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Showing 1 to 7 of 7 for “"flowing liquid lithium"”.

  1. Thermal Desorption Spectroscopy Measurements of Hydrogen Retention in Flowing Liquid Lithium

    Made available in DSpace on 2017-07-06T18:55:42Z (GMT). No. of bitstreams: 3 Olczak_Wieslaw_W_MS.pdf: 1180395 bytes, checksum: 7d82ac8bfb0643dbe1d1b55c59fa21b5 (MD5) Olczak_Wieslaw_W_MS_ABS.pdf: 40741 bytes, checksum: 152e9b0d550225e9814fc7adb7710818 (MD5) license.txt: 4813 bytes, checksum: …

    uiuc Repository record for Thermal Desorption Spectroscopy Measurements of Hydrogen Retention in Flowing Liquid Lithium (opens in a new tab)

  2. Flow control and associated technologies to advance the application of TEMHD-driven liquid lithium in fusion devices

    … In order to alleviate these serious issues, liquid metal concepts are being heavily researched as alternative plasma facing components. Liquid lithium has shown the most promise, as its use in fusion devices has led to increased confinement time, less wall recycling and improved impurity …

    uiuc Repository record for Flow control and associated technologies to advance the application of TEMHD-driven liquid lithium in fusion devices (opens in a new tab)

  3. Experimental and numerical analysis of thermoelectric magnetohydrodynamic driven liquid lithium flow in open channels for fusion applications

    … material (PFM) has been widely considered, and liquid lithium, among many choices, has attracted a lot of research interests in recent years. Compared to the traditional solid plasma facing component (PFC) a liquid lithium PFC may effectively lower the erosion and thermal stress while …

    uiuc Repository record for Experimental and numerical analysis of thermoelectric magnetohydrodynamic driven liquid lithium flow in open channels for fusion applications (opens in a new tab)

  4. Whole-device modeling of HIDRA plasmas for experimental planning

    … is preparing for operations with flowing liquid lithium limiters inside the machine. The objective of these experiments is to test the operation of the limiters under steady-state conditions with a fusion-relevant plasma edge. In order to determine how to run the machine to achieve …

    uiuc Repository record for Whole-device modeling of HIDRA plasmas for experimental planning (opens in a new tab)

  5. Advanced geometries for dryout mitigation in temhd-driven liquid lithium systems

    … the damage in solid PFCs is through the use of liquid metals, specifically liquid lithium. Liquid lithium PFCs reduce erosion and thermal stress damage, prolonging device lifetime, and have been shown to enhance plasma performance, decrease edge recycling, and reduce impurities. Flowing open …

    uiuc Repository record for Advanced geometries for dryout mitigation in temhd-driven liquid lithium systems (opens in a new tab)

  6. Advancement of liquid lithium plasma-facing components for next-generation fusion devices

    … events and particle fluxes > 1 × 1023m−2s−1. Flowing liquid lithium Plasma Facing Components (PFCs) are a promising candidate for plasma exhaust. A flowing PFC presents a constantly refreshing face to the plasma greatly reducing the erosion and sputtering of the solid substrate below whilst …

    uiuc Repository record for Advancement of liquid lithium plasma-facing components for next-generation fusion devices (opens in a new tab)

  7. Experimental and computational magnetic surface mapping of the HIDRA stellarator

    … plasma facing components, with a main focus on liquid lithium designs such as the FLiLi (Flowing Liquid Lithium) and the LiMIT (Liquid-Metal Infused Trenches) concepts. With the planning of new experiments to test both FLiLi and LiMIT plates on HIDRA, characterizing the magnetic configuration of …

    uiuc Repository record for Experimental and computational magnetic surface mapping of the HIDRA stellarator (opens in a new tab)