• 제목/요약/키워드: Diesel Particulate Filter

검색결과 167건 처리시간 0.038초

총괄 변수 모델을 이용한 DPF 재생 성능에 관한 연구 (A Study on the Regeneration Performance of DPF using Lumped Parameter Model)

  • 전문수
    • 융복합기술연구소 논문집
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    • 제1권1호
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    • pp.41-47
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    • 2011
  • With the world-wide demand on the emission minimization, the needs on the diesel aftertreatment devices with high efficiency are also increasing. In order to effectively develop or design a high-performance diesel particulate filter, a clear understanding on the deposition and regeneration mechanism is required. In the present study, a theory on the lumped parameter model for wall-flow type diesel particulate filters is described focusing on the deposition efficiency, pressure drop inside the filter. The fourth order explicit Runge-Kutta method is utilized for the mass flow rate computation. Engine operation modes with controlled and uncontrolled regeneration options are selected. The computational lumped parameter model is validated by comparing the computed results with the measured data.

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매연저감장치 손상에 기인한 차량화재 사고사례 분석 (Analysis on Vehicle Fires Caused by Damage of Diesel Particulate Filter (DPF))

  • 송재용;사승훈;남정우;조영진;김진표;박남규
    • 한국화재소방학회논문지
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    • 제26권4호
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    • pp.70-76
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    • 2012
  • 본 논문에서는 디젤 승용차량에서 매연저감장치 손상에 기인한 차량화재에 대하여 기술하였다. 디젤 차량에서는 배출가스에 포함되는 입자상 물질을 저감하기 위하여 매연저감장치를 배기계통에 설치하고 있다. 매연저감장치는 입자상 물질의 과다 포집, 재상과정에서의 오류 및 흡기계통 불량 등에 의해 재생과정에서 파손에 이르게 되며, 매연저감장치가 파손되는 경우, 고온의 배출가스가 분출되고, 차량 하부 배기계통의 주변 가연물을 통해 화재로 진전된다. 매연저감장치 손상에 의해 화재가 발생되는 경우, 배기계통 배관 및 머플러 부분에 규산염계 무기화합물이 부착되는 특징을 나타내며, 이 규산염계 무기화합물은 매연저감장치 내부 필터 재료인 세라믹 부분이 손상되는 과정에서 발생된다. 따라서 화재가 발생된 디젤 차량의 경우, 머플러 주변에서 규산염계 무기화합물이 식별되는 경우, 매연저감장치 손상에 기인한 화재로 추정할 수 있다.

Characteristics of Nano-Particles Exhausted from Diesel Passenger Vehicle with DPF

  • Park, Yong-Hee;Shin, Dae-Yewn
    • 한국환경보건학회지
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    • 제32권6호
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    • pp.533-538
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    • 2006
  • The nano-particles are known to influence the environmental protection and human health. The relationships between transient vehicle operation and nano-particle emissions are not well-known, especially for diesel passenger vehicles with DPF(Diesel Particulate Filter). In this study, two diesel passenger vehicles were measured on a chassis dynamometer test bench. The particulate matter (PM) emission of these vehicles was investigated by number and mass measurement. The mass of the total PM was evaluated using the standard gravimetric measurement method, and the total number concentrations were measured on a ECE15+EUDC driving cycle using Condensation Particle Counter (CPC). According to the investigation results, total number concentration was $1.14{\times}10^{11}$M and mass concentration was 0.71mg/km. About 99% of total number concentration was emitted during the $0{\sim}400s$ because of engine cold condition. In high temperature and high speed duration, the particulate matter was increased but particle concentration was emitted not yet except initial engine cold condition According to DPF performance deterioration, the particulate matter was emitted 2 times and particle concentration was emitted 32 times. Thus DPF performance deterioration affects particle concentration more than PM.

