首页> 外文会议>International conference on magnetic refrigeration at room temperature >SYSTEM ANALYSIS AND OPTIMIZATION OF A CO_2 HEAT PUMP TUMBLE DRYER
【24h】

SYSTEM ANALYSIS AND OPTIMIZATION OF A CO_2 HEAT PUMP TUMBLE DRYER

机译:CO_2热泵滚筒干燥机的系统分析与优化

获取原文

摘要

The use of heat pump technology in tumble dryers reduces energy consumption by approximately 50% compared to conventional vented and condensing dryers. At present R134a is typically used as refrigerant, although environmentally friendly alternatives exist. Dryers for semi-professional use require larger refrigerant charge compared to domestic dryers, which makes the use of flammable refrigerants challenging. CO_2 appears to be a promising alternative. This study covers a detailed energetic analysis and optimization of a semi-professional heat pump tumble dryer with CO_2 as refrigerant. The dryer consists of two closed cycles, i.e. the air flow and the heat pump cycle. The latter is equipped with an additional sub-cooler after the gas cooler to reject energy to the ambient air when necessary. The prototype of the CO_2 heat pump dryer was developed by modification of a commercially available R134a dryer. Details of the configuration are given and experimental results are presented to illustrate the transient system behavior and overall performance. The experimental data is used to validate a detailed physics-based simulation model on both component and system level. Relevant energy flows to the environment through leakage and heat losses are evaluated by simulation. Interactions between heat pump and air flow cycle are discussed in detail. Consequentially, an alternative system configuration is presented. This includes a suction line accumulator and thermal insulation. Simulation results show an improved system performance in terms of energy efficiency and drying time. Finally, the CO_2 heat pump dryer is compared with the corresponding R134a system.
机译:与传统的通风和冷凝干燥器相比,在滚筒干燥器中使用热泵技术将能量消耗降低约50%。目前R134A通常用作制冷剂,但存在环保替代品。与家用干燥器相比,半专业用途需要更大的制冷剂充电,这使得使用易燃制冷剂挑战。 CO_2似乎是一个有前途的替代方案。本研究涵盖了具有CO_2作为制冷剂的半专业热泵滚筒烘干机的详细能量分析和优化。干燥机由两个闭合的循环组成,即气流和热泵循环。后者在气体冷却器之后配备了额外的子冷却器,以在必要时拒绝对环境空气的能量。通过改性市售的R134A干燥器,开发了CO_2热泵干燥器的原型。给出了配置的细节,并提出了实验结果以说明瞬态系统行为和整体性能。实验数据用于在组件和系统级别验证基于物理的仿真模型。通过泄漏和热损耗通过仿真评估相关能量流动。详细讨论了热泵和空气流循环之间的相互作用。因此,呈现了替代系统配置。这包括吸入管线蓄能器和保温。仿真结果表明,在能效和干燥时间方面具有改进的系统性能。最后,将CO_2热泵干燥器与相应的R134A系统进行比较。

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