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Energy efficient refrigeration - improvement of compact thermoelectric units through modeling, testing, and control

机译:节能制冷-通过建模,测试和控制改进紧凑型热电单元

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Thermoelectric devices have been applied in compact refrigerators as an alternate to the traditional vapor compression systems. Drawbacks in cost and efficiency, as well as unknown reliability, however, have prevented wide spread use over vapor compression systems. Although thermoelectric devices eliminate both moving parts and circulating refrigerant, an energy efficient and reliable refrigerator is the goal. In this paper, the performance of compact thermoelectric and vapor compression refrigerators has been studied. A mathematical model was developed for the compact thermoelectric refrigerator and validated. A suite of tests were conducted to assess the performance of various control techniques. Through standard control operation, the thermoelectric unit reached a minimum temperature of 5.6°C in 74.4 minutes. With the implementation of pulse width and amplitude modulation control strategies, the thermoelectric unit's minimum temperature was decreased by 1.09°C and power consumption was reduced by 9.13%. The study establishes a basis to further investigate performance improvements for compact thermoelectric refrigerators.
机译:热电装置已被应用在紧凑型冰箱中,作为传统蒸气压缩系统的替代品。然而,成本和效率的缺点以及未知的可靠性已经阻止了在蒸气压缩系统上的广泛使用。尽管热电设备消除了活动部件和循环制冷剂,但目标是节能高效且可靠的冰箱。本文研究了紧凑型热电和蒸气压缩式制冷机的性能。为紧凑型热电冰箱开发了数学模型并进行了验证。进行了一系列测试以评估各种控制技术的性能。通过标准控制操作,热电单元在74.4分钟内达到5.6°C的最低温度。随着脉冲宽度和幅度调制控制策略的实施,热电单元的最低温度降低了1.09°C,功耗降低了9.13%。该研究为进一步研究紧凑型热电冰箱的性能改进奠定了基础。

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