• 제목/요약/키워드: Precombustion chamber

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폐식용유를 이용한 소형 디젤기관의 성능 (Performances of the Used Frying Oil on a Small Diesel Engine)

  • 김성태;정형길;김영복
    • Journal of Biosystems Engineering
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    • 제26권3호
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    • pp.209-220
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    • 2001
  • This study was carried out to investigate the usability of the used frying oil, which was extracted from soybean, as one of the alternative fuel of a small diesel engine. For the experiment, NO. 2 diesel oil [D], used frying oil [UF], and their volumetric blends were applied and analysis of the properties and compositions of the experimental fuels were conducted. A four cycle diesel engine with single cylinder, water cooling system, maximum output 8.1 ㎾/2,200 rpm was selected and a direct injection chamber and a precombustion chamber were attached alternately. The results obtained were as follows: 1. Engine power (BHP) were increased from 4.13~4.27㎾ to 9.08~9.15㎾ for diesel oil, from 4.05~4.19㎾ to 8.44~8.92㎾ for UF, and from 4.01~4.48㎾ to 8.69~9.16㎾ for blend fuel, as the engine speed increased from 1,000 rpm to 2,200 rpm. The BHP in case of the direct combustion chamber were fluctuated higher than those of the pre-combustion chamber. 2. With the engine speed increased, torque of the engine were increased from 39.50~40.80 N.m to 42.89 N.m, then decreased to 39.44~39.77 N.m for diesel oil, and increased from 38.73~40.04 N.m to 40.12~40.82 N.m then decreased as 36.53~38.76 N.m for UF. Torque of the blend fuels were increased from 38.75~41.76 N.m to 40.47~42.89 N.m then decreased to 37.73~39.78 N.m. There is no significant difference of torque between the type of combustion chambers. 3. The specific fuel consumption of the UF was increased about 20 percent depending on the engine speed variations. And in case of direct injection chamber, about 12 percent lower fuel consumption was observed than that of precombustion chamber. 4. NOx emission of the UF was higher than that of diesel oil at above 1,800rpm of the engine speed. In case of the direct injection chamber, NOx emission was revealed higher about 59 percent than that of the precombustion chamber, depending on the range of the engine speeds. 5. Smoke emission was decreased in case of UF compared with diesel oil on direct injection chamber. When using precombustion chamber smoke emission was a little higher than that of the direct injection chamber were showed at the engine speed range. 6. At all the engine speed range, exhaust gas temperatures were decreased 2~3$^{\circ}C$ for UF used engine compared with those of the diesel oil. The exhaust gas temperature of the direct injection chamber was higher than that of the precombustion chamber by 72$^{\circ}C$. 7. Unburnt materials remained in the cylinder in case of the pre-combustion chamber was smaller and softer than that of the direct combustion chamber. 8. The feasibility of the blend fuel B-1 and B-2 were verified as a direct combustion chamber was attached to the diesel engine, with respect to the power performance of the engine.

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예연소실(豫燃燒室)의 형상(形狀)이 농용(農用) 디이젤엔진의 성능(性能)에 미치는 영향(影響) (Effects of Form and Angle of Precombustion Chamber on Performance of Agricultural Diesel Engine)

  • 이욱;이승규;김성태
    • Journal of Biosystems Engineering
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    • 제8권1호
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    • pp.70-74
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    • 1983
  • This study was conducted to determine whether or not the form and angle of the precombustion chamber affected the performance of agricultural diesel engines. Twenty different types of precombustion chambers were designed and tested using a two way classification with four individual tests. The output power and specific fuel consumption ratio at full load were measured and analyzed. The results of the study were summarized as follows; 1. The diameter of main passageway giving the best power output and specific fuel consumption ratio at full load was between 5.8 and 6.1mm. The ratio of area of main passageway bore to that of piston head was from 0.4 to 0.44 percent at the highest engine power. 2. The angle of main passageway giving the best power output and specific fuel consumption ratio at full load was between 41 and 43 degrees. 3. The change of the diameter of main passageway affected the output of engine more significantly than the change of angle, however, on the specific fuel consumption ratio the angle of main passageway had more effect than the diameter.

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소형(小型) 디젤엔진의 예연소실(豫燃焼室) 형상(形狀)이 냉시동성(冷始動性)에 미치는 영향(影響)에 관(關)한 실험적(實驗的) 연구(硏究) (Effects of Precombustion Chamber Shape on the Start ability of Small Diesel Engine under the Cold Weather)

