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The Development and Full-Scale Experimental Validation of an Optimal Water Treatment Solution in Improving Chiller Performances

机译:改善水冷机性能的最佳水处理解决方案的开发和全面实验验证

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An optimal solution, in combining physical and chemical water treatment methods, has been developed. This method uses a high voltage capacitance based (HVCB) electrodes, coupled with biocides to form a sustainable solution in improving chiller plant performances. In this study, the industrial full-scale tests, instead of laboratory tests, have been conducted on chiller plants at the size of 5000 RT to 10,000 RT cooling capacities under commercial operation for more than two years. The experimental results indicated that the condenser approach temperatures can be maintained at below 1 °C for over two years. It has been validated that the coefficient of performance (COP) of a chiller can be improved by over 5% by implementing this solution. Every 1 °C reduction in condenser approach temperature can yield approximately 3% increase on chiller COP, which warrants its future application potential in the HVAC industry, where T a can degrade by 1 °C every three to six months. The solution developed in this study could also reduce chemical dosages and conserve makeup water substantially and is more environment friendly.
机译:已开发出结合物理和化学水处理方法的最佳解决方案。此方法使用基于高压电容的(HVCB)电极,并结合杀菌剂形成可持续的解决方案,以提高冷水机组的性能。在这项研究中,已经对超过5,000 RT到10,000 RT制冷量的冷水机组进行了超过两年的工业规模测试,而不是实验室测试。实验结果表明,冷凝器进场温度可以在1°C以下保持两年以上。已经证实,通过实施此解决方案,冷却器的性能系数(COP)可以提高5%以上。冷凝器接近温度每降低1°C,冷水机组COP的利用率就会提高约3%,这保证了其在暖通空调行业的未来应用潜力,其中,T a每三至六个月会降低1°C。这项研究中开发的解决方案还可以减少化学药品的用量,并节省大量化妆水,并且对环境更友好。

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