The Chinese high temperature gas-cooled reactor pebble bed module (HTR-PM) demonstration project has attracted increasing attention. In order to support the project, a large-scale heat transfer test facility has been constructed for pebble bed effective thermal conductivity measurement over the whole temperature range (0~1600 °C). Based on different heat transfer mechanisms in the randomly packed pebble bed, three different types of effective thermal conductivity have been theoretically evaluated. A prediction of the total effective thermal conductivity of the pebble bed over the whole temperature range is provided for the optimization of the test facility and guidance of further experiments
Lithium titanate is a promising solid breeder material for the fusion reactor blanket. Packed lithiu...
The high temperature gas cooled reactor (HTGR) offers the possibility at a suitable design and dimen...
This paper presents a new approach to the calculation of the effective thermal conductivity in packe...
The Chinese high temperature gas-cooled reactor pebble bed module (HTR-PM) demonstration project has...
The effective thermal diffusivity and conductivity of pebble bed in the high temperature gas-cooled ...
A full-radius-scale heat test facility has been developed by the Institute of Nuclear and New Energy...
PhD (Mechanical Engineering, North-West University, Potchefstroom CampusThe effective thermal conduc...
The effective thermal conductivity is an important parameter that is representative of the overall h...
Thermal-fluid simulations are used extensively to predict the maximum fuel temperatures, flows, pres...
In nuclear packed pebble beds, it is a fundamental task to model effective thermal conductivity (ETC...
The effective thermal conductivity represents the overall heat transfer characteristics of a packed ...
Graduation date: 2016The United States (US) Department of Energy (DOE) has identified the pebble-bed...
A proper understanding of the mechanisms of heat transfer, flow and pressure drop through a packed b...
The effective thermal conductivity is an important parameter that represents the overall heat transf...
MSc (Mechanical Engineering), North-West University, Potchefstroom Campus, 2015The heat transfer phe...
Lithium titanate is a promising solid breeder material for the fusion reactor blanket. Packed lithiu...
The high temperature gas cooled reactor (HTGR) offers the possibility at a suitable design and dimen...
This paper presents a new approach to the calculation of the effective thermal conductivity in packe...
The Chinese high temperature gas-cooled reactor pebble bed module (HTR-PM) demonstration project has...
The effective thermal diffusivity and conductivity of pebble bed in the high temperature gas-cooled ...
A full-radius-scale heat test facility has been developed by the Institute of Nuclear and New Energy...
PhD (Mechanical Engineering, North-West University, Potchefstroom CampusThe effective thermal conduc...
The effective thermal conductivity is an important parameter that is representative of the overall h...
Thermal-fluid simulations are used extensively to predict the maximum fuel temperatures, flows, pres...
In nuclear packed pebble beds, it is a fundamental task to model effective thermal conductivity (ETC...
The effective thermal conductivity represents the overall heat transfer characteristics of a packed ...
Graduation date: 2016The United States (US) Department of Energy (DOE) has identified the pebble-bed...
A proper understanding of the mechanisms of heat transfer, flow and pressure drop through a packed b...
The effective thermal conductivity is an important parameter that represents the overall heat transf...
MSc (Mechanical Engineering), North-West University, Potchefstroom Campus, 2015The heat transfer phe...
Lithium titanate is a promising solid breeder material for the fusion reactor blanket. Packed lithiu...
The high temperature gas cooled reactor (HTGR) offers the possibility at a suitable design and dimen...
This paper presents a new approach to the calculation of the effective thermal conductivity in packe...