The influence of auger wear on the parameters of the dehydration process of solid waste in the garbage truck

O. Bereziuk, V. Savulyak, V. Kharzhevskyi
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引用次数: 4

Abstract

The article is dedicated to the study of the influence of auger wear on the parameters of the dehydration process of municipal solid waste in the garbage truck. An improved mathematical model of the drive operation of dehydration of solid waste in the garbage truck is proposed, which takes into account the wear of the auger and allowed to numerically determine the dynamics of the drive during start-up. It was also established that increasing wear of the auger, the pressure of the working fluid at the inlet of the hydraulic motor rises, and the angular velocity and speed of the auger is significantly reduced. The research of this mathematical model was carried out using the numerical Runge-Kutta-Felberg method of the 4th order with a variable integration step. By means of the method of regression analysis, the power dependencies of the change of nominal values ​​of pressures at the inlet of the hydraulic motor, angular velocity and speed of rotation of the auger from the value of its wear are determined. The last-mentioned dependence defines the detuning from the optimal speed of the auger during its wear and is used to determine the energy consumption of dehydration of solid waste, taking into account the wear of the auger. It is established that the wear of the auger by 1000 mm leads to an increase in the energy consumption of dehydration of solid waste by 11.6%, and, therefore, also leads to an increase of the cost of the process of their dehydration in the garbage truck. It was also established the expediency of further research to determine the appropriate material of the auger and the ways to increase its wear resistance.
螺旋钻磨损对垃圾车上固体废物脱水过程参数的影响
本文致力于研究螺旋输送器磨损对垃圾车中城市固体废物脱水过程参数的影响。提出了一种改进的垃圾车固体废物脱水驱动操作数学模型,该模型考虑了螺旋输送器的磨损,并允许数值确定启动过程中驱动的动力学。还确定,随着螺旋输送器磨损的增加,液压马达入口处的工作流体压力升高,螺旋输送器的角速度和速度显著降低。该数学模型的研究是使用四阶数值Runge-Kutta-Felberg方法进行的,该方法具有可变积分步骤。通过回归分析的方法,研究了名义值变化的功率相关性​​根据螺旋输送器的磨损值确定螺旋输送器的角速度和旋转速度。最后提到的相关性定义了螺旋输送器磨损期间与最佳速度的失谐,并用于确定固体废物脱水的能耗,同时考虑螺旋输送器的磨损。已经确定,螺旋输送器磨损1000mm会导致固体废物脱水的能耗增加11.6%,因此,也会导致垃圾车中固体废物脱水过程的成本增加。确定合适的螺旋输送器材料和提高其耐磨性的方法,为进一步研究奠定了基础。
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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