搜索

x

留言板

尊敬的读者、作者、审稿人, 关于本刊的投稿、审稿、编辑和出版的任何问题, 您可以本页添加留言。我们将尽快给您答复。谢谢您的支持!

姓名
邮箱
手机号码
标题
留言内容
验证码

激光聚变冲击点火物理特性研究

袁强 胡东霞 张鑫 赵军普 胡思得 黄文会 魏晓峰

引用本文:
Citation:

激光聚变冲击点火物理特性研究

袁强, 胡东霞, 张鑫, 赵军普, 胡思得, 黄文会, 魏晓峰

Study on the mechanism of shock ignition in laser fusion

Yuan Qiang, Hu Dong-Xia, Zhang Xin, Zhao Jun-Pu, Hu Si-De, Huang Wen-Hui, Wei Xiao-Feng
PDF
导出引用
  • 冲击点火是一种新型的惯性约束聚变点火方案,该点火方案具有低点火能量阈值、高增益和较好的流体力学稳定性等优点.本文针对冲击点火的物理特性进行理论分析和数值模拟.首先以一维平板模型对冲击波碰撞的物理过程进行理论研究和分析;然后通过辐射流体力学数值模拟对冲击点火的物理特性进行研究,验证理论分析结果,并考察冲击加载时间对点火的影响.
    As a novel method to assemble and ignite thermonuclear fuel, shock ignition offers several significant advantages, including low ignition threshold, high gain, and good hydrodynamic stability. In this paper, the mechanism of shock ignition is analyzed theoretically and simulated numerically. First, using one-dimensional planer model, the principles of shock collision in shock ignition are analyzed. Then simulations are performed to study the mechanism of the shock ignition scheme. The simulation results are compared with the theoretically analysis, and the robustness of the ignition scheme in terms of shock launching time is studied.
    • 基金项目: 高温高密度等离子体物理国防科技重点实验室基金(批准号:9140C680101)资助的课题.
    [1]

    Kidder R E 1998 SPIE 3343 10

    [2]

    Basov N G 1993 Quantum Electron. 23 262

    [3]

    Pavlovskii A I 1991 Soviet Phys. Uspekhi 34 429

    [4]

    Wang G C 1987 Chinese J. Laser 14 641

    [5]

    Nuckolls J O, Wood L O, Thiessen A L,Zimmerman G E 1972 Nature 239 139

    [6]

    Lindl J 1995 Phys. Plasmas 2 3933

    [7]

    Tabak M, Hammer J, Glinsky M E, Kruer W L, Wilks S C, Woodworth J, Campbell E M, Perry M D, Mason R J 1994 Phys. Plasmas 1 1626

    [8]

    Kodama R, Shiraga H, Shigemori K, Toyama Y, Fujioka S, Azechi H, Fujita H, Habara H, Hall T, Izawa Y, Jitsuno T, Kitagawa Y, Krushelnick K M, Lancaster K L, Mima K, Nagai K, Nakai M, Nishimura H, Norimatsu T, Norreys P A, Sakabe S, Tanaka K A, Youssef A, Zepf M, Yamanaka T 2002 Nature 418 933

    [9]

    Zhang J T, He B, He X T, Chang T Q, Xu L B 2001 Acta Phys. Sin. 50 921 (in Chinese) [张家泰、何 斌、贺贤土、常铁强、许林宝 2001 物理学报 50 921]

    [10]

    Liu Z J, Zheng C Y, Cao L H, Li B, Zhu S P 2006 Acta Phys. Sin. 55 304 (in Chinese) [刘占军、郑春阳、曹莉华、李 斌、朱少平 2006 物理学报 55 304]

    [11]

    Betti R, Zhou C D, Anderson K S, Perkins L J, Theobald W, Solodov A A 2007 Phys. Rev. Lett. 98 155001

    [12]

    Ribeyre X, Schurtz G, Lafon M, Galera S, Weber S 2009 Plasma Phys. Contr. F 51 15013

    [13]

    Perkins L J, Betti R, Lafortune K N, Williams W H 2009 Phys. Rev. Lett. 103 45004

    [14]

    Atzeni S, Davies J R, Hallo L, Honrubia J J, Maire P H, Olazabal-Loume M, Feugeas J L, Ribeyre X, Schiavi A, Schurtz G, Breil J, Nicolai P 2009 Nucl. Fusion 49 55008

    [15]

    Schmitt A J, Bates J W, Obenschain S R, Zalesak S T, Fyfe D E, Betti R 2009 Fusion Sci. Technol. 56 377

    [16]

