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DME를 연료로 하는 압축 착화 엔진용 고압연료 펌프의 성능 비교 연구

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Abstract
In this study, the performance of high-pressure fuel pumps was compared to find a high-pressure pump suitable for dimethyl ether (DME) fuel, and to establish a database of basic data on flow rates. The use of DME in compression ignition engines can reduce pollutant emissions. The cetane value of DME is higher than that of diesel fuel. The physical properties of DME are similar to liquefied gasoline gas (LPG), and when pressurized at a pressure of 6 bar or more, it changes from gas to liquid. Two types of high pressure pumps used in this study were independent injection type pump and a wobble plate type pump. Two high-pressure pumps with different injection types were compared. By measuring and comparing the performance changes of the two high-pressure pumps, a pump suitable for DME was selected and performance improvement measures were proposed. The changed experimental conditions to measure the performance change of the high pressure pump were increased in the units of 100 to 1,000 rpm and 100 rpm, and the experiment was performed at common rail pressures 300 and 400 bar. it was confirmed that the DME inside the fuel supply system remained in a liquid state through temperature sensors, pressure sensors, and pressure gauges. As a result of the experiment, it was confirmed that the flow rate discharged from the high-pressure fuel pump increased as the motor rotational speed increased, and the flow rate of the high-pressure fuel pump.
Author(s)
A Comparative Study on the Performance of High Pressure Fuel Pumps for Compression Ignition Engines Fueled by DME
Issued Date
2023
정재희
조원준
임옥택
Type
Article
Keyword
DME디메틸 에테르Independent injection type pump독립식 분사 펌프Wobble plate type pump사판식 펌프Flow rate유량Volumetric efficiency체적 효율
DOI
10.7316/KHNES.2023.34.1.59
URI
https://oak.ulsan.ac.kr/handle/2021.oak/15807
Publisher
한국수소및신에너지학회논문집
Language
한국어
ISSN
1738-7264
Citation Volume
34
Citation Number
1
Citation Start Page
59
Citation End Page
68
Appears in Collections:
Engineering > Mechanical and Automotive Engineering
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