Thermal modelling of a claw-pole car alternator: Steady-state computation and identification of free convection coefficients

O. Maloberti, A. Ospina, G. Friedrich, K. El Kadri Benkara, L. Charbonnier, A. Gimeno
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引用次数: 6

Abstract

Heating of machines is a key characteristic of their behaviour. Heat sources come mainly from energy losses during electromechanical conversions (electrical in copper, magnetic in iron, aerolic and mechanical in bearings). Temperatures changes can be described thanks to thermal conduction, convection and radiation equations. Thus it is necessary to build a thermal model adapted to the simulation and sizing of electrical generators. This paper proposes and describes a 3D nodal model with sixteen nodes, adapted to a claw pole, wire-wound and self air-cooled alternator. It permits the thermal characterization of the machine thanks to only four physical parameters, shown to be sufficient to deduce the model conductances. These properties are: the thermal exchange coefficient due to free convection at the external surface, free convection coefficients into the airgap and the cavity, the thermal equivalent conductivity within the bearings. They are shown to be non-linear and identified for steady-state working conditions and a non-rotating machine. The consistency and usefulness of both the model and identifications are checked thanks to numerical studies and measurements.
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爪极汽车交流发电机的热模拟:稳态计算与自由对流系数辨识
机器发热是它们行为的一个主要特征。热源主要来自机电转换过程中的能量损失(铜的电转换,铁的磁转换,轴承的气动和机械转换)。温度的变化可以用热传导、对流和辐射方程来描述。因此,有必要建立一个适合于发电机仿真和尺寸的热模型。本文提出并描述了一种适用于爪极线绕自风冷交流发电机的16个节点的三维节点模型。它允许机器的热特性,由于只有四个物理参数,被证明是足以推断模型电导。这些性质是:由于在外表面自由对流的热交换系数,进入气隙和腔体的自由对流系数,轴承内的热等效导电性。它们被证明是非线性的,并被识别为稳态工作条件和非旋转机器。通过数值研究和测量,验证了模型和识别的一致性和有效性。
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