Influence of Compression Rings on the Dynamic Characteristics and Sealing Capacity of the Combustion Chamber in Diesel Engines

Влияние компрессионных колец на динамические характеристики и герметизирующую способность камеры сгорания дизельных двигателей
Brando Hernández-Comas, Daniel Maestre-Cambronel, Carlos Pardo García, Marlen Del Socorro Fonseca-Vigoya, Jhon Antuny Pabón León
2021-03-02

blow-by gas leakagecompression ringsdiesel engine combustion chamberring gapring twist angle
Internal combustion engines are widely implemented in several applications; however, they still face significant challenges due to the sealing capacity of the compression rings. Gas leakage through the crankcase, also known as blow-by, directly impacts power losses, overall efficiency, and global emissions. Therefore, the present study investigates the influence of parameters such as the ring gap, ring masses, and twist angle of the compression rings on the sealing capacity of the combustion chamber. A mathematical model is proposed to account for geometric, dynamic, and operational characteristics in a single-cylinder diesel engine. The results indicated that the greatest gas losses to the crankcase occur during the compression and combustion stages as a consequence of extreme pressure conditions. Specifically, at least 0.5% of the gases locked in the combustion chamber are released on each cycle, while increasing the mass of the compression rings boosts the gas leakage due to higher inertial forces in the rings. In contrast, a positive twist angle of the compression rings reduced the combustion gases leakage by 7.33×10−5 g/cycle. Additionally, a combined reduction in the gap of both compression rings minimized the leakage flows by 37%. In conclusion, the proposed model served as a robust tool to evaluate different parameters on the sealing capacity of the combustion chamber that contribute to minimizing global emissions. Secondary piston motion and ring distortion represent significant opportunities in future studies.
1
A mathematical model integrates geometric, dynamic, and operational characteristics to evaluate compression-ring effects in a single-cylinder diesel engine.
2
A positive ring twist angle reduces combustion-gas leakage by 7.33×10−5 g/cycle, while reducing both ring gaps decreases leakage flows by 37%.
3
At least 0.5% of gases trapped in the combustion chamber leak into the crankcase during each engine cycle.
4
Increasing compression-ring mass increases gas leakage because higher inertial forces act on the rings.
5
The greatest crankcase gas losses occur during compression and combustion because of extreme cylinder pressures.

Compression-ring sealing system of the combustion chamber in a single-cylinder diesel engine

Influence of ring gap, ring mass, and twist angle on dynamic behavior, gas leakage through the crankcase, and combustion-chamber sealing capacity

Publication Details
Publication Date
2021-03-02
Journal
Publisher
ISSN
Cited by
19
Access Type
Author Information
Authors
Brando Hernández-Comas
Daniel Maestre-Cambronel
Carlos Pardo García
Marlen Del Socorro Fonseca-Vigoya
Jhon Antuny Pabón León
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%