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Flow behavior of spiral capillary tube for CO2 transcritical cycle

机译:CO2跨临界循环螺旋毛细管的流动

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A numerical study has been carried out on the spiral capillary tube for the CO2 transcritical cycle. The model is based on the basic principles of conservation of mass, momentum, and energy. The results of this model are validated with earlier published test results. The effect of various geometric parameters like tube diameter, length, roughness, and pitch on the mass flow rate, cooling capacity, and COP has been calculated. The mass flow rate of the tube is mostly influenced by the internal tube diameter, as the diameter increases by 28%, the mass flow increases by 88%. A minor change in mass is observed with a change in pitch and surface roughness, as the pitch increases from 300 to 700 mm, and surface roughness increases by 14%, the mass flow rate and cooling capacity increase only by 2% and 1%, respectively. Similarly, the influence of various operating factors like gas cooler pressure, evaporator temperature, and gas cooler temperature is evaluated. A significant change in mass is observed with the change in gas cooler temperature, as the gas cooler temperature increases by 5%, the mass flow rate, cooling capacity, and COP decrease by 19%, 40%, and 33%, respectively. Relatively less variation in mass flow rate is observed with the change in evaporator temperature. As the evaporator temperature increases by 12%, the mass flow rate decreases by nearly 5.5%, and cooling capacity decreases by 18%. Energy and exergy analyses of a CO2 transcritical system are carried out.
机译:在CO2跨临界循环中对螺旋毛细管进行了数值研究。该模型基于保护质量,动量和能量的基本原则。此模型的结果与早期发布的测试结果验证。已经计算了各种几何参数,如管直径,长度,粗糙度和音调对质量流量,冷却能力和COP的影响。管的质量流量主要受内管直径的影响,随着直径增加28%,质量流量增加了88%。随着音调和表面粗糙度的变化观察到肿块的微小变化,随着音调从300升至700mm,表面粗糙度增加14%,质量流量和冷却能力仅增加2%和1%,分别。类似地,评价各种操作因素等各种操作因素,如气体冷却压力,蒸发器温度和气体冷却温度。随着气体冷却温度的变化观察到质量的显着变化,因为气体冷却器温度升高5%,质量流量,冷却能力和COP分别降低19%,40%和33%。随着蒸发器温度的变化观察到质量流量的变化相对较小。随着蒸发器温度升高12%,质量流量减小近5.5%,冷却能力降低18%。进行了CO2跨临界系统的能量和漏洞分析。

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