CIESC Journal ›› 2019, Vol. 70 ›› Issue (S2): 50-53.DOI: 10.11949/0438-1157.20190579
• Thermodynamics • Previous Articles Next Articles
Bo SONG1(),Min YANG1,Ran AN2,Xiaopo WANG1
Received:
2019-05-28
Revised:
2019-06-12
Online:
2019-09-06
Published:
2019-09-06
Contact:
Bo SONG
通讯作者:
宋渤
作者简介:
宋渤(1986—),男,博士,副教授,基金资助:
CLC Number:
Bo SONG,Min YANG,Ran AN,Xiaopo WANG. Accurate calculations of second dielectric virial coefficient of noble gases[J]. CIESC Journal, 2019, 70(S2): 50-53.
宋渤,杨敏,安然,王晓坡. 单原子气体第二介电维里系数准确计算[J]. 化工学报, 2019, 70(S2): 50-53.
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文献 | 年份 | 对象 | 不确定度 |
---|---|---|---|
[ | 2017 | He-He | 0.0023% |
[ | 2008 | Ne-Ne | 未给出 |
[ | 2010 | Ar-Ar | 0.32% |
Table 1 Ab initio interatomic potential
文献 | 年份 | 对象 | 不确定度 |
---|---|---|---|
[ | 2017 | He-He | 0.0023% |
[ | 2008 | Ne-Ne | 未给出 |
[ | 2010 | Ar-Ar | 0.32% |
文献 | 年份 | 对象 | 不确定度 |
---|---|---|---|
[ | 2011 | He-He | 0.00023% |
[ | 2003 | Ne-Ne | 未给出 |
[ | 2010 | Ar-Ar | 未给出 |
Table 2 Ab initio interatomic polarizability
文献 | 年份 | 对象 | 不确定度 |
---|---|---|---|
[ | 2011 | He-He | 0.00023% |
[ | 2003 | Ne-Ne | 未给出 |
[ | 2010 | Ar-Ar | 未给出 |
T/K | B ε/ (cm6·mol-2) | [1/1] Padé/(cm6·mol-2) | σ/ (cm6·mol-2) | σ from V/% | σ from Δα ave/% |
---|---|---|---|---|---|
25 | -0.01162 | -0.008735 | 0.000177 | 0.13 | 99.86 |
30 | -0.01179 | -0.01017 | 0.00018 | 0.13 | 99.87 |
35 | -0.01255 | -0.01153 | 0.00017 | 0.13 | 99.87 |
40 | -0.01353 | -0.01285 | 0.00017 | 0.13 | 99.87 |
45 | -0.01459 | -0.01411 | 0.00017 | 0.12 | 99.88 |
50 | -0.01568 | -0.01533 | 0.00017 | 0.12 | 99.88 |
60 | -0.01785 | -0.01764 | 0.00017 | 0.12 | 99.88 |
70 | -0.01995 | -0.01982 | 0.00017 | 0.12 | 99.88 |
80 | -0.02197 | -0.02188 | 0.00017 | 0.12 | 99.88 |
90 | -0.02391 | -0.02385 | 0.00017 | 0.12 | 99.88 |
100 | -0.02578 | -0.02573 | 0.00017 | 0.12 | 99.88 |
150 | -0.03417 | -0.03415 | 0.00017 | 0.11 | 99.89 |
200 | -0.04142 | -0.04141 | 0.00017 | 0.11 | 99.89 |
250 | -0.04787 | -0.04787 | 0.00018 | 0.11 | 99.89 |
273.15 | -0.05065 | -0.05065 | 0.00018 | 0.11 | 99.89 |
273.16 | -0.05065 | -0.05065 | 0.00018 | 0.11 | 99.89 |
293.15 | -0.05296 | -0.05296 | 0.00018 | 0.11 | 99.89 |
298.15 | -0.05353 | -0.05352 | 0.00018 | 0.11 | 99.89 |
300 | -0.05373 | -0.05373 | 0.00018 | 0.11 | 99.89 |
350 | -0.05913 | -0.05912 | 0.00018 | 0.11 | 99.89 |
400 | -0.06414 | -0.06414 | 0.00018 | 0.11 | 99.89 |
450 | -0.06884 | -0.06884 | 0.00018 | 0.11 | 99.89 |
500 | -0.07327 | -0.07326 | 0.00018 | 0.11 | 99.89 |
600 | -0.08145 | -0.08145 | 0.00018 | 0.11 | 99.89 |
? | ? | ? | ? | ? | ? |
10000 | -0.29473 | -0.29473 | 0.000199 | 0.09 | 99.91 |
Table 3 Second dielectric virial coefficient of helium-4
T/K | B ε/ (cm6·mol-2) | [1/1] Padé/(cm6·mol-2) | σ/ (cm6·mol-2) | σ from V/% | σ from Δα ave/% |
---|---|---|---|---|---|
25 | -0.01162 | -0.008735 | 0.000177 | 0.13 | 99.86 |
30 | -0.01179 | -0.01017 | 0.00018 | 0.13 | 99.87 |
35 | -0.01255 | -0.01153 | 0.00017 | 0.13 | 99.87 |
40 | -0.01353 | -0.01285 | 0.00017 | 0.13 | 99.87 |
45 | -0.01459 | -0.01411 | 0.00017 | 0.12 | 99.88 |
50 | -0.01568 | -0.01533 | 0.00017 | 0.12 | 99.88 |
60 | -0.01785 | -0.01764 | 0.00017 | 0.12 | 99.88 |
70 | -0.01995 | -0.01982 | 0.00017 | 0.12 | 99.88 |
80 | -0.02197 | -0.02188 | 0.00017 | 0.12 | 99.88 |
