Javascript must be enabled to continue!
Experimental Study on Hydraulic Free Piston Diesel Engine
View through CrossRef
<div class="section abstract"><div class="htmlview paragraph">
In this paper the experiments of hydraulic free piston diesel engine is described. The experimental data were obtained from measurement instruments on the free piston diesel engine that has been developed by Beijing Institute of Technology [
<span class="xref">1</span>
].
</div><div class="htmlview paragraph">This article discusses the influences of compression pressure, injection timing, and combustion process to the free piston diesel engine principle. The compression process experiment shows that the piston velocity, the compression ratio can be controlled by adjusting the compression pressure. With the increasing of the compression pressure, there is a growing a compression ratio and piston velocity. The study on injection timing shows that the injection timing impacts the cylinder pressure peak value and the pressure peak arrival time. The combustion process is quite different from the crankshaft engine because of the unique piston movement characteristics of the hydraulic free piston engine.</div><div class="htmlview paragraph">The optimum ignition delay point of the hydraulic free piston diesel engine is 24mm before top dead center, the compression pressure is 18MPa. The analysis on the hydraulic free piston diesel engine experimental results showed the key impact factors of high frequency operation of the proposed diesel engine. It provides a basis for the next step to implement high frequency operation.</div></div>
SAE International
Title: Experimental Study on Hydraulic Free Piston Diesel Engine
Description:
<div class="section abstract"><div class="htmlview paragraph">
In this paper the experiments of hydraulic free piston diesel engine is described.
The experimental data were obtained from measurement instruments on the free piston diesel engine that has been developed by Beijing Institute of Technology [
<span class="xref">1</span>
].
</div><div class="htmlview paragraph">This article discusses the influences of compression pressure, injection timing, and combustion process to the free piston diesel engine principle.
The compression process experiment shows that the piston velocity, the compression ratio can be controlled by adjusting the compression pressure.
With the increasing of the compression pressure, there is a growing a compression ratio and piston velocity.
The study on injection timing shows that the injection timing impacts the cylinder pressure peak value and the pressure peak arrival time.
The combustion process is quite different from the crankshaft engine because of the unique piston movement characteristics of the hydraulic free piston engine.
</div><div class="htmlview paragraph">The optimum ignition delay point of the hydraulic free piston diesel engine is 24mm before top dead center, the compression pressure is 18MPa.
The analysis on the hydraulic free piston diesel engine experimental results showed the key impact factors of high frequency operation of the proposed diesel engine.
It provides a basis for the next step to implement high frequency operation.
</div></div>.
Related Results
Experimental and simulation study on aluminium alloy piston based on thermal barrier coating
Experimental and simulation study on aluminium alloy piston based on thermal barrier coating
AbstractThermal barrier coatings (TBCs) have low thermal conductivity, effectively reducing the temperature of the metal matrix and improving thermal performance, knock resistance,...
Maintaining Marine Diesel Emissions Using Performance Monitoring
Maintaining Marine Diesel Emissions Using Performance Monitoring
Ships are an integral part of modern commercial transport, leisure travel, and military system. A diesel engine was used for the first time for the propulsion of a ship sometime in...
VOLUMETRIC RIGIDITY OF HYDRAULIC SYSTEMS
VOLUMETRIC RIGIDITY OF HYDRAULIC SYSTEMS
A hydraulic drive is a set of interacting hydraulic devices that is designed to be ghosted by means of a working fluid under pressure. The main element in hydraulic drives most mac...
Performance and Emissions of a HD Diesel Engine Converted for Alternative Fuel Use
Performance and Emissions of a HD Diesel Engine Converted for Alternative Fuel Use
<div class="section abstract"><div class="htmlview paragraph">An experimental study was carried out in order to determine the effect on performance and pollutant emissi...
Effect of Texture on Energy Consumption for High Frequency Hydraulic Impact Piston Pair
Effect of Texture on Energy Consumption for High Frequency Hydraulic Impact Piston Pair
Abstract
Limited by the influence of the traditional clearance seal structure on the leakage and friction loss of the piston pair, the energy utilization ratio of the hydra...
Experimental and simulation study on heat transfer characteristics of aluminium alloy piston under transition conditions
Experimental and simulation study on heat transfer characteristics of aluminium alloy piston under transition conditions
AbstractIn order to explore the thermal load change of the diesel engine piston under transitional conditions, and the influence of the position of cooling gallery on the heat tran...
ANALISIS KUALITAS BATANG PISTON ORIGINAL DAN NON ORIGINAL PADA KENDARAAN RODA DUA 4 LANGKAH KAPASITAS 113 CC
ANALISIS KUALITAS BATANG PISTON ORIGINAL DAN NON ORIGINAL PADA KENDARAAN RODA DUA 4 LANGKAH KAPASITAS 113 CC
Quality Analysis of Original and Non-Original Piston Rods on Two-Wheel Vehicles 4 Stroke Capacity 113cc, piston rods are important spare parts on motorcycles, because their functio...
Evaluation of Liquefied Petroleum Gas as a Fuel Input in a Mechanical Injection Diesel Internal Combustion Engine
Evaluation of Liquefied Petroleum Gas as a Fuel Input in a Mechanical Injection Diesel Internal Combustion Engine
In this research, the performance of an internal combustion engine with an adapta-tion for liquefied petroleum gas (LPG) injection was analyzed. The automotive indus-try works on t...

