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AulaGEO Academy

Welcome to the Introduction to OpenFlows HAMMER Software

Course Overview: Explore the powerful capabilities of OpenFlows HAMMER software through our comprehensive introductory course. Whether you're new to hydraulic modeling or looking to deepen your skills, this course provides a structured approach to mastering the fundamentals of OpenFlows HAMMER. Through practical exercises and clear explanations, you'll gain the confidence to effectively model and simulate water distribution systems using this advanced software. #AulaGEO

Learning Objectives: By the end of this course, you will:

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Welcome to the Introduction to OpenFlows HAMMER Software

Course Overview: Explore the powerful capabilities of OpenFlows HAMMER software through our comprehensive introductory course. Whether you're new to hydraulic modeling or looking to deepen your skills, this course provides a structured approach to mastering the fundamentals of OpenFlows HAMMER. Through practical exercises and clear explanations, you'll gain the confidence to effectively model and simulate water distribution systems using this advanced software. #AulaGEO

Learning Objectives: By the end of this course, you will:

  • Understand the principles of hydraulic modeling and transient analysis.

  • Navigate the OpenFlows HAMMER user interface and customize settings.

  • Develop proficiency in building and simulating water distribution networks.

  • Analyze and interpret simulation results to optimize system performance.

  • Apply advanced features for scenario analysis and troubleshooting.

Who Should Take This Course: This course is ideal for:

  • Engineers and consultants new to hydraulic modeling with OpenFlows HAMMER.

  • Water utility professionals responsible for system design and analysis.

  • Students and educators integrating hydraulic modeling into academic projects.

  • Anyone seeking practical skills in simulating water distribution systems.

Course content #AulaGEO

Section 1: Getting started

Lecture 1: Introduction

Lecture 2: Getting Started

Lecture 3: Interface

Section 2: Unprotected pipelines transients

Lecture 4: Exercise Setup

Lecture 5: Prototypes

Lecture 6: Network Layout

Lecture 7: Data Entry

Lecture 8: Wave Speed Calculator

Lecture 9: Configuration

Lecture 10: Profiles

Lecture 11: Analysis Without Surge Protection Equipment

Lecture 12: Reviewing Results

Lecture 13: Visualizing Simulations

Lecture 14: Report-Ready Graphs

Lecture 15: Exercise Review

Section 3: Pipeline protection

Lecture 16: Exercise Setup

Lecture 17: Adding a Hydropneumatic Tank

Lecture 18: Active Topology Selections

Lecture 19: Hydropneumatic Tank Profile

Lecture 20: Compute Hydropneumatic Scenario

Lecture 21: With Air Valve Scenario

Lecture 22: Surge Tank with Check Valve

Lecture 23: Surge Tank without Check Valve

Lecture 24: With Surge Relief Valve

Lecture 25: Exercise Review

Section 4: Network risk evaluation

Lecture 26: Exercise Setup

Lecture 27: Calculation Settings

Lecture 28: Analysis Without Surge Protection

Lecture 29: Exercise Review

Section 5: Multiple points network protection

Lecture 30: Exercise Setup

Lecture 31: Adding Tanks

Lecture 32: Setting Elements

Lecture 33: Computation

Lecture 34: Color Coding

Lecture 35: Transient Thematic Viewer

Lecture 36: Reviewing Results

Lecture 37: Exercise Review

Section 6: All OpenFlows products explained

Lecture 38: All OpenFlows Products

Why Take This Course: This course stands out for its hands-on approach to learning, emphasizing practical exercises and real-world applications. Whether you're starting with OpenFlows HAMMER or aiming to enhance your skills, this course will equip you with the knowledge and confidence to tackle complex hydraulic modeling challenges effectively.

Enroll today and embark on your journey to mastering OpenFlows HAMMER software.

About OpenFlows HAMMER Software: OpenFlows HAMMER is a leading software tool for hydraulic modeling and transient analysis of water distribution systems. Trusted by professionals worldwide, it enables accurate simulation and optimization of water networks to ensure efficient operation and resilience.

