
Calculate the boundary layer thickness at both occasions and compare it?

Answer to Problem 7.3P
If the flow is turbulent throughout the flow, the
Or
Therefore, fully turbulent flow will have a boundary layer thickness which is almost
Explanation of Solution
Given information:
Laminar to turbulent transition point is given as
Velocity of the flow is equal to
For laminar flow,
The Reynolds’s number is defined as,
In above equation,
For turbulent flow,
Assume, air at
Calculation:
Calculate the distance from leading edge at critical point,
Calculate the relevant boundary layer thickness,
Find the relevant leading edge distance for turbulent flow,
Now, at
Find the effective length,
Find the effective Reynolds’s number,
Calculate the boundary layer thickness,
Now, calculate the boundary layer thickness for all turbulent flow,
Conclusion:
If the flow is turbulent throughout the flow, the
Or
Therefore, fully turbulent flow will have a boundary layer thickness which is almost
Want to see more full solutions like this?
Chapter 7 Solutions
Fluid Mechanics
- Please draw front, top and side view, in AutoCAD both of themarrow_forwardQuestion 7 A well is pumped from a confined aquifer at a constant rate of 1000 gallons per minute (gpm). The following data were collected during the pumping test: . Distance from the well to the observation well (r) = 150 feet Differential drawdown (Ah) in the observation well at this distance = 2.5 feet Aquifer properties: Transmissivity (T) = 25,000 gpd/ft • Storativity (S)- 0.0005 (dimensionless) Pumping time (t) = 5 hours Watch your units !! Using the above information, calculate the drawdown (h) in feet in the observation well at a distance of 150 feet after 5 hours of pumping. (Use the powerpoint slides for approximations for the well function W(u).arrow_forwardQu 2 Calcium oxide (CaO) a white, caustic, alkaline solid that reacts vigorously with water to produce calcium hydroxide, releasing heat in the process. It is used in various industrial applications, including cement production and water treatment. FA= 41{0 The ionic radii of the ions are: TCa2+= 0.100 nm and roz-= 0.140 nm. On the basis of this information answer the following questions: 1. What is the type of bonding that exists in CaO crystal? 2.Calculate attractive (Fs) force in [N] between a Ca'* iron and O* ifon that is separated by an equilibrium distance ro. Calculate repulsive (FR) force in [N] between a Ca?* iron and O? iron that is separated by an equilibrium distance ro. What is the magnitude of the net force FN?arrow_forward
- Show work if any equations or calculations are used.What is the main alloying element and carbon percentage of SAE-AISI 4621 Steel?arrow_forwardThe particle has a mass of 0.5 kg and is confined to move along the smooth horizontal slot due to the rotation of the arm OA. Determine the force of the rod on the particle and the normal force of the Isot on the particle when 0 = 30°. The rod is rotating with a angular velocity of ė = 2rad/s and an angular acceleration of = 3rad/s². Assume the particle only contacts one side of the slot at any instant. To check your answer, please enter the normal force of the slot onto the particle in Newtons. A * = 2 rad/s -0- 0.5 marrow_forwardSolve, use engineering economic tablesarrow_forward
- Solve, use engineering economic tablesarrow_forwardQu 2 Calcium oxide (CaO) a white, caustic, alkaline solid that reacts vigorously with water to produce calcium hydroxide, releasing heat in the process. It is used in various industrial applications, including cement production and water treatment. The ionic radii of the ions are: TCa2+= 0.100 nm and roz-= 0.140 nm. On the basis of this information answer the following questions:Number 1 through 4 I need to show all work step by step problemsarrow_forwardShow work if any equations or calculations are used. Assuming hole basis, find the shaft and hole dimensions for a sliding fit using a basic hole size of 20mm. Show the max and minimum size for both hole and shaft. Utilize the equations and tables in the appendix.arrow_forward
- Show work if any equations or calculations are used. A milling machine is equipped with a 1” diameter end mill. During a facingoperation, the spindle is running at 275 RPM. The depth of cut is 0.04” and linear feed rate is 2” per minute. Find: (a) Cutting speed, (b) Material Removal Ratearrow_forwardL1 = 5.7m, L2 = 1m, L3 = 1.2m, L4 = 1m, L5 = 0.2, L6 = 0.5m, v2 = 4.8m/s. The solutions should include, but not be limited to, the equations used tosolve the problems, the charts used to solve the problems, detailed working,choice of variables, the control volume considered, justification anddiscussion of results etc.If determining the friction factor, the use of both Moody chart and empiricalequations should be used to verify the validity of the valuearrow_forwardPlease identify the marked points of the stress-strain curve (Write on graph next to corresponding letter) Stress, σ A D (slope of line) B. C Strain, &arrow_forward
- Elements Of ElectromagneticsMechanical EngineeringISBN:9780190698614Author:Sadiku, Matthew N. O.Publisher:Oxford University PressMechanics of Materials (10th Edition)Mechanical EngineeringISBN:9780134319650Author:Russell C. HibbelerPublisher:PEARSONThermodynamics: An Engineering ApproachMechanical EngineeringISBN:9781259822674Author:Yunus A. Cengel Dr., Michael A. BolesPublisher:McGraw-Hill Education
- Control Systems EngineeringMechanical EngineeringISBN:9781118170519Author:Norman S. NisePublisher:WILEYMechanics of Materials (MindTap Course List)Mechanical EngineeringISBN:9781337093347Author:Barry J. Goodno, James M. GerePublisher:Cengage LearningEngineering Mechanics: StaticsMechanical EngineeringISBN:9781118807330Author:James L. Meriam, L. G. Kraige, J. N. BoltonPublisher:WILEY





