用工业电力驱动提高矿井排水装置的能源效率

Vladyslav Baranovskyi, O. Chornyi, V. Busher, V. Kuznetsov, P. Hubskyi, O. Lelikova
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引用次数: 0

摘要

该出版物致力于确定减少矿山排水系统能耗的可能性,并利用数学模型确定节能的数值指标。纸张的新奇性。证实了研究矿井排水层能耗数学模型的最小要求结构,证明了主排水泵转速控制时最小能耗的存在性,证明了能耗和泵工作时间对转速和流量的回归依赖关系。研究方法。采用了物理、水力学、数学分析和计算数学的一般方法来解决这些问题。在MATLAB®/ Simulink环境下对数学模型方程进行数值求解并对得到的结果进行可视化,采用实验设计理论进行回归分析的方法。所得结果。矿井主排水泵送设备采用可调电驱动节能潜力的条件出现了。论证了矿井主排水抽油机能耗最小的存在性。在对矿井主排水泵站数学建模结果进行回归分析的基础上,建立了抽油机运行时间与能耗的回归依赖关系具有接近双曲面截面的形状。实用价值。工作结果的使用使得在不同的矿山中确定使用可调电驱动时的节能潜力成为可能,从而对在特定生产条件下使用可调电驱动的可行性做出经济合理的决定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improving the Energy Efficiency of a Mine Drainage Installation by Means of an Industrial Electric Drive
The publication is devoted to determining the possibilities of reducing the energy consumption of drainage systems of mines and determining the numerical indicators of energy saving using mathematical modeling. Novelty of paper. The minimum required structure of the mathematical model of the mine drainage horizon for the study of energy consumption is substantiated, the existence of the minimum energy consumption of the main drainage pump at speed control is proved, the appearance of regression dependences of energy consumption and pump operating time on speed and inflow. Research methods. General methods of physics, hydraulics, mathematical analysis and computational mathematics were used in solving the tasks. Numerical solution of mathematical model equations and visualization of the obtained results were performed in MATLAB® / Simulink environment, methods of experimental design theory for regression analysis. The results obtained. The conditions under which the potential for energy saving of the pumping equipment of the main drainage of mines when using an adjustable electric drive appears. The existence of the minimum energy consumption of the pumping unit of the main drainage of the mine has been proved. Based on the regression analysis of the results of mathematical modeling of the pumping station of the main drainage of the mine, it is established that the regression dependences of the pumping unit operation time and its energy consumption have a shape close to the hyperboloid section. Practical value. The use of the results of work makes it possible in different mines to determine the potential for energy savings when using an adjustable electric drive, to make an economically sound decision on the feasibility of using an adjustable electric drive in specific production conditions.
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