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Analysis of Heat Transfer Process in Heat Exchanger Type Condenser (str. 8 nr. 9/51/20)
dr inż. Blanka Jakubowska
  

 
 DOI: 10.15199/9.2020.3
 
Keywords: flow condensation, heat transfer coefficient, heat exchanger, condenser, refrigerant

 
Abstract
In the paper has been presented an algorithm for heat transfer calculations of a shell and tube heat exchanger. The heat exchanger affects the correctness and efficiency of the entire installation. Therefore, the selection of heat exchanger for the entire installation is not a simple task and is associated with
many design assumptions. They have a significant impact on the correct operation of the device and the entire installation. The correct determination of the heat transfer coefficients during flow is one of the most problematic design issues, especially when a phase change occurs during the flow. Therefore,
in this article, the greatest attention is paid to this issue, but the article also presents a calculation algorithm that allows to determine the heat transfer coefficient in a single-phase flow. In order to model the condensation process, four models describing this phenomenon were selected: Shah, Akers
et al., Cavallini and Zecchin, and Boyko and Kruzhilin. Additionally, the problems of a design nature include: assumptions related to the selection of an appropriate working fluid. Therefore, the article also presents the influence of the selection of a condensing medium on the distribution of heat transfer
coefficients in a two-phase flow. In order to analyze the influence of the selected working fluid on the condensation process, nine fluids have been taken into consideration, i.e. R22, R32, R134a, R1234yf, R1234ze, R290 (propane), R600a (isobutane), R1270 (propylene) and ammonia.

 
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