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范氏气体准静态开放式系统与气枪子波模拟 被引量:3
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作者 张雪阳 袁修贵 +2 位作者 朱世华 赵庆献 伍忠良 《物探化探计算技术》 CAS CSCD 2014年第4期458-461,共4页
在范氏气枪模型中,理想气体准静态开放式系统方程通常被直接应用在范氏气体条件下,从而引起模拟结果的偏差。这里详细推导了范氏气体条件下准静态开放式热力学系统方程,并结合气泡振荡方程,应用四阶Runge-Kutta方法进行子波模拟。经过... 在范氏气枪模型中,理想气体准静态开放式系统方程通常被直接应用在范氏气体条件下,从而引起模拟结果的偏差。这里详细推导了范氏气体条件下准静态开放式热力学系统方程,并结合气泡振荡方程,应用四阶Runge-Kutta方法进行子波模拟。经过与实际数据对比分析,得到比原范氏气枪模型更接近实测子波的结果。 展开更多
关键词 准静态开放热力学系统 范氏气体 气枪震源 子波模拟
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具有可变整体粘滞系数的宇宙模型(英文)
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作者 陶必修 朱家强 《贵州科学》 1997年第4期276-279,共4页
研究具有开放热力学系统内涵和可变整体粘滞系数的Friedmann宇宙模型的演化过程.获得了一类非奇异性膨胀宇宙模型,展示了不变的粒子数密度和变化的膨胀速率.
关键词 开放热力学系统 粘滞系数 宇宙模型 膨胀宇宙
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Computational Characterization of Nanosystems
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作者 Xiongzhi Zeng Wei Hu +3 位作者 Xiao Zheng Jin Zhao Zhenyu Li Jinlong Yang 《Chinese Journal of Chemical Physics》 SCIE EI CAS CSCD 2022年第1期1-15,I0062,共16页
Nanosystems play an important role in many applications.Due to their complexity,it is challenging to accurately characterize their structure and properties.An important means to reach such a goal is computational simu... Nanosystems play an important role in many applications.Due to their complexity,it is challenging to accurately characterize their structure and properties.An important means to reach such a goal is computational simulation,which is grounded on ab initio electronic structure calculations.Low scaling and accurate electronic-structure algorithms have been developed in recent years.Especially,the efficiency of hybrid density functional calculations for periodic systems has been significantly improved.With electronic structure information,simulation methods can be developed to directly obtain experimentally comparable data.For example,scanning tunneling microscopy images can be effectively simulated with advanced algorithms.When the system we are interested in is strongly coupled to environment,such as the Kondo effect,solving the hierarchical equations of motion turns out to be an effective way of computational characterization.Furthermore,the first principles simulation on the excited state dynamics rapidly emerges in recent years,and nonadiabatic molecular dynamics method plays an important role.For nanosystem involved chemical processes,such as graphene growth,multiscale simulation methods should be developed to characterize their atomic details.In this review,we review some recent progresses in methodology development for computational characterization of nanosystems.Advanced algorithms and software are essential for us to better understand of the nanoworld. 展开更多
关键词 Density functional theory Linear-scaling algorithms Open system Nonadiabatic molecular dynamics Multiscale methods
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