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天然气加热方式的比较及设备选型 被引量:1
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作者 祝益波 《石化技术》 CAS 2016年第2期22-22,共1页
通过对几种常用的天然气加热方式的比较与分析,对天然气加热设备的选型进行了探讨。
关键词 冰堵 焦耳·汤姆逊系数 天然气加热 设备选型
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Effect of Spatial Dimension and External Potential on Joule-Thomson Coefficients of Ideal Bose Gases
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作者 袁都奇 王参军 《Communications in Theoretical Physics》 SCIE CAS CSCD 2010年第4期669-672,共4页
Based on the form of the n-dimensional generic power-law potential, the state equation and the heat capacity, the analytical expressions of the Joule-Thomson coefficient (3TC) for an ideal Bose gas are derived in n-... Based on the form of the n-dimensional generic power-law potential, the state equation and the heat capacity, the analytical expressions of the Joule-Thomson coefficient (3TC) for an ideal Bose gas are derived in n-dimensional potential. The effect of the spatial dimension and the external potential on the JTC are discussed, respectively. These results show that: (i) For the free ideal Bose gas, when n/s ≤ 2 (n is the spatial dimension, s is the momentum index in the relation between the energy and the momentum), and T → Tc (Tc is the critical temperature), the JTC can obviously improve by means of changing the throttle valve's shape and decreasing the spatial dimension of gases. (ii) For the inhomogeneous external potential, the discriminant △= [1 - y∏^ni=1(kT/εi)^1/tiГ(1/ti+1)] (k is the Boltzmann Constant, T is the thermodynamic temperature, ε is the external field's energy), is obtained. The potential makes the JTC increase when △ 〉 0, on the contrary, it makes the JTC decrease when A 〈△. (iii) In the homogenous strong external potential, the JTC gets the maximum on the condition of kTεi〈〈1. 展开更多
关键词 ideal Bose gases Joule-Thomson coefficient spatial dimension external potential field
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