Сurrent situation on determination of critical value of heat flow density

V. Nizhnyk, A. Borysova
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Abstract

The physical process of energy transfer in the form of a certain amount of heat from a body with a higher temperature to a body with a lower temperature until the onset of thermodynamic equilibrium is a continuous process and is present in many areas of human activity. Determining the surface heat flux density makes it possible to measure and control the thermal processes of almost any object made of different materials, as well as substances in order to assess their condition. Based on a theoretical review, the article analyzes the current state to determine the critical value of the surface heat flux density depending on environmental conditions. Based on statistics and arrays of fire cards, it was concluded that every fourth fire in Ukraine can spread to adjacent buildings and structures, process equipment and natural ecosystems by spreading thermal energy with subsequent ignition. The authors consider the concept of heat flux and the concept of heat flux density, as well as define the essence of the concept of critical surface heat flux density as characteristics of heat flux. Scientists conducted a detailed analysis of literature sources, regulations and other sources of information related to this topic. Based on the research, the authors analyzed and found that the value of the surface heat flux density significantly depends on environmental conditions, namely the introduction of finely divided water into the space where the heat process and wind exposure. The authors found that to assess the value of the critical surface heat flux density, it is advisable to use the sign of flame combustion of substances and materials for the criterion base. However, to date there is no statistical base of critical values of surface heat flux density for various substances and materials, in particular those that can be used in the decoration of buildings and technological installations. The article analyzes modern approaches to determining the parameters of heat flux, as well as identifies some differences in these approaches, which allowed to formulate the purpose and relevance of further research, and identifies the main tasks to be achieved to achieve this goal.
Сurrent热流密度临界值的确定情况
能量以一定热量的形式从温度较高的物体向温度较低的物体转移,直至达到热力学平衡的物理过程,是一个连续的过程,存在于人类活动的许多领域。确定表面热流密度可以测量和控制几乎任何由不同材料制成的物体的热过程,以及评估其状态的物质。在理论综述的基础上,分析了当前状态,确定了不同环境条件下的表面热流密度临界值。根据统计数据和火灾卡片阵列,得出的结论是,乌克兰四分之一的火灾可以通过随后点火传播热能而蔓延到邻近的建筑物和结构、工艺设备和自然生态系统。本文考虑了热流密度和热流密度的概念,并将临界表面热流密度概念的本质定义为热流的特征。科学家们对与该主题相关的文献来源、法规和其他信息来源进行了详细分析。在此基础上,作者分析发现,地表热流密度的值显著取决于环境条件,即在热过程和风暴露的空间中引入细碎水。作者发现,在评定临界表面热流密度值时,宜以物质和材料的火焰燃烧标志作为判据。但是,迄今为止,对于各种物质和材料,特别是那些可用于建筑物和技术装置装饰的物质和材料,还没有关于表面热流密度临界值的统计基础。本文分析了确定热通量参数的现代方法,并指出了这些方法之间的一些差异,从而确定了进一步研究的目的和相关性,并确定了为实现这一目标需要完成的主要任务。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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