Javascript must be enabled to continue!
Cooling Potential of Ship Engine Intake Air Cooling and Its Realization on the Route Line
View through CrossRef
A fuel efficiency of a ship engine increases with cooling inlet air. This might be performed by the chillers, which transform the heat of engine exhaust gas and scavenge air for refrigeration. The effect gained due to cooling depends on the intake air temperature drop and the time of engine operation at decreased intake air temperature. Thus, the cooling degree hour (CDH) number, calculated as air temperature depression multiplied by the duration of engine operation at reduced intake air temperature, is used as a primary criterion to estimate the engine fuel efficiency enhancement due to intake air cooling over the ship routes. The engine intake air cooling potential is limited by its value, available according to engine exhaust heat and the efficiency of heat conversion to refrigeration in the chiller, evaluated by the coefficient of performance (COP). Therefore, it should be determined by comparing both the needed and available values of CDH. The ejector chiller (ECh) was chosen for engine exhaust gas heat recovery to refrigeration as the simplest and cheapest, although it has a relatively low COP of about 0.3 to 0.35. However, the ECh generally consists of heat exchanges which are mostly adapted to be placed in free spaces and can be mounted on the transverse and board side bulkheads in the ship engine room. The values of sucked air temperature depression and engine fuel consumption reduction at varying temperatures and humidity of ambient air on the route were evaluated.
Title: Cooling Potential of Ship Engine Intake Air Cooling and Its Realization on the Route Line
Description:
A fuel efficiency of a ship engine increases with cooling inlet air.
This might be performed by the chillers, which transform the heat of engine exhaust gas and scavenge air for refrigeration.
The effect gained due to cooling depends on the intake air temperature drop and the time of engine operation at decreased intake air temperature.
Thus, the cooling degree hour (CDH) number, calculated as air temperature depression multiplied by the duration of engine operation at reduced intake air temperature, is used as a primary criterion to estimate the engine fuel efficiency enhancement due to intake air cooling over the ship routes.
The engine intake air cooling potential is limited by its value, available according to engine exhaust heat and the efficiency of heat conversion to refrigeration in the chiller, evaluated by the coefficient of performance (COP).
Therefore, it should be determined by comparing both the needed and available values of CDH.
The ejector chiller (ECh) was chosen for engine exhaust gas heat recovery to refrigeration as the simplest and cheapest, although it has a relatively low COP of about 0.
3 to 0.
35.
However, the ECh generally consists of heat exchanges which are mostly adapted to be placed in free spaces and can be mounted on the transverse and board side bulkheads in the ship engine room.
The values of sucked air temperature depression and engine fuel consumption reduction at varying temperatures and humidity of ambient air on the route were evaluated.
Related Results
Design and Optimization for Ship Structure Based on Knowledge-Based Engineering
Design and Optimization for Ship Structure Based on Knowledge-Based Engineering
It is always pursued that the excellent ship structure is rapidly designed and modified on the premise of ensuring security in ship engineering. In this paper, design and optimizat...
OPTIMALISASI SISTEM PENDINGIN ENGINE CATERPILLAR 3406E MILIK POLITEKNIK NEGERI JAKARTA
OPTIMALISASI SISTEM PENDINGIN ENGINE CATERPILLAR 3406E MILIK POLITEKNIK NEGERI JAKARTA
ABSTRACTAn engine can not be separated from the various systems in which is one of them is a cooling system, cooling system is the most important system in supporting the performan...
Quantitative Feedback Control of Air Path in Diesel-Dual-Fuel Engine
Quantitative Feedback Control of Air Path in Diesel-Dual-Fuel Engine
<div class="section abstract"><div class="htmlview paragraph">In this paper, we investigate a multivariable control of air path of a diesel-dual-fuel (DDF) engine. The ...
Connecting Ship Operation and Architecture in Ship Design Processes
Connecting Ship Operation and Architecture in Ship Design Processes
It is challenging to deal with the operation of ships by crew members in ship design processes. This is important because the efficiency and safety of ship operations ultimately de...
Relationship of milk intake and physical activity to abdominal obesity among adolescents
Relationship of milk intake and physical activity to abdominal obesity among adolescents
Summary
What is already known about this subject
Diet and physical activity (PA) are recognized as important factors to prevent abdominal obesity (AO).
Studies have found an invers...
The intake port of DI-engine type VIKYNO RV165 desinged using 3D-CAE software
The intake port of DI-engine type VIKYNO RV165 desinged using 3D-CAE software
The intake manifold profile in a marine diesel engine profoundly influences engine intake performance, which, in turn, significantly impacts the engine's power characteristics and ...
Design of a Passenger Ship Launch Using an Air Bag System
Design of a Passenger Ship Launch Using an Air Bag System
Ship launching is one of the stages of ship production before the ship is handed over to the owner, which marks the beginning of the ship's life. With the development of technology...
Pengaruh Penggunaan Jet Ranger dan Kuantitas Udara Masuk terhadap Daya Sepeda Motor 150cc
Pengaruh Penggunaan Jet Ranger dan Kuantitas Udara Masuk terhadap Daya Sepeda Motor 150cc
Motorcycle engine performance is highly dependent on the air intake system, which plays a crucial role in the combustion process. One common method for improving engine performance...