  • 문계송;김용환;이승규
    • Journal of Biosystems Engineering
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    • 제6권2호
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    • pp.9-19
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    • 1982
  • 소형(小型) 디젤엔진의 예연소실(豫燃燒室) 형상(形狀)이 저온시(低溫時)의 시동성(始動性)에 미치는 영향(影響)을 구명(究明)하기 위해 8종(種)의 예연소실(豫燃燒室)과 2종(種)의 실린더헤드를 제작(製作)하여 $2^7$ 요인실험법(要因實驗法)에 의해 1회(回) 조작시(操作時) 최저(最低) 시동가능(始動可能) 온도(溫度), 최대출력(最大出力), 전부하(全負荷)(4/4) 및 과부하(過負荷)(11/10)시(時)의 연료소비율(燃料消費率)을 측정(測定)하여 분석(分析)한 결과(結果)를 요약(要約)하연 다음과 같다. 가. 피스톤 상면(上面)에 대한 주분사구(主噴射口)의 상대각도(相對角度)가 $20^{\circ}$에서 $18^{\circ}$로 감소(減少)하면 최저(最低) 시동가능(始動可能) 온도(溫度)가 약(約) $2.4^{\circ}C$ 낮아졌으며 최대출력(最大出力)은 약(約) 0.3ps 증가(增加)되었다. 나. 실린더헤드 홈 각도(角度)가 $20^{\circ}$에서 $18^{\circ}$로 작아짐에 따라 최저(最低) 시동가능(始動可能) 온도(溫度)가 약(約) $3.3^{\circ}C$ 낮아졌으며, 최대출력(最大出力)은 약(約) 0.3ps 감소(減少)되었다. 다. 예연소실(豫燃燒室) 길이가 17.5mm에서 15.5mm로 짧아지면 최저(最低) 시동가능(始動可能) 온도(溫度)가 $2^{\circ}C$ 낮아졌으며 최대출력(最大出力)은 0.2ps정도(程度) 감소(減少)되었다. 라. 주분사구(主噴射口) 직경(直俓)이 4.8mm에서 4.5mm로 작아지면 최대출력(最大出力)은 0.2ps정도(程度) 증가(增加)했으나, 주분사구(主噴射口) 직경(直俓)만이 변화(變化)에 따른 시동성(始動性)의 차이(差異)는 인정(認定)되지 않았다. 마. 주분사구(主噴射口) 각도(角度)가 $47^{\circ}$이고 실린더헤드 홈 각도(角度)가 $18^{\circ}$일 경우(境遇) 시동가능(始動可能) 온도(溫度)가 가장 낮았으며, 주분사구(主噴射口) 직경(直俓)이 4.5mm이고 예연소실(豫燃燒室) 길이가 17.5mm일 경우(境遇) 최대출력(最大出力)도 가장 높았고, 전부하(全負荷) 및 과부하시(過負荷時)의 연료소비율(燃料消費率)도 가장 낮았다. 바. 실린더 헤드홈 각도(角度)와 주분사구(主噴射口)의 각도(角度)가 각각(各各) 시동성(始動性) 향상(向上)에 가장 큰 영향(影響)을 미쳤으며, 또한 주분사구(主噴射口) 직경(直俓)과 예연소실(豫燃燒室) 길이와의 교호작용(交互作用)이 최대출력(最大出力)에 가장 큰 영향(影響)을 미쳤으므로 이들 요인(要因)에 대한 처리수(處理數)를 늘려 시험(試驗)해 볼 필요성(必要性)이 있는 것으로 사료(思料)된다. 사. 본(本) 실험(實驗)에서 최적조건(最適條件)으로 나타난 시작(試作) 예연소실(豫燃燒室)은 기존(旣存) 예연소실(豫燃燒室)보다 약(約) $-6^{\circ}C$의 시동성(始動性) 향상(向上)을 나타냈다.

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1.6MW급 가스엔진의 개발 및 엔진성능평가 (Development and Performance Evaluation for 1.6MW Gas Engine)

  • 노기철;설동일;허경미;김세훈
    • Journal of Advanced Marine Engineering and Technology
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    • 제36권2호
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    • pp.230-237
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    • 2012
  • 최근 엔진 메이커들은 원유가 인상 및 대기환경 규제에 대응하기 위하여 디젤엔진의 대안으로서 가스엔진 개발에 대한 관심이 증가되고 있다. 이에 STX는 22HLX 디젤엔진을 기초로 한 1.6MW급 가스엔진을 개발하였다. 예연소실 방식의 개발된 가스엔진은 엔진속도가 1000rpm에서 제동평균유효압력이 21bar이고 질소산화물 배출량이 50ppm(공기 중 산소함유 15% 기준)의 우수한 성능을 가진다. 특히 열효율 45%의 우수한 연료 경제성을 가지며 이산화탄소 배출량은 디젤엔진의 약 75%수준으로 온실가스 저감에도 효과적이다.

Performance and Emissions Characteristics of a Diesel Engine with Some Bio-Oil Fuels

  • La, Woo-Jung;Ju, Eun-Sun;Kim, Byong-Hwa;Cho, Ki-Hyun;Kim, Jong-Chun
    • 한국농업기계학회:학술대회논문집
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    • 한국농업기계학회 1996년도 International Conference on Agricultural Machinery Engineering Proceedings
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    • pp.359-368
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    • 1996
  • The performance and exhaust emissions of a diesel engine using light oil, heated, rice-bran oil , heated rice-bran oil treated with ultrasonic wave, used frying oil, use frying oil treated with ultrasonic wave, used frying oil, used frying oil treated with ultrasonic wave, methyl esters of rice-bran oil and used frying oil have been compared. All the fuels performed satisfactorily in a precombustion chamber-type diesel engine without injection pump recalibration or any engine modification at the range of engine speed from 1600 to 2800 rpm at its full load during a sort period , with the rice-bran oil and rice-bran oil treated with ultrasonic wave requiring somewhat preheating when ambient temperature was below 15$^{\circ}C$. General performance and emission characteristics of light oil and bio-oils were comparable , with the bio-oil based fuels giving very low SO$_2$ and lower smoke readings.

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