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Heat Transfer Research

Publicado 18 números por año

ISSN Imprimir: 1064-2285

ISSN En Línea: 2162-6561

The Impact Factor measures the average number of citations received in a particular year by papers published in the journal during the two preceding years. 2017 Journal Citation Reports (Clarivate Analytics, 2018) IF: 1.7 To calculate the five year Impact Factor, citations are counted in 2017 to the previous five years and divided by the source items published in the previous five years. 2017 Journal Citation Reports (Clarivate Analytics, 2018) 5-Year IF: 1.4 The Immediacy Index is the average number of times an article is cited in the year it is published. The journal Immediacy Index indicates how quickly articles in a journal are cited. Immediacy Index: 0.6 The Eigenfactor score, developed by Jevin West and Carl Bergstrom at the University of Washington, is a rating of the total importance of a scientific journal. Journals are rated according to the number of incoming citations, with citations from highly ranked journals weighted to make a larger contribution to the eigenfactor than those from poorly ranked journals. Eigenfactor: 0.00072 The Journal Citation Indicator (JCI) is a single measurement of the field-normalized citation impact of journals in the Web of Science Core Collection across disciplines. The key words here are that the metric is normalized and cross-disciplinary. JCI: 0.43 SJR: 0.318 SNIP: 0.568 CiteScore™:: 3.5 H-Index: 28

Indexed in

Analytical Method for Calculating Time Characteristics of Ignition of Hybrid Gas Suspensions by a Hot Body

Volumen 38, Edición 2, 2007, pp. 171-184
DOI: 10.1615/HeatTransRes.v38.i2.70
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SINOPSIS

Approximated analytical and numerical methods were used to investigate regularities of ignition of hybrid gas suspensions by a hot body. It was shown that ignition can occur in three different modes: kinetic, diffusion, and transition. A parametrical region for implementation of each of the possible ignition modes was determined. It was found that transition from the kinetic to diffusion mode occurs with changes in the heater temperature by only one characteristic interval and can be accompanied by a jumpwise decrease of both the ignition delay time and the amount of energy required for initiation of the ignition process. For the kinetic mode, the wave theory of ignition was used to obtain, for the first time, analytical expressions for computation of time characteristics of ignition. It was shown that the impact of addition of combustible gas on the ignition regularities was high for both large and very small values of the parameter Z, the analogue of the Semenov criterion. For the first time, an approximate formula was proposed to calculate time characteristics of ignition over the entire range of variation of the parameter Z. Numerical calculations showed that the error of determination of time characteristics of ignition using the approximate formula did not exceed 45%.

CITADO POR
  1. Rubtsov Nickolai M., Seplyarskii Boris S., Alymov Michail I., Theory of Ignition of Gas Suspensions, in Ignition and Wave Processes in Combustion of Solids, 2017. Crossref

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