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Dive into the research topics where Yachao Chang is active.

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Featured researches published by Yachao Chang.


Frontiers in Mechanical Engineering | 2015

Application of the Optimized Decoupling Methodology for the Construction of a Skeletal Primary Reference Fuel Mechanism Focusing on Engine-Relevant Conditions

Yachao Chang; Ming Jia; Yaopeng Li; Maozhao Xie

For the multi-dimensional simulation of the engines with advanced compression-ignition combustion strategies, a practical and robust chemical kinetic mechanism is highly demanded. Decoupling methodology is effective for the construction of skeletal mechanisms for long-chain alkanes. To improve the performance of the decoupling methodology, further improvements are introduced based on recent theoretical and experimental works. The improvements include: (1) updating the H2/O2 sub-mechanism; (2) refining the rate constants in the HCO/CH3/CH2O sub-mechanism; (3) building a new reduced C2 sub-mechanism; and (4) improving the large-molecule sub-mechanism. With the improved decoupling methodology, a skeletal primary reference fuel (PRF) mechanism is developed. The mechanism is validated against the experimental data in shock tubes, jet-stirred reactors, premixed and counterflow flames for various PRF fuels covering the temperature range of 500–1450 K, the pressure range of 1–55 atm, and the equivalence ratio range of 0.25¬–1.0. Finally, the skeletal mechanism is coupled with a multi-dimensional computational fluid dynamics model to simulate the combustion and emission characteristics of homogeneous charge compression ignition (HCCI) engines fueled with iso-octane and PRF. Overall, the agreements between the experiment and prediction are satisfactory.


Energy | 2014

Parametric study and optimization of a RCCI (reactivity controlled compression ignition) engine fueled with methanol and diesel

Yaopeng Li; Ming Jia; Yachao Chang; Yaodong Liu; Maozhao Xie; Tianyou Wang; Lei Zhou


Combustion and Flame | 2013

Development of a new skeletal mechanism for n-decane oxidation under engine-relevant conditions based on a decoupling methodology

Yachao Chang; Ming Jia; Yaodong Liu; Yaopeng Li; Maozhao Xie


Applied Energy | 2016

Thermodynamic energy and exergy analysis of three different engine combustion regimes

Yaopeng Li; Ming Jia; Yachao Chang; Sage L. Kokjohn; Rolf D. Reitz


Combustion and Flame | 2015

Development of a skeletal mechanism for diesel surrogate fuel by using a decoupling methodology

Yachao Chang; Ming Jia; Yaopeng Li; Yaodong Liu; Maozhao Xie; Hu Wang; Rolf D. Reitz


Proceedings of the Combustion Institute | 2015

Development of a skeletal oxidation mechanism for biodiesel surrogate

Yachao Chang; Ming Jia; Yaopeng Li; Yanzhi Zhang; Maozhao Xie; Hu Wang; Rolf D. Reitz


Energy & Fuels | 2013

Application of a Decoupling Methodology for Development of Skeletal Oxidation Mechanisms for Heavy n-Alkanes from n-Octane to n-Hexadecane

Yachao Chang; Ming Jia; Yaodong Liu; Yaopeng Li; Maozhao Xie; Hongchao Yin


Energy | 2016

Towards a comprehensive understanding of the influence of fuel properties on the combustion characteristics of a RCCI (reactivity controlled compression ignition) engine

Yaopeng Li; Ming Jia; Yachao Chang; Maozhao Xie; Rolf D. Reitz


Energy Conversion and Management | 2015

Evaluation of the necessity of exhaust gas recirculation employment for a methanol/diesel reactivity controlled compression ignition engine operated at medium loads

Yaopeng Li; Ming Jia; Yachao Chang; Weiwei Fan; Maozhao Xie; Tianyou Wang


Energy Conversion and Management | 2016

Construction of a skeletal mechanism for butanol isomers based on the decoupling methodology

Yachao Chang; Ming Jia; Junhua Xiao; Yaopeng Li; Weiwei Fan; Maozhao Xie

Collaboration


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Ming Jia

Dalian University of Technology

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Yaopeng Li

Dalian University of Technology

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Maozhao Xie

Dalian University of Technology

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Guangfu Xu

Dalian University of Technology

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Weiwei Fan

Dalian University of Technology

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Rolf D. Reitz

University of Wisconsin-Madison

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Yaodong Liu

Dalian University of Technology

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Zhen Xu

Dalian University of Technology

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Bo Niu

Dalian University of Technology

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