    Ribeyre X, Lafon M, Schurtz G, Olazabal-Loume M, Breil J, Galera S, Weber S 2009 Plasma Phys. Contr. F 51 124030

    [17]

    Theobald W, Anderson K S, Betti R, Craxton R S, Delettrez J A, Frenje J A, Glebov V Y, Gotchev O V, Kelly J H, Li C K, Mackinnon A J, Marshall F J, Mccrory R L, Meyerhofer D D, Myatt J F, Norreys P A, Nilson P M, Patel P K, Petrasso R D, Radha P B, Ren C, Sangster T C, Seka W, Smalyuk V A, Solodov A A, Stephens R B, Stoeckl C, Yaakobi B 2009 Plasma Phys. Contr. F 51 124012

    [18]

    Atzeni S 2009 Plasma Phys. Contr. F 51 124014

    [19]

    Theobald W, Betti R, Stoeckl C, Anderson K S, Delettrez J A, Glebov V Y, Goncharov V N, Marshall F J, Maywar D N, Mccrory R L, Meyerhofer D D, Radha P B, Sangster T C, Seka W, Shvarts D, Smalyuk V A, Solodov A A, Yaakobi B, Zhou C D, Frenje J A, Li C K, Seguin F H, Petrasso R D, Perkins L J 2008 Phys. Plasmas 15 56301

    [20]

    Mccrory R L, Meyerhofer D D, Betti R, Craxton R S, Delettrez J A, Edgell D H, Glebov V Y, Goncharov V N, Harding D R, Jacobs-Perkins D W, Knauer J P, Marshall F J, Mckenty P W, Radha P B, Regan S P, Sangster T C, Seka W, Short R W, Skupsky S, Smalyuk V A, Soures J M, Stoeckl C, Yaakobi B, Shvarts D, Frenje J A, Li C K, Petrasso R D, Seguin F H 2008 Phys. Plasmas 15 55503

    [21]

    Li W X 2004 One dimensional nonsteady flow and shcok waves (BeiJing:National Defense Industry Press) p262 (in Chinese) [李维新 2004 一维不定常流与冲击波(北京:国防工业出版社)第262页]

    [22]

    Ramis R, Schmalz R, Meyer-Ter-Vehn J 1988 Comput. Phys. Commun. 49 475

    [23]

    Ramis R, Meyer-Ter-Vehn J, Ramírez J 2009 Comput. Phys. Commun. 180 977

    [24]

    Betti R, Anderson K, Knauer J, Collins T J B, Mccrory R L, Mckenty P W, Skupsky S 2005 Phys. Plasmas 12 42703

    [25]

    Anderson K, Betti R 2004 Phys. Plasmas 11 5

    [26]

    Kidder R E 1974 Nucl. Fusion 14 53

  • [1]

    Kidder R E 1998 SPIE 3343 10

    [2]

    Basov N G 1993 Quantum Electron. 23 262

    [3]

    Pavlovskii A I 1991 Soviet Phys. Uspekhi 34 429

    [4]

    Wang G C 1987 Chinese J. Laser 14 641

    [5]

    Nuckolls J O, Wood L O, Thiessen A L,Zimmerman G E 1972 Nature 239 139

    [6]

    Lindl J 1995 Phys. Plasmas 2 3933

    [7]

    Tabak M, Hammer J, Glinsky M E, Kruer W L, Wilks S C, Woodworth J, Campbell E M, Perry M D, Mason R J 1994 Phys. Plasmas 1 1626

    [8]

    Kodama R, Shiraga H, Shigemori K, Toyama Y, Fujioka S, Azechi H, Fujita H, Habara H, Hall T, Izawa Y, Jitsuno T, Kitagawa Y, Krushelnick K M, Lancaster K L, Mima K, Nagai K, Nakai M, Nishimura H, Norimatsu T, Norreys P A, Sakabe S, Tanaka K A, Youssef A, Zepf M, Yamanaka T 2002 Nature 418 933

    [9]

    Zhang J T, He B, He X T, Chang T Q, Xu L B 2001 Acta Phys. Sin. 50 921 (in Chinese) [张家泰、何 斌、贺贤土、常铁强、许林宝 2001 物理学报 50 921]

    [10]

    Liu Z J, Zheng C Y, Cao L H, Li B, Zhu S P 2006 Acta Phys. Sin. 55 304 (in Chinese) [刘占军、郑春阳、曹莉华、李 斌、朱少平 2006 物理学报 55 304]

    [11]

