A cylinder is fitted with a leak-proof piston and calibrated so that the volume within the...
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A cylinder is fitted with a leak-proof piston and calibrated so that the volume within the cylinder can be read from a scale for any position of the piston. The cylinder is immersed in a constant temperature bath maintained at 160°F, which is the reservoir temperature of the Sabine Gas Field. Forty-five thousand cc of the gas, measured at 14.7 psia and 60°F, is charged into the cylinder. The volume is decreased in the steps indicated as follows, and the corresponding pressures are read with a dead weight tester after temperature equilibrium is reached. V (cc) 2529 964 453 265 180 156.5 142.2 Р (psia) 300 750 1500 2500 4000 5000 6000 (a) Calculate and place in tabular form the gas deviation factors and the ideal volumes that the initial 45,000 cc occupies at 160°F and at each pressure. (b) Calculate the gas volume factors at each pressure, in units of ft'/SCF. (c) Plot the deviation factor and the gas volume factors calculated in part (b) versus pres- sure on the same graph. A cylinder is fitted with a leak-proof piston and calibrated so that the volume within the cylinder can be read from a scale for any position of the piston. The cylinder is immersed in a constant temperature bath maintained at 160°F, which is the reservoir temperature of the Sabine Gas Field. Forty-five thousand cc of the gas, measured at 14.7 psia and 60°F, is charged into the cylinder. The volume is decreased in the steps indicated as follows, and the corresponding pressures are read with a dead weight tester after temperature equilibrium is reached. V (cc) 2529 964 453 265 180 156.5 142.2 Р (psia) 300 750 1500 2500 4000 5000 6000 (a) Calculate and place in tabular form the gas deviation factors and the ideal volumes that the initial 45,000 cc occupies at 160°F and at each pressure. (b) Calculate the gas volume factors at each pressure, in units of ft'/SCF. (c) Plot the deviation factor and the gas volume factors calculated in part (b) versus pres- sure on the same graph. A cylinder is fitted with a leak-proof piston and calibrated so that the volume within the cylinder can be read from a scale for any position of the piston. The cylinder is immersed in a constant temperature bath maintained at 160°F, which is the reservoir temperature of the Sabine Gas Field. Forty-five thousand cc of the gas, measured at 14.7 psia and 60°F, is charged into the cylinder. The volume is decreased in the steps indicated as follows, and the corresponding pressures are read with a dead weight tester after temperature equilibrium is reached. V (cc) 2529 964 453 265 180 156.5 142.2 Р (psia) 300 750 1500 2500 4000 5000 6000 (a) Calculate and place in tabular form the gas deviation factors and the ideal volumes that the initial 45,000 cc occupies at 160°F and at each pressure. (b) Calculate the gas volume factors at each pressure, in units of ft'/SCF. (c) Plot the deviation factor and the gas volume factors calculated in part (b) versus pres- sure on the same graph. A cylinder is fitted with a leak-proof piston and calibrated so that the volume within the cylinder can be read from a scale for any position of the piston. The cylinder is immersed in a constant temperature bath maintained at 160°F, which is the reservoir temperature of the Sabine Gas Field. Forty-five thousand cc of the gas, measured at 14.7 psia and 60°F, is charged into the cylinder. The volume is decreased in the steps indicated as follows, and the corresponding pressures are read with a dead weight tester after temperature equilibrium is reached. V (cc) 2529 964 453 265 180 156.5 142.2 Р (psia) 300 750 1500 2500 4000 5000 6000 (a) Calculate and place in tabular form the gas deviation factors and the ideal volumes that the initial 45,000 cc occupies at 160°F and at each pressure. (b) Calculate the gas volume factors at each pressure, in units of ft'/SCF. (c) Plot the deviation factor and the gas volume factors calculated in part (b) versus pres- sure on the same graph.
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SOLUTION a b c Thank you The number which is a measure of the amount the gas deviates fro... View the full answer
Related Book For
Fundamentals of Thermodynamics
ISBN: 978-0471152323
6th edition
Authors: Richard E. Sonntag, Claus Borgnakke, Gordon J. Van Wylen
Posted Date:
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