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Solar Sausage for Desalination Sponsor: FAMU-FSU College of Engineering Advisor: Dr. Michael Devine Dr. Shangchao Lin Group: Alexandra Filardo Joseph Hamel Alexander Stringer Crystal Wells
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Overview Sun Tracking System Testing o Completed Testing o Future Testing o Safety Procedures & Water Quality Commercialization Plan and Customer Profile Budget Schedule The Project o Objectives and Scope Solar Sausage The System o Design o Piping System o Storage Tank o Pressure Regulation System o Operation o Condenser o Maintenance Solar Sausage for Desalination Crystal Wells 2
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The Project Project ScopeObjectives To create a solar desalination system utilizing an inflatable parabolic reflector called the Solar Sausage To create a system that can be easily mass produced at low cost. Produce drinking water with a saline concentration less than 100 ppm Support a family of 5 Minimize cost Create a user friendly system that can be easily transported and constructed Solar Sausage for Desalination Crystal Wells 3
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Solar Sausage Figure 1: Cross-Sectional view of the Sausage Solar Sausage for Desalination Crystal Wells 4
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The System: Design Solar Sausage for Desalination Alex Stringer 5 Solar Sausage Stand Storage TankCondenser Figure 2: System Configuration A)Side View B)Cross-Sectional View B) A) Trough
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The System: Design Solar Sausage for Desalination Alex Stringer 6 A)B) Figure 3: System Configuration Expanded View A)Piping System B)Interior View
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The System: Storage Tank Solar Sausage for Desalination Alex Stringer 7 A) B) C) Figure 4: Storage Tank Components A)5 Gallon Bucket B)Platform C)Piping System
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The System: Storage Tank Configuration Solar Sausage for Desalination Alex Stringer 8 Figure 5: Simplified Storage Tank Configuration
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11/8” ID plastic tubing Needle ValveTri-Barb Foot-Pump Pressure Gauge Pipe from Solar Sausage The System: Pressure Regulation Solar Sausage for Desalination Alex Stringer 9 Two systems required 8 Pieces, 4 not shown Needle Valve allows for precision control of the airflow Figure 6: Simplified Pressure Regulation System Configuration
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The System: Condenser Solar Sausage for Desalination Alex Stringer 10 A)B) Figure 7: Condenser Section A)Raised end B)Lowered end and collection point C)Interior View
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The System: Sun Tracking Straps o Glued to sides of Solar Sausage (shown in red) o Crossed beneath Solar Sausage o Attached to weighted bar underneath Converts linear translation to rotational motion Direction of rotation of Solar Sausage dependent on bar motion o Ex. Moving bar to the right produces counterclockwise rotation of Solar Sausage Solar Sausage for Desalination Alex Stringer 11 Figure 8: Simplified Diagram of the sun tracking system.
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The System: Operation Solar Sausage for Desalination Alex Stringer 12 Fill water storage tank with saline water to filter out debris
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The System: Operation Solar Sausage for Desalination Alex Stringer 13 Open valve to fill trough with filtered water
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The System Operation Solar Sausage for Desalination Alex Stringer 14 Use the Pressure Regulation System to create focal point and heat the trough
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The System Operation Solar Sausage for Desalination Alex Stringer 15 Water vapor rises into the dome, condenses then collects in the channels
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The System Operation Solar Sausage for Desalination Alex Stringer 16 The gradient drives the water to the collection pipe. The desalinated water is