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A new method for predicting the upper flammability limits of fuel mixtures

机译:一种预测燃料混合物上部可燃性限制的新方法

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摘要

The upper flammability limit (UFL) of fuel mixtures is of great importance for safety considerations in engineering. This study proposed a quantitative structure-property relationship (QSPR) model to predict the UFL of fuel mixtures from only their molecular structures. Mixtures descriptors were calculated by mole weighted average of the molecular descriptors of pure chemicals. A set of optimal mixture descriptors that significantly contribute to the UFL of fuel mixtures were determined by performing the genetic algorithm along with multiple linear regression (GA-MLR). The resulted QSPR model is a multilinear equation with four variables. After performing the rigorous model validations using multiple strategies, the results demonstrated the satisfactory robustness, goodness of fit, and predictive capability of the developed model. Also, the applicability domain (AD) of the model was defined. The proposed model can be reasonably expected to reliably predict the UFL of fuel mixtures and provide some guidance for prioritizing design of safer fuel mixtures with desired properties.
机译:燃料混合物的上可燃性极限(UFL)对于工程安全考虑而言非常重要。该研究提出了定量结构 - 性质关系(QSPR)模型,以预测仅其分子结构的燃料混合物的UFL。混合物描述符由纯化学物质的分子描述符的摩尔加权平均值计算。通过执行遗传算法以及多元线性回归(GA-MLR),确定一组最佳混合描述符。产生的QSPR模型是具有四个变量的多线性方程。在使用多种策略执行严格的模型验证之后,结果表明了开发模型的令人满意的鲁棒性,适合性和预测能力。此外,定义了模型的适用性域(AD)。所提出的模型可以合理地预期可靠地预测燃料混合物的UFL,并提供一些指导,以优先考虑具有所需性质的更安全燃料混合物的设计。

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