Thermodynamic cycle analysis and experimental investigate on a two-stage vapor injection low temperature air source heat pump with a variable displacement ratio rotary compressor..

Number: pap. 2425

Author(s) : HUANG H., LIANG X., ZHEN B., et al.

Summary

Two-stage vapor injection compression cycle with flash tank was thermodynamically analyzed, the results showed that there existed the optimum theoretical displacement ratio of high stage to low stage corresponding to the maximum coefficient of performance(COP), the optimum displacement ratio and the volumetric heating capacity decreased with evaporation temperature decreasing. An optimum theoretical displacement ratio correlation for R290, R32 and R410A was given. A new type two-stage vapor injection low temperature air source heat pump (ASHP) was designed, which had a variable speed triple-cylinder rotary compressor with two cylinders in low stage and one cylinder in high stage. The experimental results of the new type ASHP showed that the heating capacity under 20°C/-20°C (inside room /outside room) could reach the rated heating capacity under 20°C/7°C, improving 96% compared to conventional one-stage ASHP, the heating capacity under 20°C/-30°C could reach 80% of the rated one. COP of the new type ASHP could improve 5%~10% when the heating capacity was comparable to the conventional ASHP, and the heating capacity of the new type ASHP could improve 30%~50% when COP was comparable to the conventional ASHP.

Available documents

Format PDF

Pages: 9 p.

Available

  • Public price

    20 €

  • Member price*

    15 €

* Best rate depending on membership category (see the detailed benefits of individual and corporate memberships).

Details

  • Original title: Thermodynamic cycle analysis and experimental investigate on a two-stage vapor injection low temperature air source heat pump with a variable displacement ratio rotary compressor..
  • Record ID : 30018726
  • Languages: English
  • Source: 2016 Purdue Conferences. 16th International Refrigeration and Air-Conditioning Conference at Purdue.
  • Publication date: 2016/07/11

Links


See other articles from the proceedings (274)
See the conference proceedings