90 | -0.02391 | -0.02385 | 0.00017 | 0.12 | 99.88 |
100 | -0.02578 | -0.02573 | 0.00017 | 0.12 | 99.88 |
150 | -0.03417 | -0.03415 | 0.00017 | 0.11 | 99.89 |
200 | -0.04142 | -0.04141 | 0.00017 | 0.11 | 99.89 |
250 | -0.04787 | -0.04787 | 0.00018 | 0.11 | 99.89 |
273.15 | -0.05065 | -0.05065 | 0.00018 | 0.11 | 99.89 |
273.16 | -0.05065 | -0.05065 | 0.00018 | 0.11 | 99.89 |
293.15 | -0.05296 | -0.05296 | 0.00018 | 0.11 | 99.89 |
298.15 | -0.05353 | -0.05352 | 0.00018 | 0.11 | 99.89 |
300 | -0.05373 | -0.05373 | 0.00018 | 0.11 | 99.89 |
350 | -0.05913 | -0.05912 | 0.00018 | 0.11 | 99.89 |
400 | -0.06414 | -0.06414 | 0.00018 | 0.11 | 99.89 |
450 | -0.06884 | -0.06884 | 0.00018 | 0.11 | 99.89 |
500 | -0.07327 | -0.07326 | 0.00018 | 0.11 | 99.89 |
600 | -0.08145 | -0.08145 | 0.00018 | 0.11 | 99.89 |
? | ? | ? | ? | ? | ? |
10000 | -0.29473 | -0.29473 | 0.000199 | 0.09 | 99.91 |
1 | Stock M , Davis R , de Mirandés E , et al . The revision of the SI—the result of three decades of progress in metrology[J]. Metrologia, 2019, 56(2): 022001. |
2 | Newell D B , Cabiati F , Fischer J , et al . The CODATA 2017 values of h, e, k, and NA for the revision of the SI[J]. Metrologia, 2018, 55(1): L13. |
3 | Mohr P J , Newell D B , Taylor B N , et al . Data and analysis for the CODATA 2017 special fundamental constants adjustment[J]. Metrologia, 2018, 55(1): 125. |
4 | de Podesta M , Mark D F , Dymock R C , et al . Re-estimation of argon isotope ratios leading to a revised estimate of the Boltzmann constant[J]. Metrologia, 2017, 54(5): 683. |
5 | Feng X J , Zhang J T , Lin H , et al . Determination of the Boltzmann constant with cylindrical acoustic gas thermometry: new and previous results combined[J]. Metrologia, 2017, 54(5): 748. |
6 | Pitre L , Sparasci F , Risegari L , et al . New measurement of the Boltzmann constant k by acoustic thermometry of helium-4 gas[J]. Metrologia, 2017, 54(6): 856. |
7 | Gaiser C , Fellmuth B , Haft N , et al . Final determination of the Boltzmann constant by dielectric-constant gas thermometry[J]. Metrologia, 2017, 54(3): 280. |
8 | 王延儒, 马沛生 . 第二维里系数与温度的关联及Lennard-Jones和Stockmayer位能参数的推算[J]. 化工学报, 1988, 39(5): 608-623. |
Wang Y R , Ma P S . Correlations of the second virial coefficient with temperature and determinations of Lennard-Jones and Stockmayer potential parameters[J]. Journal of Chemical Industry and Engineering (China), 1988, 39(5): 608-623. | |
9 | 刘强, 冯晓娟, 段远源 . 圆柱定程干涉法确定工质的第二维里系数[J]. 化工学报, 2013, 64(8): 2711-2717. |
Liu Q , Feng X J , Duan Y Y . Determination of the second virial coefficient for working fluid using a cylindrical resonator[J]. CIESC Journal, 2013, 64(8): 2711-2717. | |
10 | 刘强, 冯晓娟, 段远源 . 气相声速测量偏差对导出热力学性质的影响[J]. 化工学报, 2014, 65(4): 1162-1168. |
Liu Q , Feng X J , Duan Y Y . Effects of measurement deviation in gaseous speed of sound on derived thermodynamic properties[J]. CIESC Journal, 2014, 65(4): 1162-1168. | |
11 | 何茂刚, 郑雄, 张颖, 等 . 三种脂肪酸甲酯音速测量与相关热物理性质推算[J]. 化工学报, 2016, 67(12): 4922-4928. |
He M G , Zheng X , Zhang Y , et al . Measurement of sound speed and derived properties of three FAMEs[J], CIESC Journal, 2016, 67(12): 4922-4928. | |
12 | Przybytek M , Cencek W , Jeziorski B , et al . Pair potential with submillikelvin uncertainties and nonadiabatic treatment of the halo state of the helium dimer[J]. Phys. Rev. Lett., 2017, 119(12): 123401. |
