FLUID MECHANICS FUND. (LL)-W/ACCESS
FLUID MECHANICS FUND. (LL)-W/ACCESS
4th Edition
ISBN: 9781266016042
Author: CENGEL
Publisher: MCG CUSTOM
bartleby

Videos

Textbook Question
Book Icon
Chapter 6, Problem 70P

Repeal Prob. 6-69 for the case of unequal anus-the left one being 60 cm and the right one 20 cm from the axis of rotation.

Expert Solution
Check Mark
To determine

(a)

The rotational speed of sprinkler.

Answer to Problem 70P

The rotational speed of sprinkler is 264.2rpm.

Explanation of Solution

Given information:

The volume flow rate is 10L/s, diameter of both jets is 1.2cm, angle of nozzle with vertical is 60ο.

Write the expression for mass flow rate entering the sprinkler.

  m˙=ρQ   ....... (I)

Here, density of water is ρ,volume flow rate is Q.

The diameter of both nozzle is equal,

Write the expression for volume flow rate from each nozzle.

  Q˙=Q2   ....... (II)

Write the expression for jet area.

  Ajet=π4d2   ...... (III)

Here, diameter is d

Write expression for velocity of water jet

  Vjet=Q˙Ajet........ (IV)

Here, volume flow rate from each jet is Q˙.

Write the expression for velocity in vertical component of each jet.

  (V jet)v=Vjetcosθ   ...... (V)

Here angle of nozzle with vertical is θ

Write the expression for jet left absolute velocity.

  ( V jet)L=( V L)v( V nozzel)L=( V L)vrLω   ...... (VI)

Write the expression for right absolute velocity.

  ( V jet)R=( V R)v( V nozzel)R=( V R)vrRω   ...... (VII)

Here, the distance of left nozzle from rotation point is rL angular velocity of sprinkler is ω

Write the expression for angular momentum equation for the sprinkler.

  M=rLm˙L(V jet)RrRm˙R(V jet)L   ....... (VIII)

Here, distance of left nozzle from rotation centre is rL, distance of right nozzle from rotation centre is rR, velocity of water jet to the left nozzle is (V jet)L, velocity of water jet to the left nozzle is (V jet)R,

Substitute, 0 for M,.in Equation (VIII)

  rLm˙L(V jet)LrRm˙R(V jet)R=0   ....... (IX)

Write the expression for angular velocity of sprinkler in rpm.

  N=60ω2π   ....... (X)

Calculation:

Refer to table "Properties of saturated water" to obtain the density of water as 998kg/m3.

Substitute 998kg/m3 for ρ and 10L/s for Q in Equation (I).

  m˙=(998kg/ m 3)(10L/s)=(998kg/ m 3)(10L/s× 1 m 3 /s 1000L/s )=(998kg/ m 3)(0.01 m 3/s)=9.98kg/s

Substitute 10L/s for Q in Equation (II).

  Q˙=10L/s2=5L/s×1 m 3/s1000L/s=0.005m3/s

Substitute 1.2cm for d in WEquation (III).

  Ajet=π4(1.2cm)2=π4(1.2cm× 1m 100cm)2=π4(0.012m)2=0.0001130m2

Substitute 0.005m3/s for Q˙ and 0.0001130m2 for Ajet in Equation (IV).

  Vjet=0.005 m 3/s0.0001130m2=44.209m/s

Substitute 60ο for θ and 44.209m/s for Vjet in Equation (V).

  ( V jet)v=(44.209m/s)cos60ο=22.104m/s

Substitute 22.104m/s for (VL)v and 0.6m for rL in Equation (VI).

  (V jet)L=22.104m/sω×0.6m

Substitute 22.104m/s for (VR)v and 0.2m for rR in Equation (VII).

  (V jet)R=22.104m/sω×0.2m

Substitute, 5kg/s for m˙L, 5kg/s for m˙R

  0.6m for rL, 0.2m for rR, 22.104m/sω×0.6m for (V jet)L

  22.104m/sω×0.2m for (V jet)R in Equation (IX).

  (0.6m)(5kg/s)(22.104m/sω×0.6m)(0.2m)(5kg/s)(22.104m/sω×0.2m)=0(6m)(22.104m/sω×0.6m)=(2m)(22.104m/sω×0.2m)(3)(22.104m/sω×0.6m)=(22.104m/sω×0.2m)(66.312m/sω×1.8m)=22.104m/sω×0.2m

  ω×1.6m=66.312m/s22.104m/sω=27.65m/sm×radω=27.65rad/s

Substitute 27.65rad/s for ω in Equation (X).

  N=60×27.65rad/s2π=264.2rad/s×rpmrad/s=264.2rpm

Conclusion:

The rotational speed of sprinkler is 264.2rpm.

Expert Solution
Check Mark
To determine

(b)

The net torque on sprinkler.

Answer to Problem 70P

The net torque on sprinkler is 33.2Nm.

Explanation of Solution

Given information:

The distance of left nozzle from rotation centre is 0.6m, the distance of right nozzle from rotation centre is 0.2m.

Write the expression for torque due to left nozzle.

