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Subcooling control method for the adjustable ejector in the direct expansion solar assisted ejector-compression heat pump water heater

机译:直膨胀太阳能辅助喷射器 - 压缩热泵热水器的可调节喷射器的过冷控制方法

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摘要

A subcooling control method is proposed in this paper, aiming to regulate the adjustable ejector in the presented direct expansion solar assisted ejector-compression heat pump water heater. The proposed subcooling control method adopts the PID (Proportion Integration Differentiation) algorithm and aims to help the presented system track the given subcooling degree through automatically adjusting the nozzle throat area of the adjustable ejector. The proposed subcooling control method is firstly examined by dynamic simulation method. The simulation results show that the proposed subcooling control method can meet the purpose of controlling sub cooling degree and reduce the power consumption by 7.95% under the considered condition. The experimental setup with and without the subcooling controller are tested for comparison, and the test results confirm the simulation conclusions. The experimental system with the subcooling controller maintains the subccoling degree in a range of 4-7 degrees C, and reduces the power consumption by 6.24% and 6.99% compared with those with two different ejector throat areas. Further analysis shows that the subcooling controller brings the highest ejector entrainment ratio but not evident improvement in the pressure lift ratio aspect. In brief, the proposed subcooling control method achieves satisfactory subcooling degree control precision and further improves the system performance.
机译:本文提出了一种过冷控制方法,其目的地,用于调节所提供的直接膨胀太阳能辅助喷射器 - 压缩热泵热泵中的可调节喷射器。所提出的过冷控制方法采用PID(比例集成区分)算法,并帮助所提出的系统通过自动调节可调弹射器的喷嘴喉部区域来追踪给定的过冷度。首先通过动态仿真方法检查所提出的过冷控制方法。仿真结果表明,所提出的过冷控制方法可以满足控制子冷却程度的目的,并在考虑条件下将功耗降低7.95%。测试了具有和不使用过冷控制器的实验设置进行比较,并且测试结果证实了模拟结论。具有过冷控制器的实验系统在4-7摄氏度的范围内保持子溶剂度,与具有两个不同喷射器喉部区域的人相比,将功耗降低6.24%和6.99%。进一步的分析表明,过冷控制器带来了最高的喷射器夹带比,但在压力提升比方面没有显然改善。简而言之,提出的过冷控制方法实现了令人满意的过冷度控制精度,并进一步提高了系统性能。

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