13 | Cencek W , Komasa J , Szalewicz K . Collision-induced dipole polarizability of helium dimer from explicitly correlated calculations[J]. J. Chem. Phys., 2011, 135(1): 014301. |
14 | Hellmann R , Bich E , Vogel E . Ab initio potential energy curve for the neon atom pair and thermophysical properties of the dilute neon gas (Ⅰ): Neon-neon interatomic potential and rovibrational spectra[J]. Mol. Phys., 2008, 106(1): 133-140. |
15 | Hättig C , Cacheiro J L , Fernández B , et al . Ab initio calculation of the refractivity and hyperpolarizability second virial coefficients of neon gas[J]. Mol. Phys., 2003, 101(13): 1983-1995. |
16 | Patkowski K , Szalewicz K . Argon pair potential at basis set and excitation limits[J]. J. Chem. Phys., 2010, 133(9): 094304. |
17 | Vogel E , Jäger B , Hellmann R , et al . Ab initio pair potential energy curve for the argon atom pair and thermophysical properties for the dilute argon gas (Ⅱ): Thermophysical properties for low-density argon[J]. Mol. Phys., 2010, 108(24): 3335-3352. |
18 | Moszynski R , Heijmen T G , Wormer P E , et al . Ab initio collision-induced polarizability, polarized and depolarized Raman spectra, and second dielectric virial coefficient of the helium diatom[J]. J. Chem. Phys., 1996, 104(18): 6997-7007. |
19 | Johnston D , Oudemans G , Cole R . Dielectric constants of imperfect gases (Ⅰ): Helium, argon, nitrogen, and methane[J]. J. Chem. Phys., 1960, 33(5): 1310-1317. |
20 | Orcutt R H , Cole R H . Dielectric constants of imperfect gases (Ⅲ): Atomic gases, hydrogen, and nitrogen[J]. J. Chem. Phys., 1967, 46(2): 697-702. |
21 | Kerr E C , Sherman R H . Dielectric polarizability of helium-3[C]// Proc. 11th Int. Conf. Low Temp. Phys. St Andrew: University of St Andrew, 1969: 236-239. |
22 | Kerr E C , Sherman R H . The molar polarizability of 3He at low temperatures and its density dependence[J]. J. Low Temp. Phys., 1970, 3(5): 451-461. |
23 | Bose T K , Cole R . Dielectric and pressure virial coefficients of imperfect gases (Ⅱ): CO2-argon mixtures[J]. J. Chem. Phys., 1970, 52(1): 140-147. |
24 | Kirouac S , Bose T K . Polarizability and dielectric properties of helium[J]. J. Chem. Phys., 1976, 64(4): 1580-1582. |
25 | Vidal D , Lallemand M . Evolution of the Clausius-Mossotti function of noble gases and nitrogen, at moderate and high density, near room temperature[J]. J. Chem. Phys., 1976, 64(11): 4293-4302. |
26 | Lallemand M , Vidal D . Variation of the polarizability of noble gases with density[J]. J. Chem. Phys., 1977, 66(11): 4776-4780. |
27 | Gugan D , Michel G . Dielectric constant gas thermometry from 4.2 to 27.1 K[J]. Metrologia, 1980, 16(4): 149. |
28 | Bose T K , Boudjarane K , Huot J , et al . Refractivity virial coefficients of C2H4 and C2H4-Ar mixtures[J]. J. Chem. Phys., 1988, 89(12): 7435-7440. |
29 | Huot J , Bose T K . Experimental determination of the dielectric virial coefficients of atomic gases as a function of temperature[J]. J. Chem. Phys., 1991, 95(4): 2683-2687. |
30 | White M , Gugan D . Direct measurements of the dielectric virial coefficients of 4He between 3 K and 18 K[J]. Metrologia, 1992, 29(1): 37. |
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