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首页> 外文期刊>Fusion Science and Technology >PARAMETER STUDY OF AN INERTIAL FUSION ENERGY CHAMBER RESPONSE USING THE 1-D BUCKY RADIATION HYDRODYNAMICS CODE
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PARAMETER STUDY OF AN INERTIAL FUSION ENERGY CHAMBER RESPONSE USING THE 1-D BUCKY RADIATION HYDRODYNAMICS CODE

机译:一维巴克辐射热力学代码对惰性熔体能量腔响应的参数研究

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摘要

A parameter study of a proposed inertial fusion energy chamber is performed. A baseline case of a 6-m-radius chamber filled with 6 μg/cm~3 of xenon is studied in detail. The maximum first-wall temperature is shown to be 1136 K with an overpressure of 5.83 × 10~(-3) MPa. A parameter sweep is conducted for the chamber by adjusting the first-wall radius from 4 to 14 m, changing the gas density and changing the fill gas from xenon to argon. The results set limits on the first-wall radius for different gases and densities. Analytic fits to simulation results allow their use in overall engine design trade-off studies.
机译:对建议的惯性聚变能室进行了参数研究。详细研究了一个充满6μg/ cm〜3氙气的6 m半径腔室的基线情况。最高第一壁温度为1136 K,过压为5.83×10〜(-3)MPa。通过将第一壁半径从4调整到14 m,更改气体密度并将填充气体从氙气更改为氩气,对腔室进行参数扫描。结果为不同气体和密度的第一壁半径设置了限制。对模拟结果的解析拟合可将其用于整体发动机设计的权衡研究中。

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