Life extensions of nuclear power plants to 60 and potentially 80 years of operation have renewed interest in long-term material degradation. One material being considered is concrete, with a particular focus on radiation-induced effects. Based on the projected neutron fluence values (E > 0.1 MeV) in the concrete biological shields of the US pressurized water reactor fleet and the available data on radiation effects on concrete, some decrease in mechanical properties of concrete cannot be ruled out during extended operation beyond 60 years. An expansion of the irradiated concrete database and a reliable determination of relevant neutron fluence energy cutoff value are necessary to ensure reliable risk assessment for extended operation of nuc...
The U.S. Department of Energy Office of Environmental Management (DOE-EM) is responsible for the Dec...
The Structural Aging Program provides the US Nuclear Regulatory Commission with potential structural...
The overall thermo-hygro-mechanical behavior of concrete is to be investigated, because its bearing ...
Life extensions of nuclear power plants to 60 and potentially 80 years of operation have renewed int...
Life extensions of nuclear power plants (NPPs) to 60 years of operation and the possibility of subse...
Concrete is commonly used as a biological shield against nuclear radiation. As long as, in the desig...
Concrete is commonly used as a biological shield against nuclear radiation. As long as, in the desig...
Concrete is commonly used as a biological shield against nuclear radiation. As long as, in the desig...
A review of the current state of knowledge on the effects of radiation on concrete in nuclear power ...
iii The open literature and accessible United States Department of Energy-sponsored reports were rev...
It is common practice in nuclear engineering to use concrete as shielding material for nuclear facil...
Concrete is a relatively cheap material and easy to be cast into variously shaped structures. Its go...
Concrete surrounding nuclear facilities is exposed to nuclear radiation such as neutrons, primary ga...
Concrete is commonly used as a biological shield against nuclear radiation. As long as, in the desig...
The prolonged exposure of concrete to radiation affects significantly the concrete properties and co...
The U.S. Department of Energy Office of Environmental Management (DOE-EM) is responsible for the Dec...
The Structural Aging Program provides the US Nuclear Regulatory Commission with potential structural...
The overall thermo-hygro-mechanical behavior of concrete is to be investigated, because its bearing ...
Life extensions of nuclear power plants to 60 and potentially 80 years of operation have renewed int...
Life extensions of nuclear power plants (NPPs) to 60 years of operation and the possibility of subse...
Concrete is commonly used as a biological shield against nuclear radiation. As long as, in the desig...
Concrete is commonly used as a biological shield against nuclear radiation. As long as, in the desig...
Concrete is commonly used as a biological shield against nuclear radiation. As long as, in the desig...
A review of the current state of knowledge on the effects of radiation on concrete in nuclear power ...
iii The open literature and accessible United States Department of Energy-sponsored reports were rev...
It is common practice in nuclear engineering to use concrete as shielding material for nuclear facil...
Concrete is a relatively cheap material and easy to be cast into variously shaped structures. Its go...
Concrete surrounding nuclear facilities is exposed to nuclear radiation such as neutrons, primary ga...
Concrete is commonly used as a biological shield against nuclear radiation. As long as, in the desig...
The prolonged exposure of concrete to radiation affects significantly the concrete properties and co...
The U.S. Department of Energy Office of Environmental Management (DOE-EM) is responsible for the Dec...
The Structural Aging Program provides the US Nuclear Regulatory Commission with potential structural...
The overall thermo-hygro-mechanical behavior of concrete is to be investigated, because its bearing ...