    Betti R, Zhou C D, Anderson K S, Perkins L J, Theobald W, Solodov A A 2007 Phys. Rev. Lett. 98 155001

    [12]

    Ribeyre X, Schurtz G, Lafon M, Galera S, Weber S 2009 Plasma Phys. Contr. F 51 15013

    [13]

    Perkins L J, Betti R, Lafortune K N, Williams W H 2009 Phys. Rev. Lett. 103 45004

    [14]

    Atzeni S, Davies J R, Hallo L, Honrubia J J, Maire P H, Olazabal-Loume M, Feugeas J L, Ribeyre X, Schiavi A, Schurtz G, Breil J, Nicolai P 2009 Nucl. Fusion 49 55008

    [15]

    Schmitt A J, Bates J W, Obenschain S R, Zalesak S T, Fyfe D E, Betti R 2009 Fusion Sci. Technol. 56 377

    [16]

    Ribeyre X, Lafon M, Schurtz G, Olazabal-Loume M, Breil J, Galera S, Weber S 2009 Plasma Phys. Contr. F 51 124030

    [17]

    Theobald W, Anderson K S, Betti R, Craxton R S, Delettrez J A, Frenje J A, Glebov V Y, Gotchev O V, Kelly J H, Li C K, Mackinnon A J, Marshall F J, Mccrory R L, Meyerhofer D D, Myatt J F, Norreys P A, Nilson P M, Patel P K, Petrasso R D, Radha P B, Ren C, Sangster T C, Seka W, Smalyuk V A, Solodov A A, Stephens R B, Stoeckl C, Yaakobi B 2009 Plasma Phys. Contr. F 51 124012

    [18]

    Atzeni S 2009 Plasma Phys. Contr. F 51 124014

    [19]

    Theobald W, Betti R, Stoeckl C, Anderson K S, Delettrez J A, Glebov V Y, Goncharov V N, Marshall F J, Maywar D N, Mccrory R L, Meyerhofer D D, Radha P B, Sangster T C, Seka W, Shvarts D, Smalyuk V A, Solodov A A, Yaakobi B, Zhou C D, Frenje J A, Li C K, Seguin F H, Petrasso R D, Perkins L J 2008 Phys. Plasmas 15 56301

    [20]

    Mccrory R L, Meyerhofer D D, Betti R, Craxton R S, Delettrez J A, Edgell D H, Glebov V Y, Goncharov V N, Harding D R, Jacobs-Perkins D W, Knauer J P, Marshall F J, Mckenty P W, Radha P B, Regan S P, Sangster T C, Seka W, Short R W, Skupsky S, Smalyuk V A, Soures J M, Stoeckl C, Yaakobi B, Shvarts D, Frenje J A, Li C K, Petrasso R D, Seguin F H 2008 Phys. Plasmas 15 55503

    [21]

    Li W X 2004 One dimensional nonsteady flow and shcok waves (BeiJing:National Defense Industry Press) p262 (in Chinese) [李维新 2004 一维不定常流与冲击波(北京:国防工业出版社)第262页]

    [22]

    Ramis R, Schmalz R, Meyer-Ter-Vehn J 1988 Comput. Phys. Commun. 49 475

    [23]

    Ramis R, Meyer-Ter-Vehn J, Ramírez J 2009 Comput. Phys. Commun. 180 977

    [24]

    Betti R, Anderson K, Knauer J, Collins T J B, Mccrory R L, Mckenty P W, Skupsky S 2005 Phys. Plasmas 12 42703

    [25]

    Anderson K, Betti R 2004 Phys. Plasmas 11 5

    [26]

