首页> 外文期刊>Journal of Energy Resources Technology >Combustion Simulation of Propane/Oxygen (With Nitrogen/Argon) Mixtures Using Rate- Controlled Constrained- Equilibrium
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Combustion Simulation of Propane/Oxygen (With Nitrogen/Argon) Mixtures Using Rate- Controlled Constrained- Equilibrium

机译:丙烷/氧气(含氮/氩气)混合物燃烧的速率控制约束平衡模拟

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摘要

The rate-controlled constrained-equilibrium (RCCE), a model order reduction method, has been further developed to simulate the combustion of propane/oxygen mixture diluted with nitrogen or argon. The RCCE method assumes that the nonequilibrium states of a system can be described by a sequence of constrained-equilibrium states subject to a small number of constraints. The developed new RCCE approach is applied to the oxidation of propane in a constant volume, constant internal energy system over a wide range of initial temperatures and pressures. The USC-Mech II (109 species and 781 reactions, without nitrogen chemistry) is chosen as chemical kinetic mechanism for propane oxidation for both detailed kinetic model (DKM) and RCCE method. The derivation for constraints of propane/oxygen mixture starts from the eight universal constraints for carbon-fuel oxidation. The universal constraints are the elements (C, H, O), number of moles, free valence, free oxygen, fuel, and fuel radicals. The full set of constraints contains eight universal constraints and seven additional constraints. The results of RCCE method are compared with the results of DKM to verify the effectiveness of constraints and the efficiency of RCCE. The RCCE results show good agreement with DKM results under different initial temperature and pressures, and RCCE also reduces at least 60% CPU time. Further validation is made by comparing the experimental data; RCCE shows good agreement with shock tube experimental data.
机译:速率控制约束平衡(RCCE)是一种模型阶数减少方法,已被进一步开发以模拟用氮气或氩气稀释的丙烷/氧气混合物的燃烧。 RCCE方法假定系统的非平衡状态可以通过受少量约束约束的一系列平衡状态来描述。新开发的RCCE方法可在各种初始温度和压力范围内,以恒定体积,恒定内部能量系统将丙烷氧化。对于详细的动力学模型(DKM)和RCCE方法,均选择USC-Mech II(109种和781个反应,无氮化学反应)作为丙烷氧化的化学动力学机理。丙烷/氧气混合物的约束条件的推导始于碳-燃料氧化的八个通用约束条件。通用约束是元素(C,H,O),摩尔数,自由价,游离氧,燃料和燃料自由基。全套约束包含八个通用约束和七个附加约束。将RCCE方法的结果与DKM的结果进行比较,以验证约束的有效性和RCCE的效率。在不同的初始温度和压力下,RCCE结果与DKM结果具有很好的一致性,并且RCCE还减少了至少60%的CPU时间。通过比较实验数据进行进一步验证; RCCE与减震管实验数据显示出良好的一致性。

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