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Performance investigation of two-stage heat pump system with vapor-injected scroll compressor.

机译:带有蒸汽喷射涡旋压缩机的二级热泵系统的性能研究。

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摘要

Heat pumps provide cooling in summers and heating in winters. It is inevitable that the capacity and COP of the heat pumps degrade significantly in the case of high ambient temperatures in summers and low ambient temperatures in winters, when the maximum capacity is desired. Refrigerant vapor-injection technique has been well justified to improve the performance of systems in refrigeration applications, however, it has not received much attention for air conditioning applications, particularly with air-conditioning for hot climates and heat pumps for cold climates. The performance degradation of conventional residential equipment at extreme weather conditions warrants further investigation of the vapor-injection technique.;This dissertation is focused on the experimental and theoretical investigations of a two-stage heat pump system with an innovative vapor-injected scroll compressor. Unlike other research, a heat pump system without a liquid receiver has been studied in this research. A 3-ton R410A heat pump equipped with a conventional scroll compressor has been built, and tested to serve as a baseline. The heat pump has been modified to be a two-stage system with the cycle options of flash tank and internal heat exchanger configurations, and been tested under the same ambient conditions to the baseline. Both compressors have the same displacement volume. The operating options of the two-stage system have been compared, and analyzed. The vapor-injection effects on the subcomponents of the system have been addressed.;The vapor-injected compressor has been modeled using compressor-mapping method. A simulation model of the two-stage system has been built using VapCyc and CoilDesigner software packages developed by CEEE, and been validated using the experimental data. The model is able to predict the system performance with +/-5% of deviation to the experimental results for most performance variables.;The results show that the vapor-injection technique can effectively increase the system performance. A cooling capacity gain of around 14% with 4% COP improvement at ambient 46.1°C, about 30% heating capacity improvement with 20% COP gain at -17.8°C and about 7% HSPF improvement in U.S. Department of Energy's northern Region 4 climate have been found for the vapor-injected heat pump system as compared to the conventional system.
机译:热泵在夏天提供冷却,在冬天提供加热。当期望最大容量时,在夏天的环境温度高而冬天的环境温度低的情况下,热泵的容量和COP不可避免地会大大降低。制冷剂蒸气喷射技术已被证明可以改善制冷应用中系统的性能,但是,在空调应用中,尤其是在炎热气候中使用空调,在寒冷气候中使用热泵时,并没有引起足够的重视。常规住宅设备在极端天气条件下的性能下降值得对蒸汽喷射技术进行进一步的研究。本论文着重于具有创新的蒸汽喷射涡旋压缩机的两级热泵系统的实验和理论研究。与其他研究不同,本研究对不带液体接收器的热泵系统进行了研究。已建成配备常规涡旋压缩机的3吨R410A热泵,并经过测试可作为基准。热泵已被修改为两级系统,具有闪蒸罐和内部热交换器配置的循环选项,并已在与基准相同的环境条件下进行了测试。两种压缩机的排量相同。比较并分析了两阶段系统的操作选项。已经解决了蒸气喷射对系统子组件的影响。;已经使用压缩机映射方法对蒸气喷射压缩机进行了建模。使用CEEE开发的VapCyc和CoilDesigner软件包建立了两阶段系统的仿真模型,并使用实验数据进行了验证。该模型能够以大多数性能变量的实验结果偏差+/- 5%的方式预测系统性能。结果表明,蒸汽喷射技术可以有效地提高系统性能。在美国能源部的北部地区4气候中,在46.1°C的环境下,制冷能力提高了约14%,COP提升了4%;在-17.8°C的条件下,制冷能力提高了约30%,COP提升了20%,HSPF提升了约7%。与传统系统相比,已经发现蒸汽喷射热泵系统已经存在。

著录项

  • 作者

    Wang, Xudong.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 183 p.
  • 总页数 183
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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