BASES OF THE METHOD OF PHYSICAL MODELING OF THE PROCESS OF CRUSHING OF MUNICIPAL SOLID WASTE

T. Khankelov, M. Irisbekova, K.J. Rustamov, D.K. Sabirova, Malokhat Abdukadirova, Otabek Ochildiev
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Abstract

A large number of studies are aimed at increasing the energy efficiency of grinding processes of various solid materials, while maintaining the values ​​of other important indicators, such as material consumption, productivity, etc. Based on this trend, a new method for physically modeling the process of grinding municipal solid waste (MSW) was proposed for the first time. Existing physical modeling techniques are designed for homogeneous and isotropic materials (for example, soil, crushed stone, snow, coal, etc.). The strength properties of solid waste vary widely due to the significant heterogeneity of their components. Consequently, when crushing solid waste, traditional crusher designs have low efficiency in terms of energy intensity, material intensity and product quality. The purpose of this work is to develop a new technique for physical modeling of the grinding process, based on the main principles of similarity theory and modeling, considering the properties of waste heterogeneity. As a result of the research, a block diagram of the physical modeling methodology for the interaction of the working bodies of impact crushing machines with solid waste was developed. A list of tasks for the modeling process and similarity criteria have been determined based on the development of rheological models of the “working body - municipal solid waste” system and the laws of mechanics that characterize the waste grinding process. Based on the developed similarity criteria, scale equations for the grinding process are substantiated and formulas are derived for determining the expected parameters of the original based on the parameters measured on the model. The developed methodology makes it possible to create a crusher design with improved energy efficiency indicators with the least material and labor costs.
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城市固体废物破碎过程物理模型方法的基础
大量研究旨在提高各种固体材料碾磨过程的能效,同时保持其他重要指标的数值,如材料消耗、生产率等。基于这一趋势,首次提出了一种对城市固体废物(MSW)碾磨过程进行物理建模的新方法。现有的物理建模技术是针对均质和各向同性材料(如土壤、碎石、雪、煤等)设计的。由于固体废弃物的成分具有显著的异质性,其强度特性差异很大。因此,在破碎固体废弃物时,传统的破碎机设计在能源强度、材料强度和产品质量方面效率较低。这项工作的目的是根据相似性理论和建模的主要原则,考虑到废物异质性的特性,开发一种新的碾磨过程物理建模技术。作为研究成果,开发出了反击式破碎机工作机构与固体废物相互作用的物理建模方法框图。根据 "工作机体-城市固体废弃物 "系统流变学模型的开发以及描述垃圾粉碎过程的力学定律,确定了建模过程的任务清单和相似性标准。根据所制定的相似性标准,对研磨过程的比例方程进行了论证,并推导出了根据模型测量参数确定原始参数预期值的公式。通过所开发的方法,可以设计出一种能效指标更高、材料和人工成本最低的破碎机。
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来源期刊
Journal of Applied Engineering Science
Journal of Applied Engineering Science Engineering-Engineering (all)
CiteScore
2.00
自引率
0.00%
发文量
122
审稿时长
12 weeks
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