JOURNAL OF LIGHT INDUSTRY

CN 41-1437/TS  ISSN 2096-1553

Volume 38 Issue 3
June 2023
Article Contents
TANG Wei, CHEN Kun, CHEN Jiaqi, et al. Research on efficient heat utilization of heated tobacco device based on heat flow analysis method[J]. Journal of Light Industry, 2023, 38(3): 119-126. doi: 10.12187/2023.03.015
Citation: TANG Wei, CHEN Kun, CHEN Jiaqi, et al. Research on efficient heat utilization of heated tobacco device based on heat flow analysis method[J]. Journal of Light Industry, 2023, 38(3): 119-126. doi: 10.12187/2023.03.015 shu

Research on efficient heat utilization of heated tobacco device based on heat flow analysis method

  • Received Date: 2022-06-14
    Accepted Date: 2022-06-29
  • The flow analysis method based on TRIZ theory identifies the effective flow and harmful flow in the heat transfer process of the heated tobacco device, and proposes an optimization scheme for reducing energy consumption of the heated tobacco device, such as the structure optimization of the containing tube, the simplification of the airway tube, and the adjustment of the temperature distribution of the heater, and the scientificalness and practicability of the method in the energy consumption control process of iRod was verified. The results showed that: under the same taste, iRod reduced energy consumption by 11.1%, and increased the usage of 2 heated tobacco; at the same time, the temperature on the surface of the iRod was reduced by more than 3.3 ℃, the sense of touch is improved obviously.
    1. [1]

      ADAM T,MITSCHKE S,STREIBEL T,et al.Quantitative puff-by-puff-resolved characterization of selected toxic compounds in cigarette mainstream smoke[J].Chemical Research in Toxicology,2006,19(4):511-520.

    2. [2]

      PRYOR W A,PRIER D G,CHURCH D F.Electron-spin resonance study of mainstream and sidestream cigarette smoke:Nature of the free radicals in gas-phase smoke and in cigarette tar[J].Environmental Health Perspectives,1983,47:345-355.

    3. [3]

      HEIDE J,ADAM T W,JACOBS E,et al.Puff-resolved analysis and selected quantification of chemicals in the gas phase of E-cigarettes,heat-not-burn devices,and conventional cigarettes using Single-Photon Ionization Time-of-Flight Mass Spectrometry (SPI-TOFMS):A comparative study[J].Nicotine and Tobacco Research,2021,23(12):2135-2144.

    4. [4]

      PRYOR W A,CHURCH D F,EVANS M D,et al.A comparison of the free radical chemistry of tobacco-burning cigarettes and cigarettes that only heat tobacco[J].Free Radical Biology & Medicine,1990,8(3):275-279.

    5. [5]

      DEBETHIZY J D,BORGERDING M F,DOOLITTLE D J,et al.Chemical and biological studies of a cigarette that heats rather than burns tobacco[J].The Journal of Clinical Pharmacology,1990,30(8):755-763.

    6. [6]

      TITZ B,BOUÉ S,PHILLIPS B,et al.Effects of cigarette smoke,cessation,and switching to two heat-not-burn tobacco products on lung lipid metabolism in C57BL/6 and Apoe -/- Mice:An integrative systems toxicology analysis[J].Toxicological Sciences,2016,149(2):441-457.

    7. [7]

      HOENG J,PEITSCH M C.Toxicological evaluation of electronic nicotine delivery products[M].Massachusetts:Academic Press,2021:23-40.

    8. [8]

      FARSALINOS K E,YANNOVITS N,SARRI T,et al.Nicotine delivery to the aerosol of a heat-not-burn tobacco product:Comparison with a tobacco cigarette and e-cigarettes[J].Nicotine and Tobacco Research,2018,20(8):1004-1009.

    9. [9]

      DAVIS B,TO V,TALBOT P.Comparison of cytotoxicity of IQOS aerosols to smoke from Marlboro Red and 3R4F reference cigarettes[J].Toxicology in Vitro,2019,61:104652.

    10. [10]

      周昆,杨继,杨柳,等.加热不燃烧卷烟气溶胶研究进展[J].中国烟草学报,2017,23(5):141-149.

    11. [11]

      龚淑果,刘巍,黄平,等.加热不燃烧卷烟烟气主要成分的逐口释放行为[J].烟草科技,2019,52(2):62-71.

    12. [12]

      司晓喜,张凤梅,朱瑞芝,等.6种香料在加热条件下的释放迁移及对气溶胶理化特性的影响[J].轻工学报, 2021,36(5):67-75.

    13. [13]

      司晓喜,崔华鹏,朱瑞芝,等.不同GL/PG质量比和添加总量对加热卷烟气溶胶逐口释放特性的影响[J].轻工学报,2022,37(2):78-86.

    14. [14]

      李朝建,饶先立,郑晓云,等.不同工艺制备的加热卷烟烟草薄片热失重行为研究[J].轻工学报,2022,37(1):55-61.

    15. [15]

      陈芝飞,陈泽少,罗灿选,等.加热卷烟气溶胶中6种酯类单体香料转移行为研究[J].轻工学报,2022,37(3):58-64.

    16. [16]

      EATON D,JAKAJ B,FORSTER M,et al.Assessment of tobacco heating product THP1.0.Part 2:Product design, operation and thermophysical characterisation[J].Regulatory Toxicology and Pharmacology,2018,93:4-13.

    17. [17]

      COZZANI V,BARONTINI F,MCGRATH T,et al.An experimental investigation into the operation of an electrically heated tobacco system[J].Thermochimica Acta,2020,684:178475.

    18. [18]

      崔华鹏,陈黎,樊美娟,等.电加热卷烟气溶胶物理特性的表征[J].轻工学报,2022,37(2):87-93
      ,101.

    19. [19]

      Philip Morris Products SA.Aerosol-generating article having an adjustable heating area:CN202080041533.8[P].2022-01-18.

    20. [20]

      孙剑韬,陈义坤,刘磊,等.加热不燃烧型雾化系统传热仿真分析[J].武汉大学学报(工学版),2021,(7):668-674.

    21. [21]

      LAVANCHY F,MALGAT A.Aerosol generating article including a heat-conducting element and a surface treatment[P].America:US10842190B2,2020-11-24.

    22. [22]

      赵新军,孔祥伟.TRIZ创新方法及应用案例分析[M].北京:化学工业出版社,2020.

    23. [23]

      赵敏,张武城,王冠殊.TRIZ进阶及实战:大道至简的发明方法[M].北京:机械工业出版社,2015.

    24. [24]

      杨世铭,陶文铨.传热学(第4版)[Heat Transfer] [M].北京:高等教育出版社,2006.

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