The Experts below are selected from a list of 1434 Experts worldwide ranked by ideXlab platform
Kenneth R. Hall - One of the best experts on this subject based on the ideXlab platform.
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Thermodynamic characterization of deepwater natural gas mixtures with Heavy Hydrocarbon Content at high pressures
The Journal of Chemical Thermodynamics, 2015Co-Authors: Mert Atilhan, Santiago Aparicio, Saquib Ejaz, Jingjun Zhou, Mohammed J. Al-marri, James Holste, Kenneth R. HallAbstract:Abstract This paper includes high-accuracy density measurements and phase envelopes for deepwater natural gas mixtures. Mixtures primarily consist of (0.88 and 0.94) mole fraction methane and both mixtures includes Heavy components (C 6+ ) more than 0.002 mole fraction. Experimental density and phase envelope data for deep and ultra-deep reservoir mixtures are scarce in literature and high accuracy measurements for such parameters for such natural gas-like mixtures are essential to validate the benchmark equations for custody transfer such as AGA8-DC92 and GERG-2008 equation of states (EOS). Thus, in this paper we report density and phase envelope experimental data via compact single-sinker magnetic suspension densimeter and isochoric apparatuses. Such data help gas industry to avoid retrograde condensation in natural gas pipelines.
Mert Atilhan - One of the best experts on this subject based on the ideXlab platform.
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Thermodynamic characterization of deepwater natural gas mixtures with Heavy Hydrocarbon Content at high pressures
The Journal of Chemical Thermodynamics, 2015Co-Authors: Mert Atilhan, Santiago Aparicio, Saquib Ejaz, Jingjun Zhou, Mohammed J. Al-marri, James Holste, Kenneth R. HallAbstract:Abstract This paper includes high-accuracy density measurements and phase envelopes for deepwater natural gas mixtures. Mixtures primarily consist of (0.88 and 0.94) mole fraction methane and both mixtures includes Heavy components (C 6+ ) more than 0.002 mole fraction. Experimental density and phase envelope data for deep and ultra-deep reservoir mixtures are scarce in literature and high accuracy measurements for such parameters for such natural gas-like mixtures are essential to validate the benchmark equations for custody transfer such as AGA8-DC92 and GERG-2008 equation of states (EOS). Thus, in this paper we report density and phase envelope experimental data via compact single-sinker magnetic suspension densimeter and isochoric apparatuses. Such data help gas industry to avoid retrograde condensation in natural gas pipelines.
Santiago Aparicio - One of the best experts on this subject based on the ideXlab platform.
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Thermodynamic characterization of deepwater natural gas mixtures with Heavy Hydrocarbon Content at high pressures
The Journal of Chemical Thermodynamics, 2015Co-Authors: Mert Atilhan, Santiago Aparicio, Saquib Ejaz, Jingjun Zhou, Mohammed J. Al-marri, James Holste, Kenneth R. HallAbstract:Abstract This paper includes high-accuracy density measurements and phase envelopes for deepwater natural gas mixtures. Mixtures primarily consist of (0.88 and 0.94) mole fraction methane and both mixtures includes Heavy components (C 6+ ) more than 0.002 mole fraction. Experimental density and phase envelope data for deep and ultra-deep reservoir mixtures are scarce in literature and high accuracy measurements for such parameters for such natural gas-like mixtures are essential to validate the benchmark equations for custody transfer such as AGA8-DC92 and GERG-2008 equation of states (EOS). Thus, in this paper we report density and phase envelope experimental data via compact single-sinker magnetic suspension densimeter and isochoric apparatuses. Such data help gas industry to avoid retrograde condensation in natural gas pipelines.
Saquib Ejaz - One of the best experts on this subject based on the ideXlab platform.
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Thermodynamic characterization of deepwater natural gas mixtures with Heavy Hydrocarbon Content at high pressures
The Journal of Chemical Thermodynamics, 2015Co-Authors: Mert Atilhan, Santiago Aparicio, Saquib Ejaz, Jingjun Zhou, Mohammed J. Al-marri, James Holste, Kenneth R. HallAbstract:Abstract This paper includes high-accuracy density measurements and phase envelopes for deepwater natural gas mixtures. Mixtures primarily consist of (0.88 and 0.94) mole fraction methane and both mixtures includes Heavy components (C 6+ ) more than 0.002 mole fraction. Experimental density and phase envelope data for deep and ultra-deep reservoir mixtures are scarce in literature and high accuracy measurements for such parameters for such natural gas-like mixtures are essential to validate the benchmark equations for custody transfer such as AGA8-DC92 and GERG-2008 equation of states (EOS). Thus, in this paper we report density and phase envelope experimental data via compact single-sinker magnetic suspension densimeter and isochoric apparatuses. Such data help gas industry to avoid retrograde condensation in natural gas pipelines.
Jingjun Zhou - One of the best experts on this subject based on the ideXlab platform.
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Thermodynamic characterization of deepwater natural gas mixtures with Heavy Hydrocarbon Content at high pressures
The Journal of Chemical Thermodynamics, 2015Co-Authors: Mert Atilhan, Santiago Aparicio, Saquib Ejaz, Jingjun Zhou, Mohammed J. Al-marri, James Holste, Kenneth R. HallAbstract:Abstract This paper includes high-accuracy density measurements and phase envelopes for deepwater natural gas mixtures. Mixtures primarily consist of (0.88 and 0.94) mole fraction methane and both mixtures includes Heavy components (C 6+ ) more than 0.002 mole fraction. Experimental density and phase envelope data for deep and ultra-deep reservoir mixtures are scarce in literature and high accuracy measurements for such parameters for such natural gas-like mixtures are essential to validate the benchmark equations for custody transfer such as AGA8-DC92 and GERG-2008 equation of states (EOS). Thus, in this paper we report density and phase envelope experimental data via compact single-sinker magnetic suspension densimeter and isochoric apparatuses. Such data help gas industry to avoid retrograde condensation in natural gas pipelines.