The current paper reports the results of gamma spectroscopic burn-up determination and KüFA safety testing at JRC Karlsruhe on spherical high-temperature reactor fuel elements, which were fabricated by the Institute of Nuclear and New Energy Technology of the Tsinghua University, Beijing. The fuel elements were irradiated in the High Flux Reactor, Petten, in the frame of the HFR-EU1 and HTR-PM campaigns and transported to JRC Karlsruhe for post-irradiation examination and accident testing in the KüFA device in the frame of a bilateral safety research study. Burn-up determination was performed on seven fuel elements based on the quantitative measurement of their Cs-137 inventories using an established gamma spectroscopy set-up in the JRC hot...
The ceramic and ceramic-like coating materials in modern high-temperature reactor fuel are designed ...
The central aspect of the safety philosophy for a small HTR is the retention of fission products, pa...
The central aspect of the safety philosophy for a small HTR is the retention of fission products, pa...
The High Temperature Reactor (HTR) is characterised by an advanced design with passive safety featur...
Within the Generation IV International Forum (GIF), considerable efforts are devoted in Europe to re...
Four spherical high-temperature reactor fuel elements irradiated at the High Flux Reactor in Petten ...
Modern fuel elements for high-temperature reactors (HTRs) contain a large number of spherical fuel p...
NRG has performed a High Temperature Reactor fuel qualification test in the framework of the Chinese...
The Cold Finger Apparatus (KühlFinger-Apparatur – KüFA) in operation at JRC-ITU is designed to exper...
The Cold Finger Apparatus (KühlFinger-Apparatur – KüFA) in operation at JRC-ITU is designed to exper...
Within the European High Temperature Reactor Technology Network (HTR-TN) and related projects a numb...
Within the European High Temperature Reactor Technology Network (HTR-TN) and related projects a numb...
A new furnace for accident condition testing of spherical high temperature reactor fuel elements has...
The irradiation experiment HFR-EU1bis was successfully performed by JRC Institute for Energy (JRC-IE...
The Cold Finger Apparatus (KühlFinger-Apparatur—KüFA) in operation at JRC-ITU is designed to experim...
The ceramic and ceramic-like coating materials in modern high-temperature reactor fuel are designed ...
The central aspect of the safety philosophy for a small HTR is the retention of fission products, pa...
The central aspect of the safety philosophy for a small HTR is the retention of fission products, pa...
The High Temperature Reactor (HTR) is characterised by an advanced design with passive safety featur...
Within the Generation IV International Forum (GIF), considerable efforts are devoted in Europe to re...
Four spherical high-temperature reactor fuel elements irradiated at the High Flux Reactor in Petten ...
Modern fuel elements for high-temperature reactors (HTRs) contain a large number of spherical fuel p...
NRG has performed a High Temperature Reactor fuel qualification test in the framework of the Chinese...
The Cold Finger Apparatus (KühlFinger-Apparatur – KüFA) in operation at JRC-ITU is designed to exper...
The Cold Finger Apparatus (KühlFinger-Apparatur – KüFA) in operation at JRC-ITU is designed to exper...
Within the European High Temperature Reactor Technology Network (HTR-TN) and related projects a numb...
Within the European High Temperature Reactor Technology Network (HTR-TN) and related projects a numb...
A new furnace for accident condition testing of spherical high temperature reactor fuel elements has...
The irradiation experiment HFR-EU1bis was successfully performed by JRC Institute for Energy (JRC-IE...
The Cold Finger Apparatus (KühlFinger-Apparatur—KüFA) in operation at JRC-ITU is designed to experim...
The ceramic and ceramic-like coating materials in modern high-temperature reactor fuel are designed ...
The central aspect of the safety philosophy for a small HTR is the retention of fission products, pa...
The central aspect of the safety philosophy for a small HTR is the retention of fission products, pa...