Injection rate characteristics of biodesel fuels according to the blending ratio was described in this work. The injection rate measuring system based on the Bosch's method was utilized to measure and compare the fuel injection rate characteristics. Three different types of biodiesel which were derived from seed, unpolished-rice, and soybean were blended with the diesel fuel in 20% and 40% of volumetric ratio. The fuel properties, injection mass, and injection rate characteristics were obtained and compared in various injection conditions. It is expected that this observations provide important insights into the effect of fuel properties on the biodiesel fuel injection rate performance in a CI engine
Bosch법과 Zeuch법의 분사율 측정기를 직접설계, 제작하여 분사율 측정실험을 행한 결과 다음과 같은 결론을 얻었다. 1. Bosch법 분사율 측정기는 분사량의 참 값에 대한 측정오차가 약 ±1%로 정밀도와 신뢰성이 높았다. 2. Bosch법 분사율 측정기에서, 분사율은 연료펌프의 회전수와 부하가 증가할수록 높아지는 반면, 분사기간(ms)은 회전수가 증가할수록 짧아짐을 알 수 있었다. 3. 본 실험에서는, 동일조건하의 단발분사가 연발분사에 비해 전체적으로 분사율이 낮고 기관의 1 cycle당 분사량도 약 30% 정도 적었다. 4. Zeuch법 분사율 측정기로 구한 체적강성계수의 값은 배압이 증가할수록 증가함을 알 수 있었다. 5. Zeuch법 분사율 측정기는 Bosch법 분사율 측정기에 비해 정밀도가 낮았다.
Ifis recommended that the injection rate should be accurate and reliable in the input data of the performance simulation in diesel engine. Matsuoka Sin improved W. Bosch's injection ratio measurement system. Matsuoka Sin reduced length of the test pipe and set the orifice. However, it was not measured accurately to measure the injection ratio due to reflection wave. In the present thesis, the improved measurement system with combination of the conventional W. Bosch type injection ratio measurement system and Matsuoka Sin type corrected W. Bosch type was practically made. The location of orifice and throttle valve was modified and set one more back pressure valve in order to reduce the effect of reflection wave. The results according to injection condition of multi-hole nozzle are following: 1. Measurement error of injection ratio measurement system in this thesis was ± 1 %, therefore, its reliability was good. 2. The form of injetion ratio is changed from trapezoidal shape to triangle shape with increase of revolution per minute when injection amount is constant. 3. In the case of constant rpm, the initial injection ratio is almost constant regardless of the amount, meanwhile the injection period becomes longer with increase of the amount. 4. The injection pressure of nozzle isn't largely influenced with injection ratio in the case of constant injection amount and rpm, otherwise the initial injection amount is increased by 3-4% when the injection pressure is low. 5. The injection ratio isn't nearly influenced with back pressure.