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- W3133362037 abstract "Vapor compression systems account for more than a third of the total primary energy consumption through their use in both residential and commercial applications. In addition to energy demand, environmental concerns require the development of a new generation of more sustainable heat pumps and refrigeration systems. The use of CO2 as a natural working fluid is a promising solution to negative long-term impact on the environment, but it comes with a number of challenges with respect to high-efficiency systems in comparison with conventional vapor compression cycles. Besides the higher pressure levels due to the low critical point of CO2, irreversibilities during the expansion process play a major role in affecting the system COP. Therefore, harnessing the available energy that is not utilized in the passive expansion with work recovery devices is of particular importance. In this chapter, theoretical aspects concerning transcritical CO2 cycles with and without expansion recovery devices are described in detail. Both mechanical expansion devices (such as positive displacement and turbine-type expanders) and ejector-expansion systems are analyzed. The theoretical aspects are supported by practical applications and experimental findings." @default.
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- W3133362037 date "2021-02-08" @default.
- W3133362037 modified "2023-10-12" @default.
- W3133362037 title "Theoretical Analysis of the <scp>CO</scp> <sub>2</sub> Expansion Process" @default.
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- W3133362037 doi "https://doi.org/10.1002/9781118380055.ch5" @default.
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