物理学报
物理學報
물이학보
2013年
4期
362-369
,共8页
陈法新*%冯华%李林波%杨建伦%周林%徐荣昆%许泽平
陳法新*%馮華%李林波%楊建倫%週林%徐榮昆%許澤平
진법신*%풍화%리림파%양건륜%주림%서영곤%허택평
动态黑腔%阴影像%箍缩速度
動態黑腔%陰影像%箍縮速度
동태흑강%음영상%고축속도
dynomic hohlraum%shadowgram%pinching speed
为了获得填充泡沫的钨丝阵动态黑腔动力学演化图像,研究钨等离子体与泡沫柱的相互作用形式,在1 MA脉冲功率装置上设计了四分幅紫外探针光(266 nm)阴影成像系统,该系统时间分辨为2.5 ns,静态空间分辨优于70μm,径向阴影图像展示了从固体丝膨胀消融到先驱等离子体与泡沫相互作用,从泡沫的箍缩到反弹膨胀的全过程.图像显示了在长约50 ns时间内丝等离子体以“雨”的形式持续与泡沫相互作用,在整个箍缩阶段并未观察到等离子体壳层结构.定量分析表明泡沫柱的最小箍缩速度为1.0×106 cm/s,最大箍缩速度为6.0×106 cm/s,在轴上滞止的直径约为1 mm.通过对数值模拟计算结果的讨论,明确了在Z箍缩等离子体状态下阴影成像结果主要反映了逆轫致吸收效应,与径向功率波形的时间关联给出了钨等离子体主体与泡沫柱相互作用时刻的图像.
為瞭穫得填充泡沫的鎢絲陣動態黑腔動力學縯化圖像,研究鎢等離子體與泡沫柱的相互作用形式,在1 MA脈遲功率裝置上設計瞭四分幅紫外探針光(266 nm)陰影成像繫統,該繫統時間分辨為2.5 ns,靜態空間分辨優于70μm,徑嚮陰影圖像展示瞭從固體絲膨脹消融到先驅等離子體與泡沫相互作用,從泡沫的箍縮到反彈膨脹的全過程.圖像顯示瞭在長約50 ns時間內絲等離子體以“雨”的形式持續與泡沫相互作用,在整箇箍縮階段併未觀察到等離子體殼層結構.定量分析錶明泡沫柱的最小箍縮速度為1.0×106 cm/s,最大箍縮速度為6.0×106 cm/s,在軸上滯止的直徑約為1 mm.通過對數值模擬計算結果的討論,明確瞭在Z箍縮等離子體狀態下陰影成像結果主要反映瞭逆軔緻吸收效應,與徑嚮功率波形的時間關聯給齣瞭鎢等離子體主體與泡沫柱相互作用時刻的圖像.
위료획득전충포말적오사진동태흑강동역학연화도상,연구오등리자체여포말주적상호작용형식,재1 MA맥충공솔장치상설계료사분폭자외탐침광(266 nm)음영성상계통,해계통시간분변위2.5 ns,정태공간분변우우70μm,경향음영도상전시료종고체사팽창소융도선구등리자체여포말상호작용,종포말적고축도반탄팽창적전과정.도상현시료재장약50 ns시간내사등리자체이“우”적형식지속여포말상호작용,재정개고축계단병미관찰도등리자체각층결구.정량분석표명포말주적최소고축속도위1.0×106 cm/s,최대고축속도위6.0×106 cm/s,재축상체지적직경약위1 mm.통과대수치모의계산결과적토론,명학료재Z고축등리자체상태하음영성상결과주요반영료역인치흡수효응,여경향공솔파형적시간관련급출료오등리자체주체여포말주상호작용시각적도상.
In order to obtain the dynamic evolution image of tungsten array for foam padding, and to research the form of interaction between tungsten plasma and foam column, a shadow imaging system of four-frame ultraviolet probe laser (266 nm) is designed on 1 MA pulse power device. The time resolution of the system is 2.5 ns, and static space resolution is superior to 70 μm. The radial shadowgraphy image reveals the whole process from the melting and expansion of solid wire to the interaction between the precursor plasma and the foam, from the pinch to rebound inflation. The image shows the continuous interaction between tungsten plasma and foam in the form of“Raining”within a time of about 50 ns, the plasma shell structure is not found in the whole period of pinch. The quantitative analysis indicates that the minimum pinching speed of the foam column is 1.0×106 cm/s, and maximum pinching speed is 6.0×106 cm/s, and the axial stagnation diameter is about 1 mm. Shadowgram mainly shows the inverse bremsstrunlung effect of interaction between laser and plasma through simulation calculating, and main tungsten plasma interacting with foam column image is shown through synchronizing radial power profile.