Transcritical-transcritical cascade CO2 heat pump cycles for high-temperature heating: A numerical evaluation

Author:

Kong LanaORCID,Walmsley Timothy Gordon,Hoang Duy Khanh,Schlosser FlorianORCID,Chen Qun,Carson James K.ORCID,Cleland Donald John

Funder

Ministry of Business, Innovation and Employment

Publisher

Elsevier BV

Subject

Industrial and Manufacturing Engineering,Energy Engineering and Power Technology,Fluid Flow and Transfer Processes,Mechanical Engineering

Reference29 articles.

1. Heat pump integration by pinch analysis for industrial applications: A review, chemical;Schlosser;Eng. Trans.,2019

2. Energy Efficiency and Conservation Authority, Ministry of Businesss, Innovation & Employment, Dairy Manufacturing - Process Heat and Greenhouse Gas Emissions, 2018. https://www.mbie.govt.nz/dmsdocument/151-dairy-maufacturing-fact-sheet-pdf (accessed August 29, 2021).

3. Ministry for the Environment, Electricity statistics | Ministry of Business, Innovation & Employment, (2021). https://www.mbie.govt.nz/building-and-energy/energy-and-natural-resources/energy-statistics-and-modelling/energy-statistics/electricity-statistics/ (accessed October 24, 2021).

4. Natural refrigerant-based subcritical and transcritical cycles for high temperature heating;Sarkar;Int. J. Refrig,2007

5. Mitsubishi Heavy Industries, High efficiency CO2 hot water solution - Q-ton: Air to water, New Zealand, 2020. https://mhiheatpumps.co.nz/document/q-ton-brochure/.

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