Overview of the Effect of Catalyst Formulation and Exhaust Gas Compositions on Soot Oxidation In DPF

  • Choi Byung Chul;FOSTER D.E.
    • Journal of Mechanical Science and Technology
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    • 제20권1호
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    • pp.1-12
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    • 2006
  • This work reviews the effects of catalyst formulation and exhaust gas composition on soot oxidation in CDPF (Catalytic Diesel Particulate Filter). DOC's (Diesel Oxidation Catalysts) have been loaded with Pt catalyst (Pt/$Al_{2}O_3$) for reduction of HC and CO. Recent CDPF's are coated with the Pt catalyst as well as additives like Mo, V, Ce, Co, Fe, La, Au, or Zr for the promotion of soot oxidation. Alkali (K, Na, Cs, Li) doping of metal catalyst tends to increase the activity of the catalysts in soot combustion. Effects of coexistence components are very important in the catalytic reaction of the soot. The soot oxidation rate of a few catalysts are improved by water vapor and NOx in the ambient. There are only a few reports available on the mechanism of the PM (particulate matter) oxidation on the catalysts. The mechanism of PM oxidation in the catalytic systems that meet new emission regulations of diesel engines has yet to be investigated. Future research will focus on catalysts that can not only oxidize PM at low temperature, but also reduce NOx, continuously self-cleaning diesel particulate filters, and selective catalysts for NOx reduction.

매연여과장치 재생을 위한 플라즈마 응용 버너 개발 (Development of Plasma Assisted Burner for Regeneration of Diesel Particulate Filter)

  • 차민석;이대훈;김관태;이재옥;송영훈;김석준
    • 한국연소학회지
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    • 제12권4호
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    • pp.8-13
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    • 2007
  • Plasma assisted combustion is an old subject for the combustion society, but recently, the subject is refocused partly because techniques for non-thermal plasmas are progressed significantly, and partly because there are lots of applications which need to be overcome by a new reaction technology. In the present study, we have developed plasma assisted burner (plasma burner), which can be used as a heating source in a diesel particulate filter system. The burner can burn 20-60 cc/min of diesel fuel with 50 lpm of fresh air in an exhaust pipe of 2.0 liter diesel engine. Using 20 cc/min of diesel fuel, an exhaust temperature for 2.0 liter diesel engine can be raised up to around $600^{\circ}C$ for a wide range of engine speed (idle-3,000 rpm). The characteristics of the plasma burner are reported, and the possible operating mechanism of it will be discussed based on the effects of an electric field and a plasma on flames.

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금속폼을 이용한 Partial DPF의 설계 및 전산유체해석 연구 (Study of Design & CFD Analysis for Partial DPF Utilizing Metal Foam)

  • 윤천석;조규백
    • 한국자동차공학회논문집
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    • 제17권1호
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    • pp.24-34
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    • 2009
  • DPF(Diesel Particulate Filter)s have been used to reduce the most of PM(particulate matters) from the exhaust emissions of diesel engine vehicles. Metal foam is one of promising materials for the DPFs due to its cost effectiveness, good thermal conductivity and high mechanical strength. It can be fabricated with various pore sizes and struct thickness and coated with catalytic wash-coats with low cost. In order to design metal foam filter and analyze the flow phenomena, pressure drop and filtration experiment are carried out. Partial DPF which has PM reduction efficiency of more than 50 % is designed in this paper. Also, CFD analysis are performed for different configurations of clean filters in terms of pressure drop, uniformity index, and velocity magnitude at face of filter. Filter thickness and the gap between front and rear filters are optimized and recommended for manufacturing purpose.

물 분사 및 배기가스 구동형 진공펌프를 이용한 매연여과장치에 대한 실험적 연구 (An Experimental Study on the Smoke Filtration System Using Water Injection and Vacuum Pump driven by Exhaust Gas)

  • 이한성;김경현;정석호;고대권
    • 동력기계공학회지
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    • 제17권3호
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    • pp.17-22
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    • 2013
  • Diesel particulate filter has been adopted in new vehicle with diesel engine. Since the flow of exhaust gas was clogged as particulate matters were deposited in the filter, it have bad effects on a fuel consumption and power. It was investigated that a particulate filtering system with vacuum pump in the exhaust gas line could be free from clogging in previous research. In this study, the effects of water injection and position of inlet port in filtering system on reducing in particulate matter were investigated. It was noticed that particulate matter were decreased remarkable by water injection and moving the position of inlet port.

