Design of Combustion Dynamics Platform
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    Abstract:

    The research on fuel plays an important role in engine development. Data is the basis of combustion model coupling, and the reaction mechanism is the key to combustion numerical simulation. This study designs a combustion dynamics platform including a combustion database and an online calculation system of combustion reaction mechanisms to address the shortcomings in the construction of combustion databases in China and satisfy the urgent demand for the construction of personalized combustion reaction mechanisms. The combustion database system establishes an efficient search process through data standardization and hierarchical management and forms a unique multi-type theoretical and experimental data retrieval system in China. High-quality data is absorbed into the platform through data collection and evaluation. The online calculation system of combustion reaction mechanisms establishes a one-stop calculation process of software input, file creation, calculation, and result analysis through the Web-based interactive molecular modeling. The construction and application of the combustion dynamics platform will reduce the dependence on foreign data platforms, promote the exchange and sharing of domestic combustion reaction data, significantly lower the threshold for the use of fuel reaction mechanism software, and further deepen the innovative research.

    Reference
    [1] Slotnick J, Khodadoust A, Alonso J, et al. CFD Vision 2030 study: A path to revolutionary computational aerosciences. NASA/CR-2014-218178, 2014. 3–14.
    [2] Chase Jr MW. NIST-JANAF thermochemical tables: Part 1, Al-Co. Journal of Physical and Chemical Reference Data, 1998, 9: 1–59.
    [3] Ranzi E, Faravelli T, Gaffuri P, et al. A wide-range modeling study of ISO-octane oxidation. Combustion and Flame, 1997, 108(1–2): 24–42.
    [4] Battin-Leclerc F, Blurock E, Bounaceur R, et al. Towards cleaner combustion engines through groundbreaking detailed chemical kinetic models. Chemical Society Reviews, 2011, 40(9): 4762–4782.
    [5] Gao CW, Allen JW, Green WH, et al. Reaction mechanism generator: Automatic construction of chemical kinetic mechanisms. Computer Physics Communications, 2016, 203: 212–225.
    [6] 甯红波, 李泽荣, 李象远. 燃烧反应动力学研究进展. 物理化学学报, 2016, 32(1): 131–153.
    [7] 孟祥双. 前后端分离式WEB应用开发研究. 电子元器件与信息技术, 2019, 3(6): 40–43.
    [8] 尤雨溪. Vue.js 官方文档. https://cn.vuejs.org/v2/guide/. (2016-10-01).
    [9] 朱海萍, 丁西, 刘链. Web前端中基于MVVM框架的技术应用研究. 科技资讯, 2020, 18(30): 8–10.
    [10] 叶锋. Python最新Web编程框架Flask研究. 电脑编程技巧与维护, 2015, (15): 27–28.
    [11] O'Boyle NM, Morley C, Hutchison GR. Pybel: A Python wrapper for the OpenBabel cheminformatics toolkit. Chemistry Central Journal, 2008, 2(1): 5. [doi: 10.1186/1752-153X-2-5
    [12] Rao KR, Nayak A, Ray IG, et al. Role recommender-RBAC: Optimizing user-role assignments in RBAC. Computer Communications, 2021, 166: 140–153.
    [13] Jones M, Bradley J, Sakimura N. JSON Web Token (JWT). https://jwt.io/. (2014-05-16).
    [14] Ravinder R. Virtualization vs. containerization to support PaaS. Computing Reviews, 2015, 56(7): 429–429.
    [15] Bienfait B, Ertl P. JSME: A free molecule editor in JavaScript. Journal of Cheminformatics, 2013, 5(1): 24. [doi: 10.1186/1758-2946-5-24
    [16] Zhang CH, Li B, Rao F, et al. A shock tube study of the autoignition characteristics of RP-3 jet fuel. Proceedings of the Combustion Institute, 2015, 35(3): 3151–3158.
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张宝花,任海生,王静波,徐江,李象远,金钟.燃烧动力学平台设计.计算机系统应用,2022,31(5):75-84

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History
  • Received:July 18,2021
  • Revised:August 18,2021
  • Online: April 11,2022
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