Simulation and Experiment for Oxygen-enriched Combustion Engine Using Liquid Oxygen to Solidify CO2

被引:0
|
作者
LIU Yongfeng [1 ]
JIA Xiaoshe [2 ]
PEI Pucheng [3 ]
LU Yong [3 ]
YI Li [4 ]
SHI Yan [1 ]
机构
[1] Beijing Research Centre of Sustainable Energy and Building,Beijing University of Civil Engineering and Architecture
[2] Beijing Research Centre of Sustainable Energy and Building, Beijing University of Civil Engineering and Architecture
[3] State Key Laboratory of Automotive Safety and Energy,Tsinghua University
[4] New Technologies and Materials Department,BAIC MOTOR Corporation,Ltd.Beijing Automotive Technology Center
基金
中国国家自然科学基金;
关键词
internal combustion Rankle cycle engine; CO2 emission reduction; carbon-sequestration with liquid oxygen; KIVA-3V program; oxygen-enriched combustion; numerical simulation; experiments;
D O I
暂无
中图分类号
TK401 [理论];
学科分类号
080703 ;
摘要
For capturing and recycling of CO;in the internal combustion engine, Rankle cycle engine can reduce the exhaust pollutants effectively under the condition of ensuring the engine thermal efficiency by using the techniques of spraying water in the cylinder and optimizing the ignition advance angle. However, due to the water spray nozzle need to be installed on the cylinder, which increases the cylinder head design difficulty and makes the combustion conditions become more complicated. In this paper, a new method is presented to carry out the closing inlet and exhaust system for internal combustion engines. The proposed new method uses liquid oxygen to solidify part of cooled CO;from exhaust system into dry ice and the liquid oxygen turns into gas oxygen which is sent to inlet system. The other part of CO;is sent to inlet system and mixed with oxygen, which can reduce the oxygen-enriched combustion detonation tendency and make combustion stable. Computing grid of the IP52 FMI single-cylinder four-stroke gasoline-engine is established according to the actual shape of the combustion chamber using KIVA-3V program. The effects of exhaust gas recirculation(EGR) rate are analyzed on the temperatures, the pressures and the instantaneous heat release rates when the EGR rate is more than 8%. The possibility of enclosing intake and exhaust system for engine is verified. The carbon dioxide trapping device is designed and the IP52 FMI engine is transformed and the CO;capture experiment is carried out. The experimental results show that when the EGR rate is 36% for the optimum EGR rate. When the liquid oxygen of 35.80–437.40 g is imported into the device and last 1–20 min, respectively, 21.50–701.30 g dry ice is obtained. This research proposes a new design method which can capture CO;for vehicular internal combustion engine.
引用
收藏
页码:188 / 194
页数:7
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