포집량에 따른 p-DPF의 정화효율 및 BPT 특성에 관한 실험적 연구 (An Experimental Study on Filtration Efficiency and BPT Characteristics by PM Loading in Partial-diesel Particulate Filter)

  • 오광철;이경복;이춘범
    • 한국자동차공학회논문집
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    • 제20권1호
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    • pp.147-154
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    • 2012
  • The number of vehicles applied diesel engine are rapidly rising for fuel economy. Accompanying this trend, application of an after-treatment system is strictly required as a result of reinforced emission regulation. The Diesel Particulate Filter (DPF) system is considered as the most efficiency method to reduce particulate matter (PM) by car makers but also in retrofit market. In recently, various kinds of partial flow DPF are widely used for proper filtration performance and reducing of pressure drop but it is difficult to define the characteristics of these filters because the filtration mechanism is obscure according to the status of these systems. In this paper we investigated the characteristics of cell open type DPF according to the status of filter especially, PM loading. The PM loading mass in the p-DPF are predicted from increase of differential pressure of DPF and the trend of filtration efficiency so that we can measure filtration efficiency and Balance Point Temperature (BPT) of this p-DPF according to PM loading.

플라즈마를 이용한 매연여과장치 재생용 버너 개발 (Development of Plasma Assisted Burner for Regeneration of Diesel Particulate Filter)

  • 차민석;이대훈;김관태;이재옥;송영훈;김석준
    • 한국연소학회:학술대회논문집
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    • 한국연소학회 2007년도 제34회 KOSCO SYMPOSIUM 논문집
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    • pp.202-206
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    • 2007
  • Plasma assisted combustion is an old subject for the combustion society, but recently, the subject is refocused partly because techniques for non-thermal plasmas are progressed significantly, and partly because there are lots of applications which need to be overcome by a new reaction technology. In the present study, we have developed plasma assisted burner (plasma burner), which can be used as a heating source in a diesel particulate filter system. The burner can bum 20 - 60 cc/min of diesel fuel with 50 lpm of fresh air in an exhaust pipe of 2.0 liter diesel engine. Using 20 cc/min of diesel fuel, an exhaust temperature for 2.0 liter disel engine can be raised up to around $600^{\circ}C$ for the range of engine speeds is idle - 3,000 rpm. The characteristics of the plasma burner are reported, and the possible operating mechanism of it will be discussed based on the effects of an electric field and a plasma on flames.

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희석터널을 사용한 디젤엔진 미립자상 배출물 측정에 관한 연구 (An experimental study on measurement of diesel particulate emission using dilution tunnels)

  • 채재우;김희수;오신규
    • 오토저널
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    • 제9권1호
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    • pp.40-48
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    • 1987
  • A Mini-Dilution Tunnel is described as a scaled down comparision of a Standard Tunnel. The paper presents the result of experimental investigations on measuring the particulate emission of a diesel engine in a Mini and a Standard Dilution Tunnel. The result offers a contribution to understanding about the influence of several parameters including dilution ratios, mixture temperatures, mixture conditions, filter temperatures, and flow conditions. In the experiment either increasing the filter temperature and mixture temperature at a fixed dilution ratio or increasing the dilution ratio at a fixed filter temperature and mixture temperature resulted in a decrease in the total particulate mass. These changes in total particulate mass were attributed to the changes in the soluble organic fraction of the particulate sample. Also, mass differences between the Mini and the Standard Dilution Tunnel for the same engine conditions were within approximately 15% of each other.

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