Waste Heat Recovery from Marine Gas Turbines and Diesel Engines
Утилизация отходящего тепла морских газовых турбин и дизельных двигателей
2017-05-18
SCID: 54.1/ru4x8262
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COGAS propulsion systemdiesel-steam plantsmarine gas turbinesship propulsion systemswaste heat recovery
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Abstract (AI)
The paper presents the main results of a research project directed to the development of mathematical models for the design and simulation of combined Gas Turbine-Steam or Diesel-Steam plants for marine applications. The goal is to increase the energy conversion efficiency of both gas turbines and diesel engines, adopted in ship propulsion systems, by recovering part of the thermal energy contained in the exhaust gases through Waste Heat Recovery (WHR) dedicated installations. The developed models are used to identify the best configuration of the combined plants in order to optimize, for the different applications, the steam plant layout and the performance of WHR plant components. This research activity has allowed to obtain significant improvements in terms of energy conversion efficiency, but also on other important issues: dimensions and weights of the installations, ship load capacity, environmental compatibility, investment and operating costs. In particular, the main results of the present study can be summarized as follows: (a) the quantitative assessment of the advantages (and limits) deriving by the application of a Combined Gas And Steam (COGAS) propulsion system to a large container ship, in substitution of the traditional two-stroke diesel engine; (b) the proposal of optimized WHR propulsion and power systems for an oil tanker, for which a quantitative evaluation is given of the attainable advantages, in terms of fuel consumption and emissions reduction, in comparison with more traditional solutions.
Key Findings
1
For an oil tanker, optimized WHR propulsion and power systems provide quantified reductions in fuel consumption and emissions compared with traditional solutions.
2
Mathematical models were developed to design and simulate combined gas turbine–steam and diesel–steam plants for marine applications.
3
The models optimize steam-cycle layouts and WHR-component performance while considering installation dimensions, weight, ship capacity, environmental compatibility, and costs.
4
The study quantitatively assesses the benefits and limitations of replacing a large container ship’s conventional two-stroke diesel engine with a COGAS propulsion system.
5
Waste heat recovery from exhaust gases improves the energy-conversion efficiency of marine gas turbines and diesel engines.
Research Object
marine gas turbine–steam and diesel–steam combined plants with waste heat recovery for ship propulsion and power systems
Research Subject
optimization of waste-heat recovery plant configurations and performance to improve energy-conversion efficiency while reducing fuel consumption, emissions, dimensions, weight, and costs in marine applications
Publication Details
Publication Date
2017-05-18
Journal
Energies
Publisher
Multidisciplinary Digital Publishing Institute
ISSN
1996-1073
Cited by
50
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