Solid hydrogenic pellets are used as fuel for fusion energy machines like the ITER device. This paper discusses the numerical modeling of a Pellet Production System (PPS) that is used to generate these pellets. The PPS utilizes a source of supercritical helium to provide the cooling that is necessary to proceed, liquefy, and solidify hydrogenic material that is ultimately extruded and cut into fuel pellets. The specific components within the PPS include a pre-cooling heat exchanger, a liquefier, and a twin-screw solidifying extruder. This paper presents numerical models of each component. These numerical models are used as design tools to predict the performance of the respective devices. The performance of the PPS is dominated by the heat ...
In this work, the digital twin of an existing solid-state hydrogen storage tank is developed by appl...
In view of a possible hydrogen infrastructure a number of studies on large-scale hydrogen liquefiers...
Detailed heat exchanger designs are determined by matching intermediate temperatures in a large-scal...
Hydrogen production is a topical issue in an energy scenario where decarbonization is a priority, es...
This paper discusses the modeling of a twin-screw extruder, cooled by a Gifford McMahon cryocooler, ...
A lumped-parameter computational simulation is developed, tested, and used to model a non-vented slo...
As the demand for eco-friendly energy increases, hydrogen energy and liquid hydrogen storage technol...
Nuclear rocket engines employ hydrogen, a cryogenic liquid, as a propellant in order to obtain a sys...
Hydrogen as a clean fuel and a new energy source can be produced by various methods. One of these co...
Liquid organic hydrogen carriers (LOHCs) are considered a promising hydrogen storage technology. Hea...
OAK-B135 A significant ''Hydrogen Economy'' is predicted that will reduce our dependence on petroleu...
Presented at the 16th International Cryocooler Conference, held May 17-20, 2008 in Atlanta, Georgia....
Hydrogen and Methane are two fluids that are either used or in discussion as propellants for upper a...
Second Place winner of oral presentations at the 8th Annual Symposium on Graduate Research and Schol...
This article proposes a dynamic simulation model of the pellet production process for the pellet inj...
In this work, the digital twin of an existing solid-state hydrogen storage tank is developed by appl...
In view of a possible hydrogen infrastructure a number of studies on large-scale hydrogen liquefiers...
Detailed heat exchanger designs are determined by matching intermediate temperatures in a large-scal...
Hydrogen production is a topical issue in an energy scenario where decarbonization is a priority, es...
This paper discusses the modeling of a twin-screw extruder, cooled by a Gifford McMahon cryocooler, ...
A lumped-parameter computational simulation is developed, tested, and used to model a non-vented slo...
As the demand for eco-friendly energy increases, hydrogen energy and liquid hydrogen storage technol...
Nuclear rocket engines employ hydrogen, a cryogenic liquid, as a propellant in order to obtain a sys...
Hydrogen as a clean fuel and a new energy source can be produced by various methods. One of these co...
Liquid organic hydrogen carriers (LOHCs) are considered a promising hydrogen storage technology. Hea...
OAK-B135 A significant ''Hydrogen Economy'' is predicted that will reduce our dependence on petroleu...
Presented at the 16th International Cryocooler Conference, held May 17-20, 2008 in Atlanta, Georgia....
Hydrogen and Methane are two fluids that are either used or in discussion as propellants for upper a...
Second Place winner of oral presentations at the 8th Annual Symposium on Graduate Research and Schol...
This article proposes a dynamic simulation model of the pellet production process for the pellet inj...
In this work, the digital twin of an existing solid-state hydrogen storage tank is developed by appl...
In view of a possible hydrogen infrastructure a number of studies on large-scale hydrogen liquefiers...
Detailed heat exchanger designs are determined by matching intermediate temperatures in a large-scal...