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发电机冷却的热力学分析与评价方法

Thermodynamic analysis and evaluation method for generator cooling

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【作者】 侯世春姜德胜李国兴

【Author】 HOU Shichun;JIANG Desheng;LI Guoxing;Power Research Institute of State Grid Heilongjiang Electric Power Co.,Ltd.;Management Training Center of State Grid Heilongjiang Electric Power Co.,Ltd.;

【机构】 国网黑龙江省电力有限公司电力科学研究院国网黑龙江省电力有限公司管理培训中心

【摘要】 为了提高大型发电机的冷却效果,保证发电机长期安全可靠运行,建立了发电机冷却过程的数学模型,将热力学基本定律应用于模型的分析中,得到冷却过程中由于不可逆因素而引起的熵产的计算方法。通过对采用不同的冷却介质时熵产的比较来评价冷却效果的好坏,为发电机选择了较为理想的冷却介质;同时,对熵产的来源及影响因素进行了分析研究。研究结果表明,采用气体冷却时,不可逆因素引起的熵产远小于液体。由流体粘性耗散引起的熵产可忽略不计。从热力学第二定律角度评价,氢气与空气的冷却效果大体相当。

【Abstract】 In order to improve the cooling effect of the large generator and ensure the long-term sale and reliable operation of the generator, the mathematical model of generator cooling process was established.The basic law of thermodynamics is applied to model analysis, the calculation method of entropy production is obtained by irreversible factors in the process of cooling. The cooling effect was evaluated by comparing the entropy production with different cooling medium, and the ideal cooling medium was selected for the generator. At the same time, the source and influence factors of entropy production were analyzed and studied. The results show that the entropy produced by irreversible factors is much less than that of liquid when the gas is cooled. The effect of heat transfer temperature difference on entropy production is very significant, and the small increase of temperature difference will increase the entropy production significantly. Entropy production caused by fluid viscous dissipation is negligible. From the second law of thermodynamics, the cooling effect of hydrogen and air is roughly equivalent.

【关键词】 发电机冷却评价热力学
【Key words】 generatorcoolingevaluationthermodynamics
  • 【文献出处】 宁夏电力 ,Ningxia Electric Power , 编辑部邮箱 ,2018年02期
  • 【分类号】TM31
  • 【被引频次】1
  • 【下载频次】86
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