABB Turbo Systems is delivering the turbocharging technology with defined performance in terms of airflow, pressure ratios and efficiency.

"ABB Turbo Systems is one of Wärtsilä's main development partners, and has played an important role in Wärtsilä's product development for more than three decades. Our customers benefit from the productive and successful R&D activities of our two companies, both of whom are leaders in their fields," said Mikael Troberg, Director of Wärtsilä Testing & Performance.

Benefits of reduced emissions and fuel consumption

In the new engine design, two turbochargers are arranged in series to generate increased air pressure, airflow and a superior turbocharging effect. Accordiing to Wärtsilä, this results in an efficiency rating of up to 76 per cent, which is extremely high. The increased air pressure, combined with the advanced engine technology, improves the engine output and power density by up to 10 per cent. At the same time, both fuel consumption and CO2 emissions are reduced.

Wärtsilä says that further emissions reduction can be achieved with additional engine systems or by the use of exhaust gas after-treatment. A precise combination of fuel consumption levels and reductions in CO2 and NOx emissions can be selected through detailed systems configuration.

According to Wärtsilä, intelligent engine control allows optimum operation of the advanced engine design over the whole load range, and a significant reduction in NOx emissions can be reached. At high altitudes, two-stage turbocharging technology guarantees the engine's operational performance by compensating for the reduced air density, Wärtsilä says.

The significant reductions in fuel consumption and emissions are the result of extensive joint testing of the two-stage turbocharging system on the Wärtsilä engine. The tests have taken place at Wärtsilä's test facility in Vaasa, Finland, and the targets for the development programme have been successfully met. Wärtsilä and ABB Turbo Systems are planning to initiate a major pilot project with a customer in the near future.

Lower lifecycle costs

Another driving factor in this development work has been to significantly lower lifecycle costs - a target which Wärtsilä says has been met in addition to the goal of lowering NOx emissions.

The market potential for this technology in power plants is believed to be large. Similarly, Wärtsilä says that its advanced technology for combustion control will be beneficial to the shipping market when the market requirements are in place.

In addition to costs, the compactness and cost effective design are considered to be of importance. Calculations indicate that in certain power plant applications, the investment in advanced 2-stage engine technology could be regained in less than two years of operation.

"The conceptual design for the new power plant engine began three years ago," said Troberg. "Testing of the concept, and verification of the technology, has been successfully carried out using four-stroke Wärtsilä 20 and Wärtsilä 32 engines. We see this technology as being a key for the next generation of Wärtsilä emissions-friendly engines. The technology has been developed for the four-stroke portfolio, in both marine and power plant applications. The next logical step is the two-stroke engine family for large vessels, typically as single engine installations."

Cutting emissions - high on everyone's agenda

"Emissions control plays an increasingly important role today, and in particular reducing CO2 and NOx levels is high on the agenda. Today, the market is demanding environmentally sound solutions with competitive lifetime costs. This need continues to pave the way for the introduction of new technologies developed by Wärtsilä and ABB," Wärtsilä said in a statement.

[Pictured: 2-stage turbocharger on a Wärtsilä 32 engine]


TMS Tankers logo. Lloyd’s Register delivers fleet-wide energy transition roadmap for TMS Tankers  

LR Advisory maps vessel-level compliance risk and decarbonisation pathways across the Greek owner’s tanker fleet.

Dr Prapisala Thepsithar, GCMD. GCMD shares biofuel assurance and green finance insights at Hong Kong shipping decarbonisation forum  

The Global Centre for Maritime Decarbonisation presented pilot findings on biofuels and energy efficiency financing.

Laura Maersk ethanol bunkering graphic. Maersk conducts large-scale ethanol bunkering trial on Laura Maersk in Rotterdam  

A.P. Moller – Maersk has conducted a barge-delivered ethanol bunkering operation as part of ongoing fuel trials.

Luminara vessel truck-to-ship bunkering. MOL Techno-Trade completes first LNG bunkering for international cruise ship in Hokkaido  

Truck-to-ship LNG operation at Hakodate marks first such supply to an international cruise vessel in Hokkaido.

Acta Gemini vessel. Acta Marine takes delivery of methanol dual-fuel CSOV Acta Gemini for RWE wind farm charter  

The vessel will support operations at the Sofia Offshore Wind Farm at Dogger Bank.

Yeva Wood and Kirsten Møller Jørgensen. Malik Supply expands Danish team with bunker trader and finance hire  

Danish bunker supplier Malik Supply adds two new staff across its Fredericia and Aalborg offices.

AiP award ceremony for a 10,000-teu biofuel-powered container ship. HJSC wins AiP for 10,000-teu biofuel-powered container ship design  

South Korean shipbuilder HJ Shipbuilding & Construction receives classification society approval for its biofuel vessel design at Posidonia.

Active vessel. Capital Clean Energy Carriers takes delivery of LNG carrier and dual-fuel gas carrier, secures five new charters  

Athens-based CCEC expands its fleet and pushes contracted revenue backlog to $3.1bn.

VPS logo. Fuel quality management for vessels in extended idle: Arabian Gulf, Gulf of Oman and adjacent anchorages | Rahul Choudhuri, VPS  

Managing fuel quality deterioration following the closure of the Strait of Hormuz.

Person signing a document. Agastya Green Fuels signs 250,000 t/yr e-methanol offtake deal with Sri Lanka’s SAR Group  

Indian producer and Sri Lankan maritime firm agree long-term green methanol supply partnership.


↑  Back to Top