There are 3 strategies to solve the turbulent flows in conduits, which are as follows: Case 1 goal - find h, given -4, D and Q - find Q Case 2 goal given - h, L andD Case 3 goal – find D given -Q, L and h, For cases 2 and 3, there are direct equations available as follows: For Case 2 iterative approach can be avoided sometimes by using eq as: 1.78v Q =-2.22D² gh, I L log 3.7D D, Veh, I For Case 3 4.75 0ךו iterative approach can also be eliminated sometimes Lọ gh, D=0 gh, by using eq as: Select the most appropriate statement. If hr is not available, you need to assume hị and then solve those equations for Q and D. Once you obtained Q and D, you need to check whether that Q and D are correctly assumed or not, if not you need to re-assume h until the solution converged. O For Case 1, we can get h directly from Darch-Weishbach eq. O All the statements are correct. O If h; is available, you can solve those equations for Q and D directly.
There are 3 strategies to solve the turbulent flows in conduits, which are as follows: Case 1 goal - find h, given -4, D and Q - find Q Case 2 goal given - h, L andD Case 3 goal – find D given -Q, L and h, For cases 2 and 3, there are direct equations available as follows: For Case 2 iterative approach can be avoided sometimes by using eq as: 1.78v Q =-2.22D² gh, I L log 3.7D D, Veh, I For Case 3 4.75 0ךו iterative approach can also be eliminated sometimes Lọ gh, D=0 gh, by using eq as: Select the most appropriate statement. If hr is not available, you need to assume hị and then solve those equations for Q and D. Once you obtained Q and D, you need to check whether that Q and D are correctly assumed or not, if not you need to re-assume h until the solution converged. O For Case 1, we can get h directly from Darch-Weishbach eq. O All the statements are correct. O If h; is available, you can solve those equations for Q and D directly.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Question
![There are 3 strategies to solve the turbulent flows in conduits, which are as follows:
goal
given - L, D and Q
Case 1
- find h,
goal
given - h, L and D
Case 2
- find Q
goal
given
- find D
- Q, L and h,
Case 3
For cases 2 and 3, there are direct equations available as follows:
For Case 2
iterative approach can be
avoided sometimes by
using eq as:
k,
-+
1.78v
Q = -2.22D² gh, /L log
3.7D D5
Vgh, IL
For Case 3
iterative approach can also
be eliminated sometimes
by using eq as:
404ר 12
D=0.66 k.2
gh,
Select the most appropriate statement.
O If h; is not available, you need to assume h; and then solve those equations for Q and D. Once you obtained Q and D, you need to check whether that
Q and D are correctly assumed or not, if not you need to re-assume h; until the solution converged.
For Case 1, we can get h; directly from Darch-Weishbach eg.
O All the statements are correct.
O If h; is available, you can solve those equations for Q and D directly.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fbb42bab2-59f9-47bf-8a5c-664554ba96dd%2Fde1128ca-3dc8-4566-9280-d519041b54af%2F4zrv2mt_processed.png&w=3840&q=75)
Transcribed Image Text:There are 3 strategies to solve the turbulent flows in conduits, which are as follows:
goal
given - L, D and Q
Case 1
- find h,
goal
given - h, L and D
Case 2
- find Q
goal
given
- find D
- Q, L and h,
Case 3
For cases 2 and 3, there are direct equations available as follows:
For Case 2
iterative approach can be
avoided sometimes by
using eq as:
k,
-+
1.78v
Q = -2.22D² gh, /L log
3.7D D5
Vgh, IL
For Case 3
iterative approach can also
be eliminated sometimes
by using eq as:
404ר 12
D=0.66 k.2
gh,
Select the most appropriate statement.
O If h; is not available, you need to assume h; and then solve those equations for Q and D. Once you obtained Q and D, you need to check whether that
Q and D are correctly assumed or not, if not you need to re-assume h; until the solution converged.
For Case 1, we can get h; directly from Darch-Weishbach eg.
O All the statements are correct.
O If h; is available, you can solve those equations for Q and D directly.
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