Combustion Characteristics of N-Butanol/N-Heptane Blend Using Reduced Chemical Kinetic Mechanism

Author:

Zhang Defu1,Wang Fang1,Pei Yiqiang2,Yang Jiankun3,An Dayang1,Hao Hongbin1

Affiliation:

1. Maritime College, Tianjin University of Technology, Tianjin 300384, China

2. School of Mechanical Engineering, Tianjin University, Tianjin 300072, China

3. Cnooc Energy Development Equipment Technology Co., Ltd. Mechanical and Electrical Technical Service Center, Tianjin 300452, China

Abstract

The detailed mechanisms of n-heptane and n-butanol were reduced for the target condition of ignition delay time using the direct relationship diagram method based on error transfer, the direct relationship diagram method based on coupling error transfer and sensitivity analysis, and the total material sensitivity analysis method. The reduced n-heptane (132 species and 585 reactions) and n-butanol (82 species and 383 reactions) were used to verify the ignition delay time and concentrations of the major species, respectively. The results showed that the reduced mechanism has a good prediction ability for the ignition delay time. The predicted mole fraction results of the major species were in good agreement. These reduced mechanisms were combined to finally construct a reduced mechanism for the n-heptane/butanol fuel mixture, which included 166 species and 746 reactions. Finally, the reduced mechanism was used to simulate the HCCI combustion mode, and the results showed that the reduced mechanism can better predict the ignition and combustion timings of HCCI under different conditions and maintain the ignition and combustion characteristics of the detailed mechanism; this indicates that the mechanism model constructed in this study is reliable.

Funder

Tianjin University of Technology Postgraduate Education Teaching Re-search and Reform Project 2022

Tianjin University of Technology 2022 graduate Research In-novation Practice project

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous),Building and Construction

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