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Artificial intelligent models for thermodynamic properties of R152a and R134a refrigerants in automobile air conditioning systems

机译:汽车空调系统中R152a和R134a制冷剂热力学特性的人工智能模型

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With the increase in environmental awareness, the quest for alternative refrigerants for automobile air conditioning systemsis a necessity for the protection of the ozone layer and the prevention of global warming. Therefore, it is important that the refrigerant to be used as an alternative must be at least thermodynamically sufficient and within specified environmental limits. In this study, R152a refrigerant which is an alternative gas for R134a that's use in automobile air conditioning systems will be removed within a certain schedule has been examined thermodynamically. Artificial intelligent model was generated and compared by using data obtained from the examination. Through this model, system was tested with untrained data. The generated model has been very close to test data and successful in high precision.
机译:随着环境意识的提高,对用于汽车空调系统的替代制冷剂的需求使得保护臭氧层和防止全球变暖成为必要。因此,重要的是,用作替代品的制冷剂必须至少在热力学上足够并且在规定的环境极限内。在这项研究中,对R152a制冷剂(作为R134a的替代气体)在汽车空调系统中的使用将在一定的时间表内去除进行了热力学研究,该制冷剂将在一定的时间表内去除。使用从检查中获得的数据生成并比较了人工智能模型。通过该模型,系统使用未经训练的数据进行了测试。所生成的模型非常接近测试数据,并以高精度成功。

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