Nonadiabatic Condition on the Natural Gas Energy Custody Transfer Using Orifice Flow Meter

被引:3
|
作者
Gunawan [1 ,2 ]
Tjokronegoro, H. A. [1 ]
Leksono, E. [1 ]
Nugraha, N. [1 ]
机构
[1] Inst Teknol Bandung, Fac Ind Technol, Engn Phys Res Grp, Bandung, Indonesia
[2] Minist Trade Republ Indonesia, Dev Ctr Metrol Human Resource, Bandung, Indonesia
来源
关键词
Adiabatic and non-adiabatic condition; Orifice flow meter; Natural gas; Flow rate of energy; Internal energy; Enthalpy;
D O I
10.1007/s12647-015-0132-6
中图分类号
TH7 [仪器、仪表];
学科分类号
0804 ; 080401 ; 081102 ;
摘要
In practice of natural gas energy custody transfer using orifice flow meter, the result was calculated based solely on the measured pressure drop resulted by the orifice disk in the flow line. Therefore, the total energy that was delivered in custody transfer was calculated based on adiabatic condition, i.e., an ideal condition of the gas flow rate. Using the orifice flow meter in such condition has weakness on its accuracy. To improve its accuracy, the delivered energy using orifice flow meter system should be calculated by considering non-adiabatic condition, which was influenced by thermodynamic parameter such as compressibility factor (Z), internal energy (U), enthalpy (H) and other energy components. In this research, it has been shown that in non-adiabatic condition the flow rate of energy (Q) was not linear with the increasing of temperature of the environment. This research was started by constructing a mathematical model of energy flows under conditions of both adiabatic and non-adiabatic condition in an orifice flow meter measuring system. The calculated flow rate of energy in non-adiabatic condition was highly determined by the internal energy (U) and enthalpy (H). In the non-adiabatic condition, the calculated flow rate of energy was affected by environment temperature. This temperature influenced the internal energy (U) and enthalpy (H). The values of U and H in this measurement were not linear. The average of calculated flow rate of energy increases 0.67 Mmbtud by the increasing of 1 K of temperature. The difference of the flow rate of energy of the natural gas in non-adiabatic conditions (in the operational temperature of 298 K) was 5 % higher than in adiabatic condition.
引用
收藏
页码:77 / 84
页数:8
相关论文
共 50 条
  • [1] Nonadiabatic Condition on the Natural Gas Energy Custody Transfer Using Orifice Flow Meter
    Harijono A. Gunawan
    Edi Tjokronegoro
    Nugraha Leksono
    MAPAN, 2015, 30 : 77 - 84
  • [2] Calculating natural gas custody transfer flow measurements
    Anon
    2001, Oildom Publishing Co. of Texas Inc. (228):
  • [3] GAS-FLOW MEASUREMENT FOR CUSTODY TRANSFER WITH VORTEX METER AND PROGRAMMABLE MICROCOMPUTER
    HUTHLOFF, E
    TECHNISCHES MESSEN, 1980, 47 (04): : 125 - 130
  • [4] Sensitivity of orifice meter gas flow computations
    Ettouney, R. S.
    El-Rifai, M. A.
    JOURNAL OF PETROLEUM SCIENCE AND ENGINEERING, 2011, 80 (01) : 102 - 106
  • [5] Orifice plate meter wet gas flow performance
    Steven, Richard
    Hall, Andrew
    FLOW MEASUREMENT AND INSTRUMENTATION, 2009, 20 (4-5) : 141 - 151
  • [6] Optimizing accuracy & repeatability - Calculating natural gas custody transfer flow measurements
    Menezes, M
    PIPELINE & GAS JOURNAL, 2001, 228 (07) : 32 - 34
  • [7] The Coriolis mass flow meter as a volume meter for the custody transfer in liquid hydrocarbons logistics
    Garcia-Berrocal, A.
    Montalvo, C.
    Carmona, P.
    Blazquez, J.
    ISA TRANSACTIONS, 2019, 90 : 311 - 318
  • [8] COMPUTATIONAL MODELING OF FLOW RATE MEASUREMENTS USING AN ORIFICE FLOW METER
    Xu, YiQin
    Coxe, Daniel
    Peet, Yulia
    Lee, Taewoo
    PROCEEDINGS OF THE ASME FLUIDS ENGINEERING DIVISION SUMMER MEETING, 2018, VOL 2, 2018,
  • [9] Analysis Model for Orifice Flow Meter Correction Factor in Measuring in-Pipe Natural Gas Flow based on Numerical Simulation
    Bunyamin
    Kaprawi
    Puspitasari, Dewi
    Sugianto
    Husni, Nyayu Latifah
    3RD FORUM IN RESEARCH, SCIENCE, AND TECHNOLOGY (FIRST 2019) INTERNATIONAL CONFERENCE, 2020, 1500
  • [10] WATER FLOW METER USING NEW ORIFICE PLATE ARRANGEMENT
    Benaissa T.
    Ali N.
    International Journal of Fluid Mechanics Research, 2022, 49 (06) : 35 - 45