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Effect of Biomaterial (Citrullus Lanatus Peels) Nanolubricant on the Thermal Performance and Energy Consumption of R600a in Refrigeration System

机译:生物材料(柑橘LANATUPELS)纳米磺酸对制冷系统R600A热性能和能耗的影响

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The study experimentally investigated the combinatorial impact of bio-based nanoparticles from agriculture waste of Citrullus Lanatus (watermelon) peels on the improvement of thermal performance and energy consumption of R600a as an alternative refrigerant to environment malignant R134a in a domestic refrigeration system. The thermodynamic system includes Copeland 46B/R600a or R134a as control and bio-based nanolubricant/R600a at different concentrations as test samples. The outcome showed that despite the results of coefficient of performance and pull-down time for the conventional R134a refrigerant fluid system, the R600a and its nanorefrigerant fluid variants performed better in terms of energy consumption, cooling capacity, and quantity of heat absorbed and expelled. Thus, reconfiguration of the thermodynamic system with bio-based nanoparticles had effect on the performance and improvement of R600a as a worthy refrigerant alternative to R134a.
机译:该研究通过实验研究了生物基纳米粒子的组合影响来自柑橘类植物(西瓜)剥蚀对r600a的热性能和能量消耗的改善,作为替代制冷剂的替代制冷剂在国内制冷系统中的环境恶性R134a。热力学系统包括COPELAND 46B / R600A或R134A,作为对照和基于生物的纳米磺酸/ R600A,其不同浓度作为测试样品。结果表明,尽管传统的R134A制冷剂流体系统的性能系数和下拉时间结果,但其R600A及其纳米福利剂流体变体在能量消耗,冷却能力和吸收的热量和排出的热量方面表现更好。因此,具有生物基纳米粒子的热力学系统的重新配置对R600A的性能和改进作为R134A的有价值的制冷剂替代品。

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