Marine Turbocharger Market Sales Projections Forecast Positive Growth Through 2020-2026


(MENAFN- Ameliorate Digital Consultancy)

Increasing demand for enhanced performance of ships with surging seaborne trade across nations is likely to drive global marine turbocharger market forecast. Favorable sea trade policies are positively impacting the industry growth. Surging requirements for new commercial ships will also boost product deployment.

Turbocharger in a ship's engine is a crucial component, as it reuses the exhaust gases to increase the overall efficiency of the engine. Continuously advancing propulsion technologies along with strict laws pertaining to carbon emissions imposed by regulatory bodies will increase product penetration.

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Increasing efforts towards optimization of turbochargers for achieving high performance and maximum operational flexibility will provide a positive outlook to the product development. Global marine turbocharger industry size is forecast to reach over USD 780 million by 2026.

  • Imposition of hazardous gas emission regulations

Strict impositions by regulatory bodies such as IMO (International Maritime Organization) to control gas emission is prompting the adoption of advanced marine turbochargers for reducing oxides of nitrogen. Surging demand from ship operators for enhanced engine & turbocharger efficiencies to meet the EEDI targets is fueling product penetration.

Newly developed advanced marine turbochargers offer various advantages over the traditional ones, such as higher pressure ratios as well as improved efficiencies, reducing the environmental impact further. Utilization of structure software such as (FEA – Finite Element Analysis) and ANSYS enables flexible structure development processes, which is further aiding in making modifications in turbocharger at later stages.

Thermal management control of turbine and bearings plays a crucial part in maintaining the optimum engine efficiency. Techniques such as CFD (Computational Fluid Dynamics) are also being employed in turbine blades and compressor wheels for determining the primary and secondary flow structure around impeller blades.

  • Development of powerful recreational vessels

Rise in disposable incomes in conjunction with increased consumer spending are fueling the sales of new-gen recreational boats integrated with latest propulsion technologies. Increasing requirements for higher speed and optimal power output in ships for recreational sports activities are encouraging ship manufacturers to employ advanced technologies.

Digital monitoring of turbochargers improves performance over longer operating periods, increases product lifecycle and aids in fault recognition and damage reduction. Demand for effective control, monitoring as well as diagnosis of turbochargers is encouraging the integration of digital solutions and power electronics.

Integration of adjustable blade turbocharger provide better alteration of aspect ratios, further expanding effective area of turbine. Improved pressure ratios along with reduced lag time by the integration of adjustable blades enables flexible air management for optimized combustion and enhances the overall engine efficiency.

Increasing adoption of electrically assisted turbochargers to lower fuel consumption at high speed and to maintain speed variations during low load conditions, is likely to supplement marine turbocharger industry share.

  • Contribution of leading industry players

Close cooperation of marine vessel manufacturers and engine manufacturers from prototype stages to series production enables product developments as per specific requirements. With increasing demand for efficient marine vessels, major industry participants are emphasizing on utilizing novel materials and mechanisms to attain lightweight structure and higher pressure ratios.

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For instance, Kompressorenbau Bannewitz GmbH, a shipping & marine supplier introduced in 2016 its ST27, an innovative turbocharger series that delivers pressure ratio up to 5.5:1. The players in the industry are focusing on modernization and upgradation of existing turbochargers in order to maximize reliability and operational flexibility of marine vessels.

Partial Chapter of the Table of Content

Chapter 1 Methodology and Scope

1.1 Market definition

1.2 Base estimates & working

1.2.1 North America

1.2.2 Europe

1.2.3 Asia Pacific

1.2.4 Latin America

1.2.5 Middle East & Africa

1.3 Forecast calculations

1.3.1 COVID-19 impact calculations on industry forecast

1.4 Data Sources

1.4.1 Secondary

1.4.1.1 Paid

1.4.1.2 Unpaid

1.4.2 Primary

Chapter 2 Executive Summary

2.1 Marine turbocharger industry 3600 synopsis, 2016 – 2026

2.1.1 Business trends

2.1.2 Mode of operation trends

2.1.3 Technology trends

2.1.4 Component trends

2.1.5 Application trends

2.1.6 Regional trends

Chapter 3 Marine Turbocharger Industry Insights

3.1 Industry segmentation

3.2 Industry landscape, 2016 – 2026

3.3 COVID 19 impact on industry landscape

3.4 Industry ecosystem analysis

3.4.1 Distribution channel analysis

3.4.2 Value chain disruption analysis (COVID 19 impact)

3.4.3 Vendor matrix

3.5 Technology landscape

3.6 Pricing trends

3.6.1 North America

3.6.2 Europe

3.6.3 Asia Pacific

3.6.4 Latin America

3.6.5 MEA

3.7 Cost structure analysis

3.8 Regulatory landscape

3.8.1 U.S.

3.8.2 Europe

3.8.3 China

3.9 Industry impact forces

3.9.1 Growth driver

3.9.2 Industry pitfalls & challenges

3.10 Innovation & sustainability

3.11 Growth potential analysis, 2019

3.12 Porter's analysis

3.12.1 Supplier power

3.12.2 Buyer power

3.12.3 Threat of new entrants

3.12.4 Industry rivalry

3.12.5 Threat of substitutes

3.13 Company market share analysis, 2019

3.13.1 Top players analysis

3.13.2 Strategy dashboard

3.14 PESTEL analysis

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