분사율을 이용한 직접 분사식 다공 가솔린 인젝터의 분사특성 연구

This paper presents an experimental study on the GDI injector with Bosch method. The injection characteristics, such as the injection quantity, the injection rate, the maximum velocity of the nozzle exit and the injection delay were studied through the change of the injection pressure, the tube pres...

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Published in한국분무공학회지 Vol. 21; no. 1; pp. 20 - 28
Main Authors 박정현, Jeonghyun Park, 신달호, Dalho Shin, 박수한, Su Han Park
Format Journal Article
LanguageKorean
Published 한국분무공학회 31.03.2016
한국액체미립화학회
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ISSN1226-2277
2288-9051

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Abstract This paper presents an experimental study on the GDI injector with Bosch method. The injection characteristics, such as the injection quantity, the injection rate, the maximum velocity of the nozzle exit and the injection delay were studied through the change of the injection pressure, the tube pressure and energizing duration in injection rate measurement device using nheptane. The injection quantity is increased by increasing injection pressure, decreasing tube pressure or increasing energizing duration. As the difference of the injection quantity changed, the shape of injection rate was moved with a constant form. The maximum velocity of the nozzle exit showed a tendency to increase as the injection pressure is increased. However, tube pressure did not affect. Overall, it was confirmed that the closing delay is longer than the opening delay in all conditions. As the injection pressure increased, the result has a tendency to decrease the closing delay, it did not affect the opening delay. Reduction of the closing delay showed the reduction of the injection duration. the tube pressure and energizing duration did not affect the injection delay (opening delay, closing delay).
AbstractList This paper presents an experimental study on the GDI injector with Bosch method. The injection characteristics, such as the injection quantity, the injection rate, the maximum velocity of the nozzle exit and the injection delay were studied through the change of the injection pressure, the tube pressure and energizing duration in injection rate measurement device using nheptane. The injection quantity is increased by increasing injection pressure, decreasing tube pressure or increasing energizing duration. As the difference of the injection quantity changed, the shape of injection rate was moved with a constant form. The maximum velocity of the nozzle exit showed a tendency to increase as the injection pressure is increased. However, tube pressure did not affect. Overall, it was confirmed that the closing delay is longer than the opening delay in all conditions. As the injection pressure increased, the result has a tendency to decrease the closing delay, it did not affect the opening delay. Reduction of the closing delay showed the reduction of the injection duration. the tube pressure and energizing duration did not affect the injection delay (opening delay, closing delay). KCI Citation Count: 0
This paper presents an experimental study on the GDI injector with Bosch method. The injection characteristics, such as the injection quantity, the injection rate, the maximum velocity of the nozzle exit and the injection delay were studied through the change of the injection pressure, the tube pressure and energizing duration in injection rate measurement device using nheptane. The injection quantity is increased by increasing injection pressure, decreasing tube pressure or increasing energizing duration. As the difference of the injection quantity changed, the shape of injection rate was moved with a constant form. The maximum velocity of the nozzle exit showed a tendency to increase as the injection pressure is increased. However, tube pressure did not affect. Overall, it was confirmed that the closing delay is longer than the opening delay in all conditions. As the injection pressure increased, the result has a tendency to decrease the closing delay, it did not affect the opening delay. Reduction of the closing delay showed the reduction of the injection duration. the tube pressure and energizing duration did not affect the injection delay (opening delay, closing delay).
Author Su Han Park
박수한
Jeonghyun Park
신달호
박정현
Dalho Shin
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DocumentTitleAlternate 분사율을 이용한 직접 분사식 다공 가솔린 인젝터의 분사특성 연구
Study on the Injection Characteristics using Injection Rate in a Direct-injection Gasoline Injector with Multi-hole
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Snippet This paper presents an experimental study on the GDI injector with Bosch method. The injection characteristics, such as the injection quantity, the injection...
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SubjectTerms Gasoline Direct Injection
GDI
Injection delay
Injection quantity
Injection rate
n-heptane
가솔린 직접 분사
기계공학
노말 헵탄
분사 지연
분사량
분사율
Title 분사율을 이용한 직접 분사식 다공 가솔린 인젝터의 분사특성 연구
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Volume 21
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