    Kidder R E 1974 Nucl. Fusion 14 53

  • [1] 岳东宁, 董全力, 陈民, 赵耀, 耿盼飞, 远晓辉, 盛政明, 张杰. 强激光与近临界密度等离子体相互作用中的无碰撞静电冲击波产生. 物理学报, 2023, 72(11): 115202. doi: 10.7498/aps.72.20230271
    [2] 王小峰, 陶钢, 徐宁, 王鹏, 李召, 闻鹏. 冲击波诱导水中纳米气泡塌陷的分子动力学分析. 物理学报, 2021, 70(13): 134702. doi: 10.7498/aps.70.20210058
    [3] 肖鸿晶, 黄超, 唐玉龙, 徐剑秋. 基于时间透镜系统的冲击脉冲产生与特性研究. 物理学报, 2019, 68(15): 154201. doi: 10.7498/aps.68.20190246
    [4] 赵信文, 李欣竹, 张航, 王学军, 宋萍, 张汉钊, 康强, 黄金, 吴强. 冲击波作用下微米尺度金属颗粒群的动力学行为. 物理学报, 2017, 66(10): 104701. doi: 10.7498/aps.66.104701
    [5] 蒙世坚, 黄展常, 甯家敏, 胡青元, 叶繁, 秦义, 许泽平, 徐荣昆. Z箍缩动态黑腔冲击波辐射图像诊断. 物理学报, 2016, 65(7): 075201. doi: 10.7498/aps.65.075201
    [6] 何民卿, 董全力, 盛政明, 张杰. 激光驱动的冲击波自生磁场以及外加磁场的冲击波放大研究. 物理学报, 2015, 64(10): 105202. doi: 10.7498/aps.64.105202
    [7] 王瑞荣, 王伟, 方智恒, 安红海, 贾果, 谢志勇, 孟祥富. 激光冲击波压缩稠密铝辐射不透明度实验研究. 物理学报, 2013, 62(12): 125202. doi: 10.7498/aps.62.125202
    [8] 袁强, 魏晓峰, 张小民, 张鑫, 赵军普, 黄文会, 胡东霞. 基于受激布里渊散射能量转移的冲击点火激光技术研究. 物理学报, 2012, 61(11): 114207. doi: 10.7498/aps.61.114207
    [9] 袁强, 魏晓峰, 张小民, 张鑫, 赵军普, 黄文会, 胡东霞. 基于现役装置的冲击点火可行性概念研究. 物理学报, 2012, 61(11): 114206. doi: 10.7498/aps.61.114206
    [10] 袁强, 胡东霞, 张鑫, 赵军普, 胡思得, 黄文会, 魏晓峰. 激光脉冲参数对冲击点火的影响. 物理学报, 2011, 60(4): 045207. doi: 10.7498/aps.60.045207
    [11] 陈开果, 祝文军, 马文, 邓小良, 贺红亮, 经福谦. 冲击波在纳米金属铜中传播的分子动力学模拟. 物理学报, 2010, 59(2): 1225-1232. doi: 10.7498/aps.59.1225
    [12] 江少恩, 李三伟. 辐射温度与其驱动Al冲击波速度的定标关系研究. 物理学报, 2009, 58(12): 8440-8447. doi: 10.7498/aps.58.8440
    [13] 张 翼, 郑志远, 李玉同, 刘 峰, 李汉明, 鲁 欣, 张 杰. 两个冲击波相互碰撞的演化过程. 物理学报, 2007, 56(10): 5931-5936. doi: 10.7498/aps.56.5931
    [14] 卞保民, 杨 玲, 张 平, 纪运景, 李振华, 倪晓武. 理想气体球面强冲击波一般自模拟运动模型. 物理学报, 2006, 55(8): 4181-4187. doi: 10.7498/aps.55.4181
    [15] 卞保民, 杨 玲, 李振华, 陈 笑, 贺安之, 沈中华. 衰减球面冲击波波阵面自模拟运动特性. 物理学报, 2004, 53(3): 840-843. doi: 10.7498/aps.53.840
    [16] 江少恩, 李文洪, 孙可煦, 蒋小华, 刘永刚, 崔延莉, 陈久森, 丁永坤, 郑志坚. 神光Ⅱ上柱形黑腔辐射驱动冲击波. 物理学报, 2004, 53(10): 3424-3428. doi: 10.7498/aps.53.3424
    [17] 张杰, 王薇. 冲击波在铝靶中传播的数值模拟研究. 物理学报, 2001, 50(4): 741-747. doi: 10.7498/aps.50.741
    [18] 江少恩, 郑志坚, 李文洪, 丁耀南, 孙可煦, 刘永刚, 蒋小华. X射线辐射驱动冲击波的实验测量与分析. 物理学报, 2000, 49(1): 94-97. doi: 10.7498/aps.49.94
    [19] 杨维纮, 胡希伟. 非均匀载流柱形等离子体中的磁流体力学波. 物理学报, 1996, 45(4): 595-600. doi: 10.7498/aps.45.595
    [20] 顾援, 倪元龙, 王勇刚, 毛楚生, 吴逢春, 吴江, 朱俭, 万炳根. 激光驱动高压冲击波的实验观察. 物理学报, 1988, 37(10): 1690-1693. doi: 10.7498/aps.37.1690
计量
  • 文章访问数:  8965
  • PDF下载量:  1013
  • 被引次数: 0
出版历程
  • 收稿日期:  2010-04-06
  • 修回日期:  2010-04-30
  • 刊出日期:  2011-01-15

/

返回文章
返回