钻孔喷射系统工作过程数学模型的改进

Ye. I. Kryzhanivskyi, D. Panevnyk
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摘要

本文介绍了在生产井钻井过程中进行抽吸和注吸式冲底的喷射泵液压系统的方程的推导过程。分析了抽吸式和注吸式钻孔喷射系统中流体分布的性质。考虑到分支液压系统计算的特殊性,进行了分析。在研究底部循环回路中水流的运动时,作者考虑了节点流量与系统平行部分水力损失的平衡方程。所建立的数学模型是基于对喷射泵特征段的动水压力变化的研究。混合流、注入流和操作流的压力比表示为喷射系统的无因次相对压力。无量纲相对压力对相对流量的依赖关系决定了射流泵液压系统的特性。射流泵的相对流量或注入比定义为注入流量与功流量之比。在分析已建立的数学模型的同时,明确了喷射泵的设计参数与运行参数之间的关系。这些参数确保其以最高效率运行。在研究了射流泵喷嘴直径与钻头冲洗系统的相关性影响的基础上,确定了在能量性能方面最优的参数。本文提供了用图形确定抽油机工作点的实例。这一决定是基于射流泵及其工作的液压系统的特性方程的同时解。改进后的技术可以预测喷射系统的模态参数,并确定喷射泵流动部分的尺寸。它们为其工作流程提供最大的能源性能。
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The Improvement of the Mathematical Model of the Work Process of Borehole Ejection Systems
The article presents the sequence of deriving the equations which characterize the hydraulic system of jet pumps that carry out suction and injection-suction bottom flushing while drilling the production wells. The nature of flow distribution in the borehole ejection systems of the suction and injection-suction types is analyzed. The analysis is carried out taking into consideration the peculiarities of the calculation of branched hydraulic systems. While studying the movement of the flows in the bottom circulation circuits, the authors take into account the equation of the balance of the flow-rate at nodal points and hydraulic losses in parallel parts of the system. The developed mathematical models are based on the study of the changes in hydrodynamic pressures which occur in characteristic sections of a jet pump. The pressure ratio of mixed, injected and operating flows is presented as non-dimensional relative pressure of the ejection system. The dependence of non-dimensional relative pressure on the relative flow rate determines the characteristic of the hydraulic system of a jet pump. The relative flow rate or injection ratio of a jet pump is defined as the ratio of flow rate to injected and work flow. While analyzing the developed mathematical models, the authors specify the relation between the design and operating parameters of a jet pump. These parameters ensure its operation with maximum efficiency. Based on the study of the influence of the correlation between the diameters of the jet pump nozzles and the flushing system of the bit, the authors specify parameters which are optimal in terms of energy performance. The article provides the example of graphical determination of the operating point of a pumping unit. This determination is based on a simultaneous solution of the equations of the characteristics of the jet pump and the hydraulic system in which it operates. The improved techniques allow to predict the mode parameters of ejection systems and to determine the size of flowing part of the jet pump. They provide maximum energy performance of its workflow.
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