8-1 A spherical gas tank has an inner radius of r = 1.5 m. If it is subjected to an internal pressure of p = 300 kPa, determine its required thickness if the maximum normal stress is not to exceed 12 MPa.
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- Which of the following statements about HGL and EGL is correct? O For any pipe will a constant wall thickness, the slopes of EGL and HGL will be constant. O If the EGL falls below the pipe, then pressure head is negative, indicating a potential location of cavitation. O When a flow passage decreases in diameter, the distance between the EGL and HGL will increase. O When a pipe discharges into the atmosphere, both HGL and EGL will coincide with the system because pressure head is zero at these points.1. When the force of 3 mN is applied to the plate the line AB in the liquid remains straight and has a velocity of 0.6x10-3 m/s. If the surface area of the plate in contact with the liquid is 0.6 m2, determine the approximate viscosity of the liquid. В B' 3 mN 4 mm AShow short and complete solution.
- SHOW SOLUTIONA spherical pressured tank of radius 1.5m is being designed by a civil engineer to be a storage of natural gas from the Malampaya gas field. The gas it will contain is subject to a change in temperature of 295 °C with an internal pressure of 20 MPa. The final design of the tank gives a 9 mm wall thickness with a Poisson's ratio of 0.28. Use a = 11.7x10 /°C and E = 200 GPa. %3D a. Determine the tangential/longitudinal stress. b. Change in radius.A spherical pressure vessel has a 1.6 ft. inner radius and 0.14 in. wall thickness. If the working tensile stress of the material is 6,135 psi, determine the maximum allowable internal pressure in psi.
- vertical axis circular cylindrical storage tank, fabricated from stainless steel has a total height of 8meters and a radius of 1.5meters and is filled to a depth of h - 6meters of wine. An inert gas occupies the 2m height ho, above the free liquid surface and is pressurized to a value of 96kPa. The working stress in the steel is 58Mpa. The specific weight of the wine 9.8kN/m^3 1. What is the required wall thickness of the tank?8.1 A spherical shell with 70-in. outer diameter and 67-in. inner diameter contains helium at a pressure of 1200 psi. Compute the stress in the shell. 8.2 A spherical pressure vessel has a 1.5-ft inner radius and 3/16-in. wall thickness. If the working tensile stress of the material is 6000 psi, determine the maximum8.2 A spherical pressure vessel has a 1.5-ft inner radius and 3/16-in. wall thickness. If the working tensile stress of the material is 6000 psi, determine the maximum allowable internal pressure.