cross-sectional area of the channel. 5. Refer to the following channel cross section. Normal depth is 1.50 feet. (a) What is the cross-sectional area of flow? (b) What is the wetted perimeter? (c) What is the hydraulic radius? 8.5' 1.50' 2.5' -2.5'- 4.5- otion Normo1 denth is 3 0 fe © Cengage Learning 2014

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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**Channel Cross-Section Analysis**

**Problem 5:**

Refer to the following channel cross section with a normal depth of 1.50 feet.

**Questions:**
(a) What is the cross-sectional area of flow?
(b) What is the wetted perimeter?
(c) What is the hydraulic radius?

**Diagram Description:**

The diagram represents a trapezoidal channel cross-section. It consists of:

- A top width of 8.5 feet.
- A bottom width of 4.5 feet.
- Side slopes of 2.5 feet on each side.
- A vertical depth of 1.50 feet.

**Notes:**

- The top width is the distance across the top of the flow.
- The bottom width is the horizontal distance across the bottom of the channel.
- The side slopes describe the angled sides of the channel that connect the top width to the bottom. 

This configuration is typical for trapezoidal channels, where the cross-sectional area and hydraulic radius are important for calculating flow characteristics.
Transcribed Image Text:**Channel Cross-Section Analysis** **Problem 5:** Refer to the following channel cross section with a normal depth of 1.50 feet. **Questions:** (a) What is the cross-sectional area of flow? (b) What is the wetted perimeter? (c) What is the hydraulic radius? **Diagram Description:** The diagram represents a trapezoidal channel cross-section. It consists of: - A top width of 8.5 feet. - A bottom width of 4.5 feet. - Side slopes of 2.5 feet on each side. - A vertical depth of 1.50 feet. **Notes:** - The top width is the distance across the top of the flow. - The bottom width is the horizontal distance across the bottom of the channel. - The side slopes describe the angled sides of the channel that connect the top width to the bottom. This configuration is typical for trapezoidal channels, where the cross-sectional area and hydraulic radius are important for calculating flow characteristics.
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