Showing 21 - 32 results of 32 for search '"chemical kinetics"', query time: 0.05s Refine Results
  1. 21

    Organoporosity Evaluation of Shale: A Case Study of the Lower Silurian Longmaxi Shale in Southeast Chongqing, China by Fangwen Chen, Shuangfang Lu, Xue Ding

    Published 2014-01-01
    “…Using the material balance principle combined with chemical kinetics methods, an evaluation model of organoporosity for shale gas reservoirs was established. …”
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  2. 22

    Complex Reaction Kinetics in Chemistry: A Unified Picture Suggested by Mechanics in Physics by Elena Agliari, Adriano Barra, Giulio Landolfi, Sara Murciano, Sarah Perrone

    Published 2018-01-01
    “…Complex biochemical pathways can be reduced to chains of elementary reactions, which can be described in terms of chemical kinetics. Among the elementary reactions so far extensively investigated, we recall the Michaelis-Menten and the Hill positive-cooperative kinetics, which apply to molecular binding and are characterized by the absence and the presence, respectively, of cooperative interactions between binding sites. …”
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  3. 23
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    Stochastic Simulation of Soot Formation Evolution in Counterflow Diffusion Flames by Xiao Jiang, Kun Zhou, Ming Xiao, Ke Sun, Yu Wang

    Published 2018-01-01
    “…A typical simulation of soot formation and evolution contains two parts: gas chemical kinetics, which models the chemical reaction from hydrocarbon fuels to soot precursors, that is, polycyclic aromatic hydrocarbons or PAHs, and soot dynamics, which models the soot formation from PAHs and evolution due to gas-soot and soot-soot interactions. …”
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    Modeling flame acceleration in H2 turbulent combustion: Strategies to reduce computational cost by A. Dahmani, R.A. Otón-Martínez, F. Nicolás-Pérez, F.J.S. Velasco, O. de Francisco

    Published 2025-03-01
    “…The obtained results show that LES-TFM model with a detailed 12-reaction chemical kinetics can predict flame acceleration. Moreover, the use of a dynamic grid refinement with an initial coarser mesh with LES-TFM is found to overestimate the time lapse of the initial low-velocity stage of the sequence. …”
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  7. 27

    Physicochemical kinetics of rapid soil stabilization using calcium sulfoaluminate-based cements by Nicholas Benjamin Petersen, Ashish Bastola, Pavan Akula, John Rushing

    Published 2025-03-01
    “…Geochemical modeling is proposed to model the chemical kinetics and predict the formation of strength-enhancing products in the stabilized soil mixtures. …”
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  8. 28

    Enhancement of Aeroengine Combustion Chamber Air Cooling Holes Design for Emission Reduction and Pattern Factor Control by Masoud Hajivand

    Published 2024-12-01
    “…The simulation was implemented with a two-step chemical kinetics scheme for kerosene combustion with the P1 radiation model, which would give an accurate thermal radiation prediction. …”
    Article
  9. 29

    Anisotropic shock response in oriented omnidirectional TATB supercells based on reactive molecular dynamics simulations by Guan-chen Dong, Jia-lu Guan, Ling-hua Tan, Jing Lv, Xiao-na Huang, Guang-cheng Yang

    Published 2024-12-01
    “…However, the overall chemical kinetics response intensifies, as the angle between the shock direction and molecular layer decreases. …”
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    Quasi-Dimensional Modelling and Parametric Studies of a Heavy-Duty HCCI Engine by Sunil Kumar Pandey, Muralitharan N., Ravikrishna R. V.

    Published 2011-01-01
    “…This quasidimensional approach involves a zero-dimensional single-zone homogeneous charge compression ignition (HCCI) combustion model along with a one-dimensional treatment of the intake and exhaust systems. A skeletal chemical kinetic scheme for n-heptane was used in the simulations. …”
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  12. 32

    Numerical Simulation of Impingement Heat Transfer for a Laminar Premixed Bunsen Flame by Darya A. Slastnaya, Roman V. Tolstoguzov, Leonid M. Chikishev, Vladimir M. Dulin

    Published 2025-01-01
    “…All three tested chemical kinetic mechanisms (GRI-Mech 3.0, SanDiego, RMech1) provide reasonable predictions of the observed phenomenon, which explain previous experimental observations on the reduced heat transfer at the central axis of impinging flames. …”
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