操作参数对DIII-D中性束离子源光束种类的影响

IF 0.3 1区 艺术学 0 MUSIC NINETEENTH CENTURY MUSIC Pub Date : 2002-11-07 DOI:10.1109/FUSION.2002.1027637
R. Hong, H. Chiu
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引用次数: 11

摘要

DIII-D聚变科学研究设施采用正离子中性束离子源进行等离子体加热和电流驱动实验。离子源电弧腔内产生的离子种类决定了注入等离子体的中性光束的组成,进而影响等离子体横截面上的能量沉积。电弧室内产生电弧放电时,电弧室的设计和操作方案是影响离子混合的主要因素。DIII-D中性束流离子源电弧腔内以氘气体进行电弧放电时,产生原子型D/sub 1//sup +/、分子型D/sub 2//sup +/和分子型D/sub 3//sup +/三种氘离子。原子离子D/sub 1//sup +/在三种离子中所占比例最高,通常约占离子产量的80%。测量结果表明,D/sub 1//sup +/和D/sub 2//sup +/随电弧功率放电的降低而略有下降。然而,当电弧功率降低时,D/sub //sup +/以更高的速率增加。改变离子种类的比例有利于或满足某些特定等离子体实验的需要。试图通过改变电弧室/离子源的工作参数来控制离子种类的混合。这些操作参数包括灯丝温度、电弧功率、光束能量和气体流量。结果表明,电弧功率是控制物种混合的主要因素。当离子源在恒定束流能量下工作时,我们不能通过改变操作窗口内的操作参数来显著改变离子种类的混合。然而,当离子源以较低的电弧功率(50 keV束流能量运行时)运行时,D/sub 3//sup +/分数增加了三倍,而当束流能量在75至80 keV之间时,离子源需要较高的电弧功率。
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Effects of operating parameters on the beam species of DIII-D neutral beam ion sources
The DIII-D fusion science research facility employs positive-ion based neutral beam ion sources for plasma heating and current drive experiments. Ion species produced inside the arc chamber of an ion source determine the composition of the neutral beams injected into the plasma and in turn affect the energy deposition along the cross section of the plasma. Arc chamber design and operation schemes are the predominant factors in the ion species mix when an arc discharge is produced inside the arc chamber. When deuterium gas is used for arc discharge three deuterium ion species (atomic D/sub 1//sup +/ and molecular D/sub 2//sup +/ and D/sub 3//sup +/) are produced in the arc chamber of the DIII-D neutral beam ion source. Atomic ion D/sub 1//sup +/ has the highest percentage of the three species, normally about 80% of ions produced. Measurements have shown that both D/sub 1//sup +/ and D/sub 2//sup +/ decrease slightly with lower arc power discharges. However, D/sub 3//sup +/ increases at a higher rate when arc power is reduced. Changing the fraction of the ion species can be beneficial to or meet the needs of some specific plasma experiments. An attempt to manipulate the ion species mix by changing the operating parameters of the arc chamber/ion source has been performed. These operating parameters include filament temperature, arc power, beam energy, and gas flow. Interesting results were obtained which show that arc power is the dominant factor for controlling the species mix. We were not able to significantly change the ion species mix by varying the operating parameters within the operation window when the ion source is operated at constant beam energy. However, the D/sub 3//sup +/ fraction increased by a factor of three when the ion source was operated at a much lower arc power (for 50 keV beam energy operation) than the higher arc power required for ion source operation with beam energy between 75 to 80 keV.
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期刊介绍: 19th-Century Music covers all aspects of Western art music between the mid-eighteenth and mid-twentieth centuries. We welcome--in no particular order--considerations of composers and compositions, styles, performance, historical watersheds, cultural formations, critical methods, musical institutions, ideas, and topics not named on this list. Our aim is to publish contributions to ongoing conversations at the leading edge of musical and multidisciplinary scholarship.
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