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(a)
Interpretation:
The pipe dimensions are to be determined for flow of gas through pipeline.
Concept Introduction:
The fundamental concept of mass conservation is used to describe the fluid flow and determine the pipe dimensions. Here the material transporting through pipeline is natural gas and obeys the ideal-gas law.
(a)
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Answer to Problem 8.1P
The cross-sectional radius of pipe is
Explanation of Solution
Given information:
The operating pressure of natural gas is
The operating temperature of natural gas is
Operational flow rate of natural gas is
Say, reference pressure of gas flow is
Calculation:
The actual flow rate of gas with respect to reference conditions is given by the following equation.
Here, the volumetric flow rate is given by
Substitute the value of known variables in the above expression.
Thus, the actual flow rate of natural gas with respect to given conditions is
Furthermore, the volumetric flow rate of fluids is given by the following equation.
Here,
Hence, the cross-sectional area is calculated as below.
The cross-section of pipeline is circular in appearance; hence, the area is that of a circle as shown below.
Here,
By simplifying the above equation, radius of pipeline can be simply calculated as below.
From the data available on dimensions, specifications and weights of schedule-40 steel pipes it is observed that the closest standard size available is 10 inch, which is also agreeable with the answer obtained above. Therefore, the inner radius of pipeline is
(b)
Interpretation:
The pipe dimensions are to be determined for transporting slurry into a centrifuge separator.
Concept Introduction:
Area of pipe depends on the volumetric flow rate of material. Conversely, volumetric flow rate depends on the mass flow rate and density of the material. In case of slurries, it is significant to have prior information about the mass fraction solid particles and solvents (such as water) to determine the physical properties.
(b)
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Answer to Problem 8.1P
The radius of pipe under given condition is
Explanation of Solution
Given information:
The slurry transported through the pipeline contains solid crystals of p-nitrophenol and water. Let the total mass of slurry pushed into the centrifuge is
Mass of solid in slurry is
Density of p-Nitrophenol
Density of water
Mass flow rate of p-Nitrophenol
Calculation:
Mass flow rate of slurry
Here,
Mass flow rate of water
Volumetric flow rate
Volumetric flow rate
Therefore, the total volumetric mass flow rate of slurry
Thus, the actual flow rate of slurry is
Assume that the slurry velocity is
The, the area of pipeline can be obtained by the following relationship.
Here,
The radius
The radius of pipe to carry slurry of p-Nitrophenol and water under given condition is
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Chapter 8 Solutions
Unit Operations Of Chemical Engineering
- A burning dump emits an estimated 1.5 kg/min of nitrogen dioxide (NO2 ). On a partlycloudy morning with a 2.5 m/s wind and temperature of 18°C, what is the concentrationof NO2 at a distance of 3.0 km directly downwind of the dump? Does this exceed theshort-term exposure limit for NO2 ? State your assumptions.arrow_forwardFor each set of measurements below, calculate the Grubbs statistic, G, look up the appropriate critical value of G from Table 4.6, and determine whether the Grubbs test supports discarding the first value in the list at the 95% level of confidence. a) 106.0, 165.0, 167.5, 170.5, 163.5, 170.7 (Geale -2.028; Gerit 1.822; yes, the Grubbs test supports discarding 106.0) b) 214.8, 263.0, 229.9, 236.9, 221.8, 230.8, 241.1 c) 357.0, 309.3, 304.9, 314.8, 305.8, 295.3, 284.7, 299.5 TABLE 4-6 Critical values of G for rejection of outlier Number of observations otsulsve os Tenos nagsibarito G to buboxy (95% confidence) 456 1.463 1.672 1.822 7 1.938 8 upa 2.032 9 2.110 10 2.176 - 1 12 15 20 11 2.234 2.285 2.409 2.557arrow_forward#1 A irreversible isothermal gas-phase isomerization reaction is given as: AB. This reaction is conducted in a 400L batch reactor and 100 mol of A (NAD = 100 mol) is charged into this reactor. The rate of reaction is determined as a function of the conversion of reactant A and the results are given below. The temperature was constant at 500K and the total pressure was constant at 830 kPa. The entering number of moles of species A is 100 mol. Calculate the time necessary to achieve 80% conversion. 0 0.1 0.2 0.4 -TA (mol/m³.s) 0.45 0.37 0.3 0.195 0.6 0.113 0.7 0.079 0.8 0.05arrow_forward
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- Question: McDaniel Shipyards wants to develop control charts to assess the quality of its steel plate. They take ten sheets of 1" steel plate and compute the number of cosmetic flaws on eac... McDaniel Shipyards wants to develop control charts to assess the quality of its steel plate. They take ten sheets of 1" steel plate and compute the number of cosmetic flaws on each roll. Each sheet is 20' by 100'. Based on the following data, develop limits for the control chart, plot the control chart, and determine whether the process is in control. Answer the following questions below. Number of flaws Sheet 1 1 2 1 = 3 2 4 0 5 1 6 5 7 0 8 2 9 10 0 2 PLEASE WRTIE NEATLY AND EXPLAIN! (: Thanks 1. Calculate the standard deviation of control chart. (a) the standard deviation = 1.0832 (b) the standard deviation = 1.1832 (c) the standard deviation = 1.4 (d) the standard deviation = 1.04 27. 2. Using +- 3 olimits, calculate the LCL and UCL for these data. 3.549; LCL = -3.549 (a) UCL (b) UCL 3.549;…arrow_forwardDerive an expression for incompressible flow in a horizontal pipe of constant diameter andwithout fittings or valves which shows that the pressure is a linear function of pipe length. Whatother assumptions are required for this result? Is this result valid for non-horizontal pipes? Howwill the presence of fittings, valves and other hardware affect this result?arrow_forwardEthylene glycol liquid is used as an antifreeze in many applications. If it is stored in a vessel at a pressure of at 150 psig flows through a ¾ inch-diameter hole to atmospheric pressure. Estimate the discharge rate if the ambient pressure is 1 atm. For ethylene glycol at 77°F, the specific gravity is 1.15 and the viscosity is 25 cP. The molecular weight is 62.07.arrow_forward
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