Enroll now

What's inside

Learning objectives

  • Understand the principles of hydraulic modeling and transient analysis
  • Navigate the openflows hammer user interface and customize settings
  • Develop proficiency in building and simulating water distribution networks
  • Analyze and interpret simulation results to optimize system performance
  • Apply advanced features for scenario analysis and troubleshooting

Syllabus

Analysis Without Surge Protection Equipment
Getting Started
Introduction
Interface
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Traffic lights

Read about what's good
what should give you pause
and possible dealbreakers
Provides a structured approach to mastering the fundamentals of OpenFlows HAMMER, which builds confidence in modeling and simulating water distribution systems
Emphasizes practical exercises and real-world applications, which equips learners with the knowledge to tackle complex hydraulic modeling challenges
Covers transient analysis, which is essential for understanding and mitigating potential risks in water distribution systems, such as water hammer
Explores surge protection equipment, which is crucial for designing resilient water distribution systems that can withstand transient events
Requires OpenFlows HAMMER software, which may require a license or subscription, potentially posing a barrier for some learners
Focuses on OpenFlows HAMMER, a specific software, so learners should ensure it aligns with their professional needs and industry standards

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Reviews summary

Hydraulic modeling with openflows hammer

According to learners, this course offers a good introduction to the OpenFlows HAMMER software, specifically focusing on hydraulic modeling and transient analysis in water distribution systems. Students particularly appreciated the hands-on exercises which provide practical experience with the software. The course covers key concepts like surge protection and network risk evaluation effectively for those new to the software. While generally well-received as a foundational course, some experienced users noted it might lack the necessary depth for advanced topics or complex real-world scenarios. Overall, it's seen as a solid starting point for engineers and students looking to master HAMMER's fundamental capabilities.
Strong focus on OpenFlows HAMMER application.
"This course is excellent if you specifically need to learn OpenFlows HAMMER."
"It's very focused on using the software, which is exactly what I needed."
"The course is entirely built around the HAMMER interface and workflows."
Explains fundamental concepts like transients.
"Concepts like water hammer and surge protection were explained well."
"The lectures on profiles and wave speed were helpful."
"Covers the essential transient analysis tools in HAMMER."
"It clearly explains the workflow for analyzing transients without protection."
Provides hands-on practice with HAMMER.
"The exercises were very practical and helped me apply what I learned."
"I gained confidence using the software with the hands-on labs."
"Applying concepts in HAMMER through the exercises helped solidify my understanding."
"Loved the practical examples provided throughout the modules."
Serves as a solid starting point for beginners.
"Great course for getting started with HAMMER."
"It provided a good foundation in transient analysis principles."
"Perfect if you are new to this specific software."
"I found this course very helpful as an initial step into OpenFlows HAMMER."
May not be deep enough for experienced users.
"As an experienced user, I found it a bit basic."
"Could use more complex case studies or optimization topics."
"Wish it covered more advanced features of the software."
"Good for beginners, but intermediate/advanced users might need more."

