Pelton Wheel Turbine Generator Drew Ramsey, Ashley Munguia, Justin Johnstone, Chris Yonts Undergraduate – Texas A&M University at Galveston Senior Advisor:

Slides:



Advertisements
Similar presentations
Advanced Artificial Lift Methods Electrical Submersible Pump Advanced Artificial Lift Methods – PE 571 Chapter 1 - Electrical Submersible Pump Centrifugal.
Advertisements

Matching of Buckets & Wheel Optimal number of Muscles for this Artificial Beat……. P M V Subbarao Professor Mechanical Engineering Department.
Design Analysis of Parts of Pelton Wheel Turbine
Pelton Turbine. The Pelton wheel is among the most efficient types of water turbines. It was invented by Lester Allan Pelton in the 1870s. The Pelton.
Designers: Drew Blackwell, Justin Reed, Sam Johnson, Tim Mrozinski.
Impulse Turbine / Pelton Turbine
FUNDAMENTALS OF FLUID MECHANICS
Fluid Mechanics 07.
Kelley Fletcher Dustin Eseltine Ryan Sargent Group 5.
Designing an Air-Propulsion System Presentation by – Jacob Griffin Advisor -Dr. Junkun Ma Senior Design Teacher -Dr. Cris Koutsougeras.
Nozzles & Jets for Pelton Wheels A Special Device to implement Pure Momentum based Energy Exchange……. P M V Subbarao Professor Mechanical Engineering.
ComponentFabrication MethodSource of Material Aluminum CylindersMachinedDonated – Farmers Copper Copper CoreMachinedDonated – Farmers Copper Aluminum Piston.
04013 Micro Turbine Senior Design Micro Turbine Senior Design PDR – May 20 th, 2004 Project
Preliminary Design Review Week 6 Group A3: HMS “Bloodhound” Matt Morris Matt Prygoski Jay Slaggert Fred Thwaites Dan Zibton Thursday March 13, 2008.
Gas turbine cycles for aircraft propulsion In shaft power cycles, power is in form of generated power. In air craft cycles, whole power is in the form.
04013 Micro Turbine Senior Design Micro Turbine Senior Design CDR – May 14 th, 2004 Project
Closing Remarks on Pelton Wheel
Development of Turbine Cascades
Matching of Bucket to Jet in Pelton Wheels Satisfying the Concerns of Pelton……. P M V Subbarao Professor Mechanical Engineering Department.
Design and Fabrication of a Miniature Turbine for Power Generation on Micro Air Vehicles Team Arman Altincatal Srujan Behuria Carl Crawford Dan Holt.
The Centrifugal Pump.
Introduction Muhajir Ab. Rahim School of Mechatronic Engineering.
The goal of this project is to provide inexpensive electricity to citizens of third world countries who have limited access to electricity. The scope of.
Team Members: Allen Baragar Dustin Thompson Jose Membreno Katelyn This MECT 4276 Fall 2014 Industrial Advisors: Paul Tyllick- System Interface Supervisor,
Group 17 Oceanic Thermal Energy Conversion Model - Lockheed Martin 1 Oceanic Thermal Energy Conversions Group Members: Brooks Collins Kirby Little Chris.
Pumps and Lift Stations. Background Fluid Moving Equipment Fluids are moved through flow systems using pumps, fans, blowers, and compressors. Such devices.
Design a hydroelectric system that will provide power for the homes and school house in the community of El Dulce in Jarabacoa, Dominican Republic Hydroelectric.
ATM 2012: Automation Training Module William R. Hentschel, Aaron Palmietto, Scott Puckett, Cassandra Sattler Undergraduate - Texas A&M University at Galveston.
HU 121 History of Engineering and Technology Fall 2012/13 Pharos University in Alexandria Faculty of Engineering Water Engines Lect6A.
Turbocharger matching While the operating engineer will not normally be involved in turbo-charger matching, a familiarity with the procedure will lead.
Basic Mechanical Engineering-Hydraulic Turbines
Matching of Machine with Resource/Demand P M V Subbarao Professor Mechanical Engineering Department A Response time Based Parameter….
EPT 221 PARAMETRIC DESIGN. Objectives of Lecture Describe the parametric design phase. Describe and apply the steps involve in the parametric design phase.
Hydraulic machinery Turbine is a device that extracts energy from a fluid (converts the energy held by the fluid to mechanical energy) Pumps are devices.
BASIC MECHANICAL ENGINEERING. TURBINES TURBINES Hydraulic Turbines 1. Impulse Turbine – Pelton Wheel Potential energy of water is converted into kinetic.
Jets & Buckets for Pelton Wheels Means to Complete the Second Law of Power Retrieval……. P M V Subbarao Professor Mechanical Engineering Department.
Introduction to Energy Management
is a device that extracts thermal energy from pressurized steam and uses it to do mechanical work on a rotating output shaft.
CENTRIFUGAL PUMPS:- DESIGN & PERFORMANCE Ir. N. Jayaseelan 2012.
NOTE: To change the image on this slide, select the picture and delete it. Then click the Pictures icon in the placeholder to insert your own image. Water.
Water turbines Billy Gerena # Robert De Aza # 66880
Fluid Mechanics for Chemical Engineers Arif Hussain (Lecturer)
Presented By : SONU DEEP ELECTRICAL ENGINEERING.
Hydraulic Turbines  EN:  TAILOR VIPUL.B. SUBMITED TO :- B.J.SHETH.
Power – Energy Relationships
Unit 40: Engines and motors Dr
Project of Hydraulic/Water Turbine
HYDRAULIC TURBINES.
BHAGWANT UNIVERSITY AJMER
Fluid Mechanics and Machinery Hydraulic Turbines
Unit 40: Engines and motors Dr
GURU RAMDAS KHALSA INSTITUTE OF SCIENCE & TECHNOLOGY SEMINAR ON HYDRAULIC TURBINE SUBMITTED TO MS. KAVITA NISHAD PRESENTED BY ASHISH SAHU III – SEM,
The Multistage Impulse Turbines
HYDRAULIC TURBINES.
Francis turbine.
PELTON WHEEL AND FRANCIS TURBINE
CHAPTER FOUR TURBINES 4-1 Brief Description
TURBOMACHINES Chapter 1 INTRODUCTION
Analysis of Multi Stage Steam Turbines
Pumps and Lift Stations
Solar Energy Based Energy Systems - II
Patrick Duggan, Eric Goff, Garrett Hart, Tom Kline, Chris Salim
Basic Mechanical Engineering-Hydraulic Turbines
The other main type of energy-producing hydroturbine is the
Urban Ecology Studio: 125th Street Smart Street Proposals
Hydraulic Turbine Dr. Rajendra Shrestha.
Small Scale Hydropower Optimization
Review from Lecture 1: Pumps
Performance Curves Dr. C. L. Jones Biosystems and Ag. Engineering.
Hydraulic Turbines Presented By: Vinod Dahiya
Presentation transcript:

Pelton Wheel Turbine Generator Drew Ramsey, Ashley Munguia, Justin Johnstone, Chris Yonts Undergraduate – Texas A&M University at Galveston Senior Advisor: Dr. Martinez Marine Engineering Technology Introduction The Pelton wheel is an impulse turbine which is among the most efficient types of water turbines. It was invented by Lester Allan Pelton in the 1870s. The Pelton wheel extracts energy from the impulse (momentum) of moving water, as opposed to its weight like traditional overshot water wheel. Although many variations of impulse turbines existed prior to Pelton's design, they were less efficient than Pelton's design; the water leaving these wheels typically still had high speed, and carried away much of the energy. Pelton's paddle geometry was designed so that when the rim runs at ½ the speed of the water jet, the water leaves the wheel with very little speed, extracting almost all of its energy, and allowing for a very efficient turbine. The purpose of this project is to design and construct an efficient pelton wheel turbine generator. Objectives  To design an efficient Pelton wheel based off of the rated flow rate from the pump.  To design a system that can be rolled into a classroom as a visual aid.  To generate power from water by attaching a motor to the shaft which will be used as a generator.  To calculate and select the appropriate dimensions for the piping, nozzle, and pitch circle diameter. Materials 6061 – T6 Aluminum Flotec 1/3 hp submersible pump Pamor Pelton Wheel 1-1/2 inch Schedule 40 PVC pipe Brute 20 gallon trash can Lexan Birch plywood Pressure treated timber (4x4) ½ inch nozzle Treadmill motor Pillow block bearing Heavy duty casters Design Parameters / Applications  Submersible pump rated at 52 GPM  Fluid velocity out the nozzle of 81.7 ft/sec based on pump flow rate  No welding  Minimal bolting  Theoretical RPM of 1575 based off of angular speed  3 phase induction motor rated for 1750 RPM 3/4 hp The industrial applications for this design include:  Any system with a large amount of free flowing water with a large amount of head.  Large Commercial buildings located in areas such as Seattle, where there are high amounts of rainfall. The buildings roof would collect the rainfall and provide enough head down the gutter system to the nozzle and Pelton wheel.  Dams Results / Modifications After completing the fabrication of the system, we tested the system and did not reach the performance expectations of the overall machine. Therefore, after troubleshooting the system we decided to test the pump and see if we were actually achieving the expected flow rate. We measured the flow rate of the pump to be 7 GPM (13% of its rated output). This flow rate is not adequate for the Pelton wheel dimensions. We measured the shaft RPM of our system to be 350 RPM, which is not enough for the size motor we originally purchased. However, from this RPM we were able to calculate the theoretical output power of the wheel to be 220 Watts. We then obtained a treadmill motor that will allow for power generation based on our flow rate. Based off of the flow rate that the pump actually gave us, had it reached the rated 52 GPM we would have been able to reach our preliminary goal of 1575 RPM and produce power without having to modify the system from the original plans. The piping was selected based off of the rated flow rate of the pump, it is over sized compared to the measured flow rate. Acknowledgements Without the help, knowledge or expertise of the following, known of this would have been possible: Dr. Martinez – Senior Lecturer – TAMUG Professor Coleman – Lecturer – TAMUG Kevin Win – Tech Lab Coordinator – TAMUG Vincent Treglia – Lecturer – Tamug Ruth Jennings – Wood Shop Randy Andersen – Dickinson Machine