Intelligent decision-making support system for the commissioning of a small hydroelectric power plant in the Republic of Tyva

T. V. Krivenko, V. A. Tremyasov, K. V. Kenden, V. E. Kozhemyakin
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Abstract

This paper investigates the cutting forces arising when using a single abrasive grain. Analytical studies were carried out using a model of a single abrasive grain in the form of a rod with a radiused apex acting on the workpiece material. The slip-line method (method of characteristics) was used to calculate the deformation intensity of a plastically edged workpiece material under the action of a single grain. Mathematical models were developed for the following factors: plastic deformation of the material, edging of the stagnated zone and its friction against the grain surface when moved upwards in the form of chippings, grain friction against the plastically deformed material, and the action of the dynamic component of plastic deformation. The significance of the dynamic component in the overall balance of forces related to plastic deformation was established by determining the ratio of dynamic stress on the break line and shear yield point. This dependence calculated for D16T and 30HGSA materials showed the feasibility of accounting for the dynamic component system based on a small hydropower station located in the Todzhinsky district of the Republic of Tyva. For an adequate assessment of the operational reliability of hydropower units, a logical and probabilistic method based on the kinetic theory of fault tree was used. The method allows the failures of the used equipment, as well as unplanned shutdowns of units due to a shortage of water resources in the Great Yenisey (low water, overdrying, and frozen frost), to be taken into account. The development of a generation system based on a small hydroelectric power plant for the settlements in the Todzhinsky district of the Republic of Tyva offers a load of up to 2,500 kW, which helps to reduce the cost of purchasing, delivering, and storing diesel fuel, while diesel generators can be used as backup power sources. 3 scenarios of structuring a small hydroelectric power plant were considered that involved various numbers and total capacity of hydrogenating units: 5x500 kW, 4x630 kW, and 3x800 kW. Therefore, by using the multi-criteria optimization method, the optimal structure of the generating system based on a small hydroelectric power plant having three hydroelectric units (each characterized by a capacity of 800 kW) was selected from the three proposed options, taking into account the reliability and uncertainty of the initial information.
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蒂瓦共和国某小型水力发电厂调试智能决策支持系统
本文研究了当使用单个磨粒时所产生的切削力。分析研究进行了使用一个单一的磨料颗粒的形式与一个放射状顶点作用于工件材料的模型。采用滑移线法(特征法)计算了单晶粒作用下塑性边缘工件材料的变形强度。建立了以下因素的数学模型:材料的塑性变形,以碎屑形式向上移动时停滞区的边缘及其与晶粒表面的摩擦,晶粒与塑性变形材料的摩擦以及塑性变形动力分量的作用。通过确定断裂线上的动应力与剪切屈服点的比值,确立了动态分量在塑性变形相关力的整体平衡中的重要性。对D16T和30HGSA材料计算的依赖关系表明,基于位于Tyva共和国Todzhinsky地区的小型水电站计算动态组件系统的可行性。为了充分评估水电机组的运行可靠性,采用了基于故障树动力学理论的逻辑概率方法。该方法可以考虑到使用设备的故障,以及由于大叶尼塞水资源短缺(低水位、过度干燥和冰冻)而导致的机组意外停机。在蒂瓦共和国Todzhinsky区的一个小型水力发电厂的基础上开发的发电系统提供了高达2500千瓦的负荷,这有助于降低购买、运输和储存柴油的成本,同时柴油发电机可以用作备用电源。考虑了3种不同加氢装置数量和总容量的小型水力发电厂结构方案:5x500kw、4x630 kW和3x800kw。因此,在考虑初始信息的可靠性和不确定性的情况下,采用多准则优化方法,从三个备选方案中选择具有三台水力发电机组(每台容量为800kw)的小型水电厂发电系统的最优结构。
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