Sadeq Abdellatif M, Ahmed Samer F, Sleiti Ahmad K
Department of Mechanical and Industrial Engineering, College of Engineering, Qatar University, P O Box 2713, Doha, Qatar.
Data Brief. 2021 Mar 23;36:106956. doi: 10.1016/j.dib.2021.106956. eCollection 2021 Jun.
A fan-stirred combustion vessel is used to study the premixed turbulent combustion of diesel, Gas to Liquids (GTL) and 50/50 diesel-GTL and to generate these datasets. A numerical simulation approach is implemented for modelling the premixed combustion of the three fuels under different thermodynamics and turbulence initial conditions, using Zimont Turbulent Flame Speed Closure (Zimont TFC) model. Different parameters are obtained from these simulation runs such as turbulent eddy viscosity (µ), turbulent kinetic energy (k), Damkohler number (Da), Reynolds number (Re) and turbulent flame speed (S). The raw, filtered and pre-processed data are imported from ANSYS Fluent and then listed on filtered tables for the ease of accessibility. These datasets can be then used to perform research in different related areas such as chemical kinetic mechanisms, ignition delay time, flame ignition mechanisms and flame extinction and diffusion. Also, they can be employed to further understand trends, patterns, and anomalies in data. In addition, they can be compared with other numerical models to establish a robust knowledge about the modelling of premixed turbulent combustion. For more information and discussion of the dataset creation, the reader is directed to the full-length article, "Abdellatif M. Sadeq, Samer F. Ahmed, Ahmad K. Sleiti, Transient 3D simulations of turbulent premixed flames of gas-to-liquid (GTL) fuel in a fan-stirred combustion vessel, Fuel, Volume 291, 2021, 120,184, ISSN 0016 2361, https://doi.org/10.1016/j.fuel.2021.120184" [1].
使用一个风扇搅拌燃烧容器来研究柴油、气制油(GTL)以及50/50柴油-GTL的预混湍流燃烧,并生成这些数据集。采用数值模拟方法,使用齐蒙特湍流火焰速度闭合(Zimont TFC)模型,对三种燃料在不同热力学和湍流初始条件下的预混燃烧进行建模。从这些模拟运行中获得了不同的参数,如湍流涡粘性(µ)、湍动能(k)、达姆科勒数(Da)、雷诺数(Re)和湍流火焰速度(S)。原始数据、滤波后的数据和预处理后的数据从ANSYS Fluent中导入,然后列在滤波表上以便于访问。这些数据集随后可用于在不同相关领域进行研究,如化学动力学机制、着火延迟时间、火焰着火机制以及火焰熄灭和扩散。此外,它们还可用于进一步了解数据中的趋势、模式和异常情况。此外,还可将它们与其他数值模型进行比较,以建立关于预混湍流燃烧建模的可靠知识。有关数据集创建的更多信息和讨论,请读者参考全文“阿卜杜勒拉蒂夫·M·萨德克、萨默·F·艾哈迈德、艾哈迈德·K·斯莱蒂,风扇搅拌燃烧容器中气制油(GTL)燃料湍流预混火焰的瞬态三维模拟,《燃料》,第291卷,2021年,120,184,ISSN 0016 2361,https://doi.org/10.1016/j.fuel.2021.120184”[1]。