  TL=rLm˙L(V jet)L   ....... (XI)

Here, distance from rotation centre to left nozzle is rL

Write the expression for torque due to left nozzle.

  TR=rRm˙R(V jet)R   ....... (XII)

Here, distance from rotation centre to left nozzle is rR

Write expression for net torque.

  T=TL+TR   ...... (XIII)

Calculation:

Substitute 0.6m for rL, 4.99kg/s for m˙L, 27.65rad/s for ω, rLm˙L(22.104m/sω×0.6m) for (V jet)L in Equation (XI).

  TL=(0.6m)(4.99kg/s)(22.123m/s0.6m×27.65rad/s)=(0.6m)(4.99kg/s)(5.533m/s)=16.6kgm2/s2×1Nm1kg m 2/ s 2=16.61Nm

Substitute 0.2m for rR, 4.99kg/s for m˙R, 27.63rad/s for ω and rRm˙R(22.104m/sω×0.2m) for (V jet)R in Equation (XII).

  TR=(0.2m)(4.99kg/s)(22.123m/s0.2m×27.63rad/s)=(0.2m)(4.99kg/s)(16.593m/s)=16.6kgm2/s2×1Nm1kg m 2/ s 2=16.61Nm

Substitute 16.61Nm for TR and 16.61Nm for TL in Equation (XIII).

  T=16.6kN+16.6kN=33.2kN

Conclusion:

The torque required to prevent the rotation of sprinkler is 33.2Nm.

Want to see more full solutions like this?

Subscribe now to access step-by-step solutions to millions of textbook problems written by subject matter experts!
Students have asked these similar questions
Detemine the horizontal and vertical components of the liquid pressure acting on the semicylindrical gate ABC, as shown in the figure. The width into the paper is 1 m. 1 m Liquid (s.g. = 0.88) 4 m B 4.2 m 1 m Fx=164.018 kN and Fy=37.229 kN O Fx=141.327 kN and Fy=31.171 kN Fx=257.430 kN and Fy=59.801 kN Fx=288.147 kN and Fy=69.098 kN Fx=213.112 kN and Fy=47.903 kN Fx-187.005 kN and Fy=42.182 kN Fx=234.789 kN and Fy=52.418 kN Fx=98.182 kN and Fy-20.002 kNO Fx-119.956 kN and Fy-25.550 kN Fx=269.894 kN and Fy-65.526 kN O
if you have solved it before on another question pls dont post because i want to confirm
Parabolic The face of el dam, reteining weiter, is shaped accordingg to the relationsnip z5zo(3 as shown . The dam has a borizan hori2ontal length x0= 3in and the height of water refeined by the dam is Z0=73.The fluid is weiter, Ywater= 980O Nims and et mospherie pressure may be omitted-com peute the resulttant force on the dam and its line of action. Ihewidth of the dam is 15.3m. [he centroid OF the Shaded area (figure Dii) is Area gheades For the parabeie z A= twerter /2=3 figure 2ii Figure 2i

