Experimental study on transient heat transfer performance of high temperature heat pipe under temperature feedback heating mode for micro nuclear reactor applications
Author:
Publisher
Elsevier BV
Subject
Industrial and Manufacturing Engineering,Energy Engineering and Power Technology,Fluid Flow and Transfer Processes,Mechanical Engineering
Reference48 articles.
1. Development of regression models to forecast the CO2 emissions from fossil fuels in the BRICS and MINT countries;Karakurt;Energy,2023
2. The role of current and emerging technologies in meeting Japan’s mid- to long-term carbon reduction goals;Chaube;Appl. Energy,2021
3. A review of the application of artificial intelligence to nuclear reactors: Where we are and what’s next;Huang;Heliyon.,2023
4. An option for the integration of solar photovoltaics into small nuclear power plant with thermal energy storage;Borisova;Sustainable Energy Technol. Assess.,2016
5. Innovative configuration of a hybrid nuclear-solar tower power plant;Popov;Energy,2017
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