In this work, a conceptual design for a pre-filled liquid lithium divertor target for the National SphericalTorus Experiment Upgrade (NSTX-U) is presented. The design is aimed at facilitating experiments withhigh lithium flux from the plasma facing components (PFCs) in NSTX-U and investigating the potentialof capillary based liquid lithium components. In the design, lithium is supplied from a reservoir in thePFC to the plasma facing surface via capillary action in a wicking structure. This working principle isalso demonstrated experimentally. Next, a titanium zirconium molybdenum (TZM) prototype design ispresented, required to withstand a steady state heat flux peaking at 10 MW m−2for 5 s and edge localizedmodes depositing (130 kJ in 2 ms a...
Recent NSTX high power divertor experiments have shown significant and recurring benefits of solid l...
Liquid metal walls have the potential to solve first-wall problems for fusion reactors, such as heat...
A model is formulated to make a first estimate of the maximum tolerable power of liquid lithium dive...
In this work, a conceptual design for a pre-filled liquid lithium divertor target for the National S...
AbstractIn this work, a conceptual design for a pre-filled liquid lithium divertor target for the Na...
The Liquid Lithium Divertor (LLD) on NSTX will be the first test of a fully-toroidal liquid lithium ...
Developing a reactor compatible divertor has been identified as a particularly challenging technolog...
Liquid metal plasma-facing components (PFCs) provide numerous potential advantages over solid-materi...
To develop realistic liquid lithium divertors for future fusion reactors, this paper aims to improve...
Models and experimental data relevant to the work presented in "Conceptual design of a Pre-Loaded L...
The use of low atomic number liquid metals has been shown to have the potential to solve many of the...
The implementation of the liquid Lithium Divertor (LLD) in NSTX presented a unique opportunity in pl...
Recent NSTX high power divertor experiments have shown significant and recurring benefits of solid l...
Liquid metal walls have the potential to solve first-wall problems for fusion reactors, such as heat...
A model is formulated to make a first estimate of the maximum tolerable power of liquid lithium dive...
In this work, a conceptual design for a pre-filled liquid lithium divertor target for the National S...
AbstractIn this work, a conceptual design for a pre-filled liquid lithium divertor target for the Na...
The Liquid Lithium Divertor (LLD) on NSTX will be the first test of a fully-toroidal liquid lithium ...
Developing a reactor compatible divertor has been identified as a particularly challenging technolog...
Liquid metal plasma-facing components (PFCs) provide numerous potential advantages over solid-materi...
To develop realistic liquid lithium divertors for future fusion reactors, this paper aims to improve...
Models and experimental data relevant to the work presented in "Conceptual design of a Pre-Loaded L...
The use of low atomic number liquid metals has been shown to have the potential to solve many of the...
The implementation of the liquid Lithium Divertor (LLD) in NSTX presented a unique opportunity in pl...
Recent NSTX high power divertor experiments have shown significant and recurring benefits of solid l...
Liquid metal walls have the potential to solve first-wall problems for fusion reactors, such as heat...
A model is formulated to make a first estimate of the maximum tolerable power of liquid lithium dive...