Comparison of Saturated and Superheated Steam Plants for Waste-Heat Recovery of Dual-Fuel Marine Engines
Сравнение паросиловых установок с насыщенным и перегретым паром для утилизации отходящего тепла двухтопливных судовых двигателей
2020-02-22
SCID: 54.1/n6q546wc
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dual-fuel marine enginesexergetic analysissaturated-steam Rankine cyclesuperheated-steam cyclewaste-heat recovery
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Abstract (AI)
From the working data of a dual-fuel marine engine, in this paper, we optimized and compared two waste-heat-recovery single-pressure steam plants—the first characterized by a saturated-steam Rankine cycle, the other by a superheated-steam cycle–using suitably developed simulation models. The objective was to improve the recovered heat from the considered engine, running with both heavy fuel oil and natural gas. The comparison was carried out on the basis of energetic and exergetic considerations, concerning various aspects such as the thermodynamic performance of the heat-recovery steam generator and the efficiency of the Rankine cycle and of the combined dual-fuel-engine–waste-heat-recovery plant. Other important issues were also considered in the comparison, particularly the dimensions and weights of the steam generator as a whole and of its components (economizer, evaporator, superheater) in relation to the exchanged thermal powers. We present the comparison results for different engine working conditions and fuel typology (heavy fuel oil or natural gas).
Key Findings
1
Comparison evaluates energetic and exergetic performance, including heat-recovery steam-generator behavior, Rankine-cycle efficiency, and combined engine–recovery-plant efficiency.
2
Results provide a basis for selecting between saturated- and superheated-steam configurations while balancing recovered heat, thermodynamic performance, and equipment size and weight.
3
The assessment also considers steam-generator dimensions and weights, including economizer, evaporator, and superheater components, relative to exchanged thermal power.
4
The study develops and optimizes single-pressure waste-heat-recovery steam plants for a dual-fuel marine engine using saturated-steam and superheated-steam Rankine cycles.
5
The two plant configurations are compared for engine operation on both heavy fuel oil and natural gas across different working conditions.
Research Object
single-pressure waste-heat-recovery steam plants integrated with a dual-fuel marine engine operating on heavy fuel oil or natural gas
Research Subject
the energetic and exergetic performance, heat-recovery capability, component size and weight, and overall efficiency of saturated- versus superheated-steam Rankine-cycle plants under different engine operating conditions and fuel types
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2020-02-22
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