Finite element method used for calculation of the distortion coefficient and associated uncertainty of a PTB 1GPa pressure balance - EUROMET project 463

被引:23
作者
Sabuga, W
Molinar, G
Buonanno, G
Esward, T
Legras, JC
Yagmur, L
机构
[1] Phys Tech Bundesanstalt, D-3300 Braunschweig, Germany
[2] CNR, IMGC, I-00185 Rome, Italy
[3] Univ Cassino, I-03043 Cassino, Italy
[4] Natl Phys Lab, Teddington TW11 0LW, Middx, England
[5] Lab Natl Metrol & Essais, Paris, France
[6] Ulusal Metrol Enstitusu, Gebze, Turkey
关键词
D O I
10.1088/0026-1394/43/3/015
中图分类号
TH7 [仪器、仪表];
学科分类号
0804 ; 080401 ; 081102 ;
摘要
The national metrology institutes and their partners participating in EUROMET Project 463 developed finite element methods (FEM) for calculation of the pressure distortion coefficients, including their uncertainties, of pressure balances operated at pressures up to 1 GPa and applied them to a PTB 1 GPa piston-cylinder assembly. The methods use axisymmetric models developed and analysed on the basis of the experimental data including the elastic properties of the piston-cylinder materials, pressure-dependent density and viscosity of the pressure-transmitting fluid, dimensions of the piston and cylinder and the piston-cylinder clearance as well as the conditions at the piston-cylinder boundaries. Results such as pressure distributions and radial distortions along the piston-cylinder engagement length, pressure distortion coefficients and their uncertainties as well as piston fall rates dependent on pressure are presented for the free deformation (FD) and the controlled-clearance operating modes of the assembly. The theoretical results are verified by comparing them with the distortion coefficients determined by an experimental method and with the jacket pressure distortion coefficients. The participants' results demonstrate good agreement of the distortion coefficients up to 1 GPa but rather large differences in the uncertainties of the distortion coefficients as well as in the pressure distributions, gap profiles and piston fall rate at maximum pressure. The FEM distortion coefficients obtained for the real piston-cylinder gap profile are in good agreement with the coefficients determined by the experimental method; the FEM values obtained for the ideal gap agree well with the distortion coefficients furnished by the simplified theory. For the real gap model, the uncertainty of the gap geometry is the main uncertainty source. The total standard uncertainties of the controlled-clearance distortion coefficient obtained by different methods lie between (0.078 and 0.17) x 10(-6) MPa-1 at 400 MPa and between (0.04 and 0.098) x 10(-6) MPa-1 at 1 GPa.
引用
收藏
页码:311 / 325
页数:15
相关论文
共 20 条
[1]  
A.S.M.E, 1953, VISC DENS 40 LUBR FL
[2]   Simplified analytical methods for evaluating the pressure distortion coefficient of controlled-clearance pressure balances [J].
Buonanno, G ;
Dell'Isola, M ;
Frattolillo, A .
HIGH TEMPERATURES-HIGH PRESSURES, 2003, 35-6 (01) :81-91
[3]   A finite element method to evaluate the pressure distortion coefficient in pressure balances [J].
Buonanno, G ;
Dell'Isola, M ;
Iagulli, G ;
Molinar, G .
HIGH TEMPERATURES-HIGH PRESSURES, 1999, 31 (02) :131-143
[4]   Finite element analysis of pressure distortion coefficient and piston fall rate in a simple pressure balance [J].
Buonanno, G ;
Dell'Isola, M ;
Maghenzani, R .
METROLOGIA, 1999, 36 (06) :579-584
[5]  
Dadson R S., 1965, Metrologia, V1, P55, DOI [10.1088/0026-1394/1/2/003, DOI 10.1088/0026-1394/1/2/003]
[6]  
DADSON RS, 1982, PRESSURE BALANCE THE
[7]  
DELAJOUD P, 1989, BIPM MONOGRAPHIE, V891, P114
[8]  
Esward T.J., 2002, 85 NPL CMAM
[9]  
FIORI V, 2000, STUDY FLUID FLOW PRE
[10]  
Jager J., 2001, P 2 INT PRESS METR W, P15