Hydraulics

Course Information

College Anan College Year 2024
Course Title Hydraulics
Course Code 1813E01 Course Category Specialized / Compulsory
Class Format Lecture Credits School Credit: 2
Department Course of Civil Engineering Student Grade 3rd
Term Year-round Classes per Week 前期:2 後期:2
Textbook and/or Teaching Materials PEL水理学 実教出版
Instructor Osada Kengo

Course Objectives

1. Able to explain important technical terms in Hydraulics (Laminar flow, Turbulent flow, Subcritical flow, Supercritical flow, and so on).
2. Able to understand and calculate hydrostatic pressure, pressure application point, and buoyancy.
3. Able to understand the continuity equation, Bernoulli equation, and equation of momentum and perform calculations using these equations.
4. Able to understand the Bernoulli equation considering energy loss in the pipeline and calculate pipe flow under various conditions.

Rubric

Ideal LevelStandard LevelMinimum Level
Course Objective 1Able to thoroughly explain the important technical terms in Hydraulics (Laminar flow, Turbulent flow, Subcritical flow, Supercritical flow, and so on).Able to explain the important technical terms in Hydraulics (Laminar flow, Turbulent flow, Subcritical flow, Supercritical flow, and so on).Able to explain some important technical terms in Hydraulics.
Course Objective 2Able to thoroughly understand and calculate hydrostatic pressure, pressure application point, and buoyancy.Able to understand and calculate hydrostatic pressure, pressure application point, and buoyancy.Able to have some ability to calculate hydrostatic pressure, pressure application point, and buoyancy.
Course Objective 3Able to thoroughly understand the continuity equation, Bernoulli equation, and equation of momentum and perform calculations using these equations.Able to understand the continuity equation, Bernoulli equation, and equation of momentum and perform calculations using these equations.Able to have some ability to calculate using the continuity equation, Bernoulli equation, and equation of momentum.
Course Objective 4Able to thoroughly understand the Bernoulli equation considering energy loss in the pipeline and calculate pipe flow under various conditions.Able to understand the Bernoulli equation considering energy loss in the pipeline and calculate pipe flow under various conditions.Able to slightly understand the Bernoulli equation considering energy loss in the pipeline and calculate pipe flow under various conditions.

Assigned Department Objectives

学習・教育到達度目標 B-2 See Hide
学習・教育到達度目標 B-3 See Hide
学習・教育到達度目標 D-1 See Hide

Teaching Method

Outline:
In this class, students learn the basic properties of water, the hydrostatic pressure, the continuity equation, the equation of motion, the theory of pipe flow, and the calculation method of pipe flow under various conditions.
Style:
This class conducts many problems to better understand important technical terms and calculation methods in addition to lectures.
(The learning time: 60 hours)
Notice:
Please bring a calculator each time to conduct computational problem.

Characteristics of Class / Division in Learning

Active Learning
Aided by ICT
Applicable to Remote Class
Instructor Professionally Experienced

Course Plan

Theme Goals
1st Semester
1st Quarter
1st Units and dimensions Able to explain units used in hydraulics.
2nd Basic properties of water Able to explain basic properties of water.
3rd Hydrostatic pressure
Measurement of hydrostatic pressure
Able to explain strength and direction of hydraulics pressure.
Able to explain the measurement of hydraulics pressure.
4th Measurement of hydrostatic pressure
Water hydraulic equipment
Able to explain the measurement of hydraulics pressure.
Able to explain the Pascal's principle.
5th Hydrostatic pressure that acts on a plane surface Able to calculate strength and application point of hydraulics pressure that acts on a plane surface.
6th Hydrostatic pressure that acts on a curved surface Able to calculate strength and application point of hydraulics pressure that acts on a curved surface.
7th Hydrostatic pressure that acts on a curved surface Able to calculate strength and application point of hydraulics pressure that acts on a curved surface.
8th Midterm examination
2nd Quarter
9th Buoyancy Able to understand the Archimedes' principle.
Able to calculate the buoyancy.
10th Stability of floating body Able to calculate the stability of floating body.
11th Stability of floating body Able to calculate the stability of floating body.
12th Basic of flow Able to understand important words and types of flow.
13th Basic of flow
Continuity equation
Able to explain laminar and turbulent flows.
Able to understand the continuity equation.
14th Bernoulli's theorem Able to understand the Bernoulli's theorem.
15th Bernoulli's theorem
Euler's momentum equation
Able to understand the Bernoulli's theorem.
Able to understand the Euler's momentum equation.
16th Return of final examination
2nd Semester
3rd Quarter
1st Application of Bernoulli's theorem Able to calculate using the Bernoulli's theorem.
2nd Application of Bernoulli's theorem Able to calculate using the Bernoulli's theorem.
3rd Momentum equation Able to understand the momentum equation.
4th Application of momentum equation Able to calculate using the momentum equation.
5th Application of momentum equation Able to calculate using the momentum equation.
6th Orifice
Weir
Able to understand various weirs.
7th Orifice
Weir
Able to understand various weirs.
8th Midterm examination
4th Quarter
9th Shear stress
Velocity distribution of laminar flow
Able to understand the velocity distribution of laminar flow.
10th Velocity distribution of turbulent flow Able to understand the velocity distribution of turbulent flow.
11th Friction loss of pipeline flow
Mean velocity formula
Able to understand friction loss of pipeline flow and Moody chart.
Able to understand the mean velocity formulas.
12th Form loss of pipeline flow Able to explain the form loss of pipeline flow.
13th Calculation of various pipeline flows Able to calculate various pipeline flows.
14th Calculation of various pipeline flows Able to calculate various pipeline flows.
15th Calculation of various pipeline flows Able to calculate various pipeline flows.
16th Return of final examination

Evaluation Method and Weight (%)

Midterm/Final ExamQuizPortfolioPresentation/AttitudeOtherTotal
Subtotal7003000100
Basic Proficiency100100020
Specialized Proficiency600200080
Cross Area Proficiency000000