Comparative Study of Electric Machines for Stirling Generator Application

V. Zogbochi, P. Chetangny, J. Aredjodoun, D. Chamagne, G. Barbier, S. Houndedako, A. Vianou
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Abstract

The choice of a machine for an application and a given specification remains a complex problem. This will involve, for example, bringing together criteria such as: performance, space saving, economical, reliable, little acoustic noise and others. The best machine selection to fulfill all constraints is an important step for the project to be realized. This work focus on Stirling Engine based Generator and study all types of rotating machines that can be employed for maximum electric power production. Analytical electromagnetic models where developed for all types of rotating machines that satisfied minimum requirement for the project by solving Maxwell equations. The purpose is to develop the design model and combine electromagnetic and thermal study of the machines. Finite Element Method is used to compare the performances of the generators for the best choice. Results show that for applications not requiring bigger output power, the major criteria for the selection is the optimal magnetic induction created by the inducer in the stationary part of the machine. For application such as Stirling generators, permanent magnet (PM) machine satisfy many comparison criteria such as maximum power at low speed, torque density, high efficiency. Beyond exposing a selection method for a project, this work lay down a step-by-step method for engineers and scientists for the crucial stage of design and conception work
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斯特林发电机应用的电机比较研究
为应用程序和给定规范选择机器仍然是一个复杂的问题。例如,这将涉及将诸如:性能、节省空间、经济、可靠、噪音小等标准结合起来。满足各种约束条件的最佳机器选择是项目实现的重要步骤。本工作以斯特林发动机为基础,研究了各种类型的旋转发电机,可以用于最大的电力生产。通过求解麦克斯韦方程,为满足项目最低要求的所有类型的旋转机器开发了解析电磁模型。目的是建立设计模型,并将机械的电磁和热学研究结合起来。采用有限元法对发电机的性能进行比较,得出最佳选择。结果表明,对于不需要更大输出功率的应用,选择的主要标准是电感器在机器固定部分产生的最佳磁感应。对于斯特林发电机等应用,永磁(PM)电机满足许多比较标准,如低速下的最大功率,转矩密度,高效率。除了展示项目的选择方法之外,这本书还为工程师和科学家在设计和概念工作的关键阶段奠定了一步一步的方法
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