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The Rate-Controlled Constrained-Equilibrium Combustion Modeling of n-Pentane/Oxygen/Diluent Mixtures

机译:正戊烷/氧/稀释剂混合物的速率控制约束平衡燃烧建模

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摘要

Rate-controlled constrained equilibrium (RCCE) is a reduction technique used to describe the time evolution of complex chemical reacting systems. This method is based on the assumption that a nonequilibrium system can reach its final equilibrium state by a series of RCCE states determined by maximizing entropy or minimizing relevant free energy. Those constraints are imposed by some small number of slow reactions. Much research has been done on this method and many RCCE models of C-1 - C-4 hydrocarbon fuel combustion have been established by the previous researchers. Those models show good performance compared with the result of detailed kinetic model (DKM). In this study, RCCE method is further developed to model normal pentane (n-C5H12) combustion with least number of constraints. The chemical mechanism for DKM contains 133 species and 922 reactions. Two sets of constraints were found during the study: (1) 16 constraints for the normal pentane and pure oxygen mixture and (2) 14 constraints for the mixture of normal pentane and oxygen with argon as diluent. Results of the first constraint set were compared with result of DKM and results of the second constraint set were compared with those of DKM and experimental data by calculating their ignition delay times. Comparisons showed that the first set of constraints had relatively good accuracy and the second set of constraints agreed very well with the experimental data.
机译:速率控制的受限平衡(RCCE)是用于描述复杂化学反应系统的时间演变的还原技术。该方法基于通过通过最大化熵或最小化相关的自由能而确定的一系列RCCE状态来达到其最终均衡状态的假设。这些限制由一些少量的缓慢反应施加。在这种方法上已经完成了许多研究,并且前面的研究人员已经建立了许多C-1-C-4碳氢化合物燃料燃料燃料燃料燃料燃烧模型。与详细动力学模型(DKM)相比,这些模型显示出良好的性能。在该研究中,RCCE方法进一步开发成模拟正常戊烷(N-C5H12)燃烧,其中限制最少。 DKM的化学机制含有133种和922个反应。在研究期间发现了两组约束:(1)26正常戊烷和纯氧混合物的约束和(2)14常戊烷和氧气与氩气的混合物为稀释剂的约束。将第一个约束集的结果与DKM的结果进行比较,并通过计算其点火延迟时间与DKM和实验数据的结果进行比较。比较表明,第一组约束具有相对良好的准确性,并且第二组约束与实验数据非常好。

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