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Experimental and Numerical Characterization of the Influence of a Smoldering Cellulosic Substrate on a Cigarette's Ignition Propensity Test

机译:阴燃纤维素基质对香烟着火倾向测试影响的实验和数值表征

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An experimental and numerical investigation was conducted to characterize the influence of the cellulosic substrate used to assess the ignition propensity (IP) of cigarettes. Such an IP test is currently prescribed by the ISO 12863 standard and its results typically show poor repeatability. It is believed that such a low reproducibility is mainly due to the variability of the cigarette itself but it is unclear as to what extent the substrate also influences the variability of the test results. Therefore, the objective of this investigation was to analyze the potential influence of the substrate by first characterizing the thermodynamic behavior experimentally and then constructing a numerical model that can quantify the relative influence of the distinct parameters. A suite of experimental methods that included TGA, DSC, infrared measurements and laser triangulation among others was used to measure the thermophysical properties of the substrate. These properties were then used to build a CFD model that simulated the smoldering combustion experienced by the substrate during the IP test. After validating the model against contactless temperature measurements, a parametric study consisting of 363 IP simulations was performed, which served to quantify the relative importance of 13 thermophysical parameters when varying in ranges of about 5%-50%. The results indicated that the heat capacity, pyrolysis activation energy, and air gap thickness are the most influencing aspects of the substrate because they influence the heat absorbed by the substrate about 7%, 26% and 33%, respectively. The latter parameter was found to significantly vary with each test and its influence was comparable to that of some major properties of the cigarette such as the cigarette's temperature and burning rate. It is therefore postulated that the variability of the substrate itself plays an important role on the poor repeatability of the test and it may comprise its reliability.
机译:进行了实验和数值研究,以表征用于评估香烟着火倾向(IP)的纤维素基质的影响。目前,ISO 12863标准已规定了此类IP测试,其结果通常显示出较差的可重复性。相信如此低的再现性主要是由于香烟本身的可变性,但是尚不清楚基质在多大程度上也影响测试结果的可变性。因此,本研究的目的是首先通过实验表征热力学行为,然后构建可以量化不同参数的相对影响的数值模型,以分析基材的潜在影响。使用包括TGA,DSC,红外测量和激光三角测量等在内的一系列实验方法来测量基材的热物理性质。然后将这些特性用于建立CFD模型,该模型可模拟IP测试中基材经历的阴燃。在针对非接触式温度测量对模型进行验证之后,进行了由363个IP模拟组成的参数研究,该研究可量化13个热物理参数在大约5%-50%范围内变化时的相对重要性。结果表明,热容量,热解活化能和气隙厚度是影响基材最大的方面,因为它们分别影响基材吸收的热量约7%,26%和33%。发现后一项参数在每次测试中均存在显着变化,并且其影响与香烟的一些主要特性(例如香烟的温度和燃烧速度)相当。因此,假定衬底本身的可变性对测试的可重复性差起重要作用,并且可能包括其可靠性。

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