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天体的密使
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作者 傅承启 《大自然探索》 2003年第8期42-45,共4页
法国实证主义哲学家孔德曾经说过:“恒星的化学组成是人类绝不能得到的知识。”另一位著名的法国天文科普家弗拉马利翁在1860年也认为:“要解决行星世界上的热度问题,我们所要的数据是永远不可能得到的。”但是天文学家们只用了短短的10... 法国实证主义哲学家孔德曾经说过:“恒星的化学组成是人类绝不能得到的知识。”另一位著名的法国天文科普家弗拉马利翁在1860年也认为:“要解决行星世界上的热度问题,我们所要的数据是永远不可能得到的。”但是天文学家们只用了短短的100多年,就掌握了比恒星化学元素、行星温度多得多的宇宙天体的知识。 展开更多
关键词 电磁辐射谱 宇宙天体 黑体 天体温度 天文光学 谱线
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经典力学中的高斯定理及其应用 被引量:1
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作者 顾国锋 《桂林师范高等专科学校学报》 1995年第1期85-89,共5页
关键词 高斯定理 经典力学 引力场 球对称物体 引力自能 万有引力定律 天体温度 理想气体 静电场 临界半径
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Molecular dynamics simulations of the mechanisms of thermal conduction in methane hydrates 被引量:7
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作者 WAN LiHua LIANG DeQing +1 位作者 WU NengYou GUAN JinAn 《Science China Chemistry》 SCIE EI CAS 2012年第1期167-174,共8页
The thermal conductivity of methane hydrate is an important physical parameter affecting the processes of methane hydrate exploration,mining,gas hydrate storage and transportation as well as other applications.Equilib... The thermal conductivity of methane hydrate is an important physical parameter affecting the processes of methane hydrate exploration,mining,gas hydrate storage and transportation as well as other applications.Equilibrium molecular dynamics simulations and the Green-Kubo method have been employed for systems from fully occupied to vacant occupied sI methane hydrate in order to estimate their thermal conductivity.The estimations were carried out at temperatures from 203.15 to 263.15 K and at pressures from 3 to 100 MPa.Potential models selected for water were TIP4P,TIP4P-Ew,TIP4P/2005,TIP4P-FQ and TIP4P/Ice.The effects of varying the ratio of the host and guest molecules and the external thermobaric conditions on the thermal conductivity of methane hydrate were studied.The results indicated that the thermal conductivity of methane hydrate is essentially determined by the cage framework which constitutes the hydrate lattice and the cage framework has only slightly higher thermal conductivity in the presence of the guest molecules.Inclusion of more guest molecules in the cage improves the thermal conductivity of methane hydrate.It is also revealed that the thermal conductivity of the sI hydrate shows a similar variation with temperature.Pressure also has an effect on the thermal conductivity,particularly at higher pressures.As the pressure increases,slightly higher thermal conductivities result.Changes in density have little impact on the thermal conductivity of methane hydrate. 展开更多
关键词 methane hydrate thermal conductivity molecular dynamics simulation
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