首页> 外文会议>Power and Energy Systems >SINGLE STAGE TRIPLE PRESSURE LEVEL ABSORPTION CYCLE BASED ON REFRIGERANTS R22, R32, R125, R134a AND R152a WITH DMEU
【24h】

SINGLE STAGE TRIPLE PRESSURE LEVEL ABSORPTION CYCLE BASED ON REFRIGERANTS R22, R32, R125, R134a AND R152a WITH DMEU

机译:基于带DMEU的制冷剂R22,R32,R125,R134a和R152a的单级三重压力吸收周期

获取原文

摘要

Current developments in absorption technology include the research for new working pairs and new advanced cycles that would facilitate increased efficiency of absorption units and extend applicability to different temperature ranges. Four HFC refrigerants diflouromethane (R32), pentafluoroethane (R125), 1,1,2-tetrafluoroethane (R134a) and 1,1-diflouroethane (R152a) which are alternatives to HCFC, such as colorodiflouromethane (R22), in combination with absorbent dimethylenurea (DMEU) were evaluated for possible utilization in absorption chillers powered by low temperature heat sources. A computerized simulation program was used to compare the different refrigerant-absorbent pairs. The program was based on an advanced single-stage triple pressure level (TPL) cycle containing a jet ejector. The absorption cycle was represented in terms of heat and mass balances for each component and the calculations were based on the thermophysical properties of the refrigerant-absorbent pairs measured and evaluated in our laboratory. The aim of the cycle analysis was to evaluate the highest coefficient of performance (COP) and the lowest circulation ratio (f), which can be obtained for different generator temperatures for a given evaporating and cooling water temperatures. At the maximum COP of each working pair, the effects of changes in the evaporator and the cooling water temperatures on the COP and the circulation ratio,f, were also examined. The performances of the working fluids based on HFC refrigerants-DMEU pairs were compared with the performance of R22-DMEU. It was obtained that the generator temperature of R125-DMEU at maximum COP is lower than those obtained with the other alternative working fluids.
机译:吸收技术的当前发展包括对新工作对和新先进循环的研究,这将有助于提高吸收单元的效率并将适用性扩展到不同的温度范围。四种HFC制冷剂二氟甲烷(R32),五氟乙烷(R125),1,1,2-四氟乙烷(R134a)和1,1-二氟乙烷(R152a)是HCFC的替代品,例如彩二氟甲烷(R22)与吸收性二甲基脲对(DMEU)(DMEU)在由低温热源提供动力的吸收式制冷机中的可能利用进行了评估。使用计算机模拟程序来比较不同的制冷剂-吸收剂对。该程序基于包含喷射器的高级单级三级压力水平(TPL)循环。吸收循环以每种成分的热量和质量平衡表示,计算基于在我们实验室中测量和评估的制冷剂-吸收剂对的热物理性质。循环分析的目的是评估在给定的蒸发和冷却水温度下,对于不同的发电机温度,可以获得最高的性能系数(COP)和最低的循环比(f)。在每个工作对的最大COP下,还检查了蒸发器和冷却水温度的变化对COP和循环比f的影响。将基于HFC制冷剂-DMEU对的工作流体的性能与R22-DMEU的性能进行了比较。可以得出,在最高COP时,R125-DMEU的发电机温度低于其他工作流体的发电机温度。

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