Activities

Be better prepared before your course. Deepen your understanding during and after it. Supplement your coursework and achieve mastery of the topics covered in OpenFlows HAMMER - Hydraulic Modeling Mastery - AulaGEO with these activities:
Review Fluid Mechanics Principles
Reinforce your understanding of fundamental fluid mechanics concepts, which are essential for grasping the principles behind hydraulic modeling in OpenFlows HAMMER.
Browse courses on Fluid Mechanics
Show steps
  • Review key concepts like pressure, flow rate, and viscosity.
  • Work through practice problems related to fluid flow in pipes.
  • Consult textbooks or online resources for clarification.
Review 'Fluid Mechanics' by Frank White
Solidify your understanding of the fundamental principles of fluid mechanics.
View Melania on Amazon
Show steps
  • Review chapters on fluid properties and fluid statics.
  • Work through example problems related to pressure and buoyancy.
  • Relate the concepts to hydraulic modeling in OpenFlows HAMMER.
Practice Network Layout Exercises
Improve your proficiency in building water distribution networks within OpenFlows HAMMER by completing practice exercises focused on network layout and data entry.
Show steps
  • Recreate example networks from the course materials.
  • Experiment with different pipe configurations and node placements.
  • Verify your layouts against provided solutions.
Four other activities
Expand to see all activities and additional details
Show all seven activities
Explore Advanced HAMMER Tutorials
Enhance your skills by exploring advanced tutorials and examples provided by Bentley Systems for OpenFlows HAMMER.
Show steps
  • Search the Bentley website for advanced HAMMER tutorials.
  • Follow tutorials on topics like pump startup/shutdown and valve operations.
  • Apply the techniques learned to your own hydraulic models.
Read 'Applied Hydraulic Transients' by Wylie and Streeter
Gain a deeper understanding of the theory behind hydraulic transients by studying a comprehensive textbook on the subject.
View Melania on Amazon
Show steps
  • Read chapters related to water hammer and surge protection.
  • Work through example problems to reinforce your understanding.
  • Relate the theoretical concepts to the practical applications in OpenFlows HAMMER.
Develop a Surge Protection Report
Solidify your understanding of surge protection techniques by creating a detailed report analyzing different surge protection scenarios in OpenFlows HAMMER.
Show steps
  • Model a water distribution system with potential surge issues.
  • Implement various surge protection devices (e.g., hydropneumatic tanks, surge relief valves).
  • Simulate transient events and analyze the effectiveness of each protection strategy.
  • Document your findings in a comprehensive report with graphs and tables.
Model a Real-World Water Distribution System
Apply your knowledge by modeling a real-world water distribution system using OpenFlows HAMMER, including data collection, model calibration, and scenario analysis.
Show steps
  • Obtain data for a real water distribution system (e.g., from a local utility).
  • Build the network model in OpenFlows HAMMER.
  • Calibrate the model using available field data.
  • Perform scenario analysis to evaluate system performance under different conditions.

