...
首页> 外文期刊>Sustainable Energy Technologies and Assessments >Performance analysis and comparative study of two compression-assisted absorption cycles for heat pump applications
【24h】

Performance analysis and comparative study of two compression-assisted absorption cycles for heat pump applications

机译:热泵应用中两个压缩辅助吸收循环的性能分析和比较研究

获取原文
获取原文并翻译 | 示例
           

摘要

This research puts forward the investigation of Hybrid-GAX (HGAX) absorption heating cycles using ammoniawater as the working fluid. Two configurations of HGAX absorption cycles were simulated and compared using a compressor at different positions, between the evaporator and absorber in HGAX 1, and between the desorber and condenser in HGAX 2. The effect of the design operating parameters on both models' performance and circulation ratio was also studied and analyzed. The results indicated that HGAX 1 has higher COPh, p under evaporator temperatures lower than 2.2 degrees C, while HGAX 2 COPh, p approached or exceeded that of HGAX 1 under higher evaporator temperatures. For the same heating capacity, compression ratio, and design temperatures, HGAX 1 achieved 6.98% higher COPh, p compared to HGAX 2. However, at some simulated conditions, HGAX 2 can yield 11.71% higher COPh, p compared to HGAX 1. The circulation ratio was found to be the prevailing factor in estimating the performance of HGAX 1 at low evaporator temperatures, and HGAX 1 always acquiring a lower circulation ratio compared to HGAX 2 under the same design temperatures and compression ratios. In addition, optimum values of the compression ratio were also found that maximize the COPh, p for each cycle.
机译:这项研究提出了以氨水为工作液的Hybrid-GAX(HGAX)吸收加热循环的研究。使用HGAX 1中的蒸发器和吸收器之间以及HGAX 2中的解吸器和冷凝器之间的不同位置的压缩机,模拟并比较了HGAX吸收循环的两种配置。设计操作参数对模型性能和循环的影响比率也进行了研究和分析。结果表明,在低于2.2摄氏度的蒸发器温度下,HGAX 1的COPh,p较高,而在更高的蒸发器温度下,HGAX 2的COPh,p接近或超过HGAX 1。在相同的加热能力,压缩比和设计温度下,与AXAX 2相比,HGAX 1的COPh,p高6.98%。但是,在某些模拟条件下,与AXAX 1相比,HGAX 2的COPh,p高11.71%。在估算低蒸发温度下,循环比是评估HGAX 1性能的主要因素,在相同的设计温度和压缩比下,与AXAX 2相比,HGAX 1始终具有较低的循环比。此外,还发现压缩比的最佳值可使每个循环的COPh,p最大化。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号