Chapter 6 Solutions

FLUID MECHANICS FUND. (LL)-W/ACCESS

Ch. 6 - A rocket in space (no friction or resistance to...Ch. 6 - Describe in terms of momentum and airflow how a...Ch. 6 - Does it take more, equal, or less power for a...Ch. 6 - In a given location, would a helicopter require...Ch. 6 - Describe body forces and surface forces, and...Ch. 6 - A constant-velocity horizontal water jet from a...Ch. 6 - A horizontal water jet of constant velocity V from...Ch. 6 - A horizontal water jet from a nozzle of constant...Ch. 6 - A 2.5-cm-diameter horizontal water jet with a...Ch. 6 - A 90 elbow in a horizontal pipe is used to direct...Ch. 6 - Repeat Prob. 6-20 for the case of another...Ch. 6 - A horizontal water jet impinges against a vertical...Ch. 6 - Water enters a 7-cm-diameter pipe steadily with a...Ch. 6 - A reducing elbow in a horizontal pipe is used to...Ch. 6 - Repeat Prob. 6-24 for the case of = 125°.Ch. 6 - A 100-ft3/s water jet is moving in the positive...Ch. 6 - Reconsider Prob. 6-26E. Using appropriate...Ch. 6 - Commercially available large wind turbines have...Ch. 6 - A fan with 24-in-diameter blades moves 2000 cfm...Ch. 6 - A 3-in-diameter horizontal jet of water, with...Ch. 6 - Firefighters are holding a nozzle at the end of a...Ch. 6 - A 5-cm-diameter horizontal jet of water with a...Ch. 6 - Prob. 33PCh. 6 - A 3-in-diameter horizontal water jet having a...Ch. 6 - An unloaded helicopter of mass 12,000 kg hovers at...Ch. 6 - Prob. 36PCh. 6 - Water is flowing through a 10-cm-diameter water...Ch. 6 - Water flowing in a horizontal 25-cm-diameter pipe...Ch. 6 - Prob. 39PCh. 6 - Water enters a centrifugal pump axially at...Ch. 6 - An incompressible fluid of density and viscosity ...Ch. 6 - Consider the curved duct of Prob. 6-41, except...Ch. 6 - As a follow-up to Prob. 6-41, it turns out that...Ch. 6 - Prob. 44PCh. 6 - The weight of a water tank open to the atmosphere...Ch. 6 - A sluice gate, which controls flow rate in a...Ch. 6 - A room is to be ventilated using a centrifugal...Ch. 6 - How is the angular momentum equation obtained from...Ch. 6 - Prob. 49CPCh. 6 - Prob. 50CPCh. 6 - Prob. 51CPCh. 6 - A large lawn sprinkler with two identical arms is...Ch. 6 - Prob. 53EPCh. 6 - The impeller of a centrifugal pump has inner and...Ch. 6 - Water is flowing through a 15-cm-diameter pipe...Ch. 6 - Prob. 56PCh. 6 - Repeat Prob. 6-56 for a water flow rate of 60 L/s.Ch. 6 - Prob. 58PCh. 6 - Water enters the impeller of a centrifugal pump...Ch. 6 - A lawn sprinkler with three identical antis is...Ch. 6 - Prob. 62PCh. 6 - The impeller of a centrifugal blower has a radius...Ch. 6 - An 8-cm-diameter horizontal water jet having a...Ch. 6 - Water flowing steadily at a rate of 0.16 m3/s is...Ch. 6 - Repeat Prob. 6-66 by taking into consideration the...Ch. 6 - A 16-cm diameter horizontal water jet with a speed...Ch. 6 - Water enters vertically and steadily at a rate of...Ch. 6 - Repeal Prob. 6-69 for the case of unequal anus-the...Ch. 6 - Prob. 71PCh. 6 - Prob. 72PCh. 6 - A spacecraft cruising in space at a constant...Ch. 6 - A 60-kg ice skater is standing on ice with ice...Ch. 6 - A 5-cm-diameter horizontal jet of water, with...Ch. 6 - Water is flowing into and discharging from a pipe...Ch. 6 - Indiana Jones needs So ascend a 10-m-high...Ch. 6 - Prob. 79EPCh. 6 - A walnut with a mass of 50 g requires a force of...Ch. 6 - Prob. 81PCh. 6 - Prob. 82PCh. 6 - A horizontal water jet of constant velocity V...Ch. 6 - Show that the force exerted by a liquid jet on a...Ch. 6 - Prob. 85PCh. 6 - Prob. 86PCh. 6 - Water enters a mixed flow pump axially at a rate...Ch. 6 - Prob. 88PCh. 6 - Water enters a two-armed lawn sprinkler along the...Ch. 6 - Prob. 91PCh. 6 - Prob. 92PCh. 6 - Prob. 93PCh. 6 - Prob. 94PCh. 6 - A water jet strikes a moving plate at velocity...Ch. 6 - Water flows at mass flow rate m through a 90°...Ch. 6 - Prob. 97PCh. 6 - Water shoots out of a Iar2e tank sitting a cart...Ch. 6 - Prob. 99PCh. 6 - Prob. 100PCh. 6 - Prob. 101PCh. 6 - Consider water flow through a horizontal, short...Ch. 6 - Consider water flow through a horizontal. short...Ch. 6 - Prob. 104PCh. 6 - Prob. 105PCh. 6 - Prob. 106PCh. 6 - The velocity of wind at a wind turbine is measured...Ch. 6 - The ve1ocity of wind at a wind turbine is measured...Ch. 6 - Prob. 109PCh. 6 - Prob. 110PCh. 6 - Prob. 111PCh. 6 - Consider the impeller of a centrifugal pump with a...Ch. 6 - Prob. 113PCh. 6 - Prob. 114P
Knowledge Booster
Background pattern image
Mechanical Engineering
Learn more about
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, mechanical-engineering and related others by exploring similar questions and additional content below.
Similar questions
SEE MORE QUESTIONS
Recommended textbooks for you
Text book image
Elements Of Electromagnetics
Mechanical Engineering
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Oxford University Press
Text book image
Mechanics of Materials (10th Edition)
Mechanical Engineering
ISBN:9780134319650
Author:Russell C. Hibbeler
Publisher:PEARSON
Text book image
Thermodynamics: An Engineering Approach
Mechanical Engineering
ISBN:9781259822674
Author:Yunus A. Cengel Dr., Michael A. Boles
Publisher:McGraw-Hill Education
Text book image
Control Systems Engineering
Mechanical Engineering
ISBN:9781118170519
Author:Norman S. Nise
Publisher:WILEY
Text book image
Mechanics of Materials (MindTap Course List)
Mechanical Engineering
ISBN:9781337093347
Author:Barry J. Goodno, James M. Gere
Publisher:Cengage Learning
Text book image
Engineering Mechanics: Statics
Mechanical Engineering
ISBN:9781118807330
Author:James L. Meriam, L. G. Kraige, J. N. Bolton
Publisher:WILEY
MECH MINUTES | SHAFTS PT. 2: MATERIAL & SURFACE TREATMENT SELECTION | MISUMI USA; Author: MISUMI;https://www.youtube.com/watch?v=jWRA0jhoiRs;License: Standard Youtube License