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The Water Benders. Final Presentations. Outline. Introduction Project Description Motivation Problem Statement Objectives Customer Requirements Design Concepts Functional Schematic Design Concept Concept Evaluation Finalized Concept Electrical Schematic Mechanical Schematic
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The Water Benders Final Presentations
Outline • Introduction • Project Description • Motivation • Problem Statement • Objectives • Customer Requirements • Design Concepts • Functional Schematic • Design Concept • Concept Evaluation • Finalized Concept • Electrical Schematic • Mechanical Schematic • Pseudo Code • Proof of Concept • SolidWorks Model • SolidWorks Fluids • Results and Discussion • Conclusions • Parts Inventory • Future Works
Project Description • To design and manufacture a cold water waste recovery system for a shower head.
Motivation • There are third world countries that do not have a readily supply of water available. • In the U.S., alone, 1 household annually waste an estimated 3 thousands kilowatts of energy from hot water running down the drain. With an average cost of $0.07 per kilowatt-hour, this equates to an annual waste of 210 dollars.
Background • Change to the plumbing to allow cold water to be feed back into the system. (Patent 5274860) • Reuse of waste shower water for filling a toilet cistern.( Patent 2305899) • Water temperature regulator that guides water having a temperature lower than the desired value to a storage for reuse. (Patent 609213)
Objective • Design a convenient showering apparatus that does not waste water.
Functionality • Reuse the cold water • Prevent the loss of hot water • Hot water remains at the shower head until ready for use • Comfortable water temperature discharge. • Statically sound ( no vibration) • Minimal use of electricity
Ergonomics Easy to install and service • Do it yourself installation • No need for a plumber or electrician • Small enough to fit in a shower Operate well under showering conditions
Design Parameters • Dimensions limits • 8 inches in depth • 30 inches in height • 24 inches in width • 4 gallon tank • 2gpm exiting shower head • Minimum Cold water temperature • Maximum Hot water temperature • 45 psi hydrostatic pressure
Standards and Codes • ASME Water Quality Guidelines • WatersenseRegulation • Department of Energy Codes • NY Federal Plumbing Code • LEED and Green Building Code • Temperature • Water pressure • Flow rate
Functional Schematic Diagram Cold Water Tank Main Line Hot Water Shower Head
Concept Evaluation • Mechanical: Divert water into the tank • Mechanical: Getting the water out of the tank • Electrical: Aruindriovs. Switches
Concept 1: Thermal Wax Actuator Temperature Sensitive Customizable No Power Consumption
Concept 2: Solenoid Diverter Valve • Inexpensive • Easily controllable • Low power consumption
Concept 2: Pump Pump Cold water
System Requirements • Temperature Sensing – Diverter Selecting • Button Activation – Flow Enabling • Water Level Sensing – Pump Operation • System State Reset • Shower Operable under Malfunction Conditions*
Testing Scenarios • Normal use – User takes a hot shower for a duration period long enough for the tank to empty. • Short shower – User takes a hot shower for a duration period too short for the tank to empty. • Cold shower – User takes a cold shower for an unspecified amount of time. • Bypass/Unpowered– User desires an immediate supply of water and wishes to bypass the tank.
Concept 1: Control by Switches NC = Normally Closed NO = Normally Open
Finalized Concept • Solenoid Diverter Valve • Pump to exact water from the tank • Arduino to control valves and other electrical components
Testing Scenarios • Normal use – User takes a hot shower for a duration period long enough for the tank to empty. • Short shower – User takes a hot shower for a duration period too short for the tank to empty. • Cold shower – User takes a cold shower for an unspecified amount of time. • Bypass/Unpowered– User desires an immediate supply of water and wishes to bypass the tank.
Goals for Next Semester • Manufacture Prototype • Optimize Design Parameters • Water Regulation Codes • Reduce size • Reduce Cost • Implement New Technology • Automatic Power off for system • Battery charge indicator • Inline Turbine Trickle Charge
Parts Inventory • 5 Diodes • 5 Resistors • 5 Transistors • 5 LEDS • 1 Capacitor • 3 Solenoids • Arduino Microcontroller • Bread Board • Batteries • 2 Buttons • 3 Check valves • Shower Head • Pump • Diverter Valve • 2 Temperature Sensor • 2 Pressure Sensor • Water Level Sensors • Tank • Piping • Relay • Dry wall • Hardware
Questions For more information check out our website www.ccnywaterbenders.weebly.com