Career center

Learners who complete OpenFlows HAMMER - Hydraulic Modeling Mastery - AulaGEO will develop knowledge and skills that may be useful to these careers:
Hydraulic Modeler
A hydraulic modeler develops and applies computer models to simulate the behavior of water distribution systems. This OpenFlows HAMMER course directly prepares you for the responsibilities of a hydraulic modeler by providing a comprehensive introduction to hydraulic modeling principles and transient analysis. The course provides hands-on exercises to build and simulate water distribution networks, which is essential for a hydraulic modeler. Furthermore, the course teaches how to analyze simulation results to optimize system performance, apply advanced features for scenario analysis, and troubleshoot problems.
Water Resources Engineer
A water resources engineer focuses on the sustainable management and use of water resources. This course is useful for a water resources engineer as it covers hydraulic modeling and transient analysis, which are crucial for designing and optimizing water distribution systems. Specifically, the course helps water resource engineers to build proficiency in simulating water distribution networks. The course also allows water resource engineers to understand the principles of hydraulic modeling, navigate the OpenFlows HAMMER interface, and customize settings. Through the course, a water resources engineer will be comfortable applying advanced features for scenario analysis and troubleshooting.
Municipal Engineer
A municipal engineer is responsible for the design, construction, and maintenance of public works projects within a city or town, often including water and wastewater systems. The OpenFlows HAMMER course helps municipal engineers gain practical skills in simulating water distribution systems. This is achieved through the course's comprehensive introduction to hydraulic modeling principles and transient analysis. Municipal engineers learn how to build and simulate water distribution networks, analyze simulation results to optimize system performance, and apply advanced features for scenario analysis and troubleshooting.
Civil Engineer
Civil engineers design, construct, and maintain infrastructure projects, including water distribution systems. This OpenFlows HAMMER course is helpful for civil engineers working on water-related projects. The course helps civil engineers understand the principles of hydraulic modeling and transient analysis. The course teaches how to build and simulate water distribution networks using OpenFlows HAMMER. Skills like these give civil engineers the confidence to effectively model and simulate water distribution systems using this advanced software.
Consulting Engineer
Consulting engineers provide expert advice and design services to clients on a variety of engineering projects. A course that is designed to guide individuals through hydraulic modeling using OpenFlows HAMMER is useful. The course helps consulting engineers build and simulate water distribution networks. The course teaches how to analyze and interpret simulation results to optimize system performance. The consulting engineer will be able to apply advanced features for scenario analysis and problem-solving.
Environmental Engineer
Environmental engineers work to protect the environment and human health through the design of solutions to environmental problems, frequently dealing with water resources. This course may be useful because it offers a structured approach to mastering the fundamentals of OpenFlows HAMMER and equips engineers with practical skills in simulating water distribution systems. Environmental engineers will be able to analyze and interpret simulation results to optimize system performance. The course will allow environmental engineers to apply advanced features for scenario analysis and troubleshooting.
Hydraulic Technician
Hydraulic technicians are involved in the installation, maintenance, and repair of hydraulic systems, often working with engineers and modelers. This OpenFlows HAMMER course is useful by providing hands-on experience with hydraulic modeling software. The course helps hydraulic technicians review results and visualize simulations. The course will allow hydraulic technicians to understand the principles of hydraulic modeling and transient analysis. The course will give hydraulic technicians a more complete understanding of the systems that they may be responsible for managing.
Hydrologist
Hydrologists study the movement, distribution, and quality of water. This course may be useful for hydrologists, especially those involved in water distribution and management. Hydrologists could benefit from the course's coverage of hydraulic modeling and transient analysis using OpenFlows HAMMER. The course provides a structured approach to mastering the fundamentals of OpenFlows HAMMER, which includes practical exercises and real-world applications. The training would allow Hydrologists to apply advanced features for scenario analysis and troubleshooting.
Project Manager
A project manager in the water resources sector oversees the planning, execution, and completion of engineering projects related to water infrastructure. This OpenFlows HAMMER course prepares project managers by providing a solid understanding of the technical aspects of hydraulic modeling and system simulation. The course introduces the principles of hydraulic modeling and transient analysis, enabling effective management of projects involving water distribution networks. A project manager can analyze and interpret simulation results, apply advanced features for scenario analysis, and troubleshoot potential issues.
Water System Operator
A water system operator manages and maintains the equipment and processes in water treatment and distribution systems. While this role is often hands-on, understanding the underlying models is beneficial. Through this course, a water system operator will understand the principles of hydraulic modeling and transient analysis and develop proficiency in simulating water distribution networks. The water system operator will be able to analyze and interpret simulation results to optimize system performance and customize settings within OpenFlows HAMMER.
Urban Planner
Urban planners develop plans and programs for land use and development, including infrastructure like water distribution systems. This OpenFlows HAMMER course may be useful, as it helps urban planners to understand the principles of hydraulic modeling and transient analysis. The course teaches how to build and simulate water distribution networks. Urban planners will be able to analyze and interpret simulation results to optimize system performance and apply advanced features for scenario analysis.
GIS Analyst
A geographic information systems analyst uses GIS software to analyze spatial data. While the course does not focus on GIS, it utilizes software to model water systems. This course could be useful for GIS analysts who work with water distribution data. The course helps GIS analysts understand the principles of hydraulic modeling and transient analysis. The course also covers simulating water distribution networks. The course equips analysts with practical skills to analyze and interpret simulation results.
Sustainability Manager
Sustainability managers develop and implement strategies to reduce environmental impact and promote sustainable practices. This course may be useful as it covers the fundamentals of OpenFlows HAMMER. The course teaches how to analyze and interpret simulation results to optimize system performance. Sustainability managers will be able to apply advanced features for scenario analysis and troubleshooting. This course helps develop proficiency in building and simulating water distribution networks.
Water Quality Specialist
Water quality specialists monitor and assess water quality to ensure compliance with regulations and protect public health. While the course primarily focuses on hydraulic modeling, understanding system dynamics can be useful. The OpenFlows HAMMER course may be useful, as it builds an understanding of hydraulic modeling, navigating the OpenFlows HAMMER interface, and customizing settings. The course may also allow water quality specialists to build and simulate water distribution networks, analyze simulation results to understand system behavior, and apply features for scenario analysis.
Data Scientist
Data scientists analyze and interpret complex data to identify trends and insights. This course may be helpful for data scientists who want to apply their skills to water management. The course teaches how to analyze and interpret simulation results to optimize system performance. Data scientists will be able to apply advanced features for scenario analysis and troubleshooting. This course helps develop proficiency in building and simulating water distribution networks.

Reading list

We've selected one books that we think will supplement your learning. Use these to develop background knowledge, enrich your coursework, and gain a deeper understanding of the topics covered in OpenFlows HAMMER - Hydraulic Modeling Mastery - AulaGEO.

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