Design and Thermal Network Modeling of BLDC Motor for Submersible Pump Application

A. Shukla, S. Payami
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引用次数: 3

Abstract

This paper presents the design and thermal analysis of surface-mounted brushless motor (SMBLDC) for submersible pump applications. SMBLDC motor is used due to its high efficiency and low torque to weight ratio in comparison to conventional motors. For a submersible pump application, bore well size and motor diameter are the main constraints. Following the MNRE, GOI guidelines concerned with submersible pumps, all the machine parameters are numerically evaluated, and then its 2D FEA analysis is carried out in the ANSYS/Maxwell environment. The designed motor has obtained good flux concentration and low cogging torque. Then the thermal analysis is performed to examine the temperature rise in different parts of the motor. Thermal network modeling of the motor is proposed to carry out the steady-state and transient thermal analysis, which is performed in Motor-CAD software. Thermal runaway conditions are observed in the steady-state analysis with a severe increase in the temperature of windings and magnets. As submersible pumps are subjected to steady-state operations, a cooling arrangement is also proposed to keep the temperature rise within the acceptable range avoiding insulation failure or magnet losing its properties.
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潜水泵用无刷直流电机设计及热网络建模
本文介绍了潜水泵用表面贴装无刷电机(SMBLDC)的设计和热分析。与传统电机相比,SMBLDC电机的使用效率高,转矩重量比低。对于潜水泵应用,井眼尺寸和马达直径是主要的限制因素。根据潜水泵相关的MNRE、GOI准则,对整机参数进行数值计算,并在ANSYS/Maxwell环境下对其进行二维有限元分析。所设计的电机具有良好的磁链集中和较小的齿槽转矩。然后进行热分析,检查电机不同部位的温升。提出了电机的热网络建模,以进行稳态和瞬态热分析,并在motor - cad软件中进行。在稳态分析中观察到绕组和磁体温度急剧升高时的热失控情况。当潜水泵处于稳态运行时,还提出了一种冷却装置,以使温升保持在可接受的范围内,避免绝缘失效或磁铁失去其性能。
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