2. A gas with the following composition. The reservoir conditions are 1,700 psia and 180 °F. Determine: (a) Specific gravity (b) Density at standard conditions (c) Formation volume factor at reservoir conditions (d) Density at reservoir conditions (e) Gas compressibility. Composition (mole percentage) Component Methane 65.100 5.100 0.920 Ethane Propane Isobutane Normal butane 0.310 Isopentane Normal pentane 0.102 0.086 0.074 Hexane 0.032 Heptane plus Hydrogen Sulfide Carbon Dioxide 0.480 16.320 10.211 Nitrogen 1.265 100 C7+: MW 103 lb/lb-mole Yg 0.7

Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Chapter1: Introduction
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2. A gas with the following composition. The reservoir conditions are 1,700 psia and
180 °F. Determine:
(a) Specific gravity
(b) Density at standard conditions
(c) Formation volume factor at reservoir conditions
(d) Density at reservoir conditions
(e) Gas compressibility.
Component
Composition
(mole percentage)
Methane
Ethane
65.100
5.100
Propane
Isobutane
Normal butane
0.920
0.310
0.102
Isopentane
Normal pentane
0.086
0.074
Hexane
0.032
0.480
Heptane plus
Hydrogen Sulfide
Carbon Dioxide
16.320
10.211
1.265
Nitrogen
100
C7+
MW 103 lb/lb-mole
Y8 0.7
Transcribed Image Text:2. A gas with the following composition. The reservoir conditions are 1,700 psia and 180 °F. Determine: (a) Specific gravity (b) Density at standard conditions (c) Formation volume factor at reservoir conditions (d) Density at reservoir conditions (e) Gas compressibility. Component Composition (mole percentage) Methane Ethane 65.100 5.100 Propane Isobutane Normal butane 0.920 0.310 0.102 Isopentane Normal pentane 0.086 0.074 Hexane 0.032 0.480 Heptane plus Hydrogen Sulfide Carbon Dioxide 16.320 10.211 1.265 Nitrogen 100 C7+ MW 103 lb/lb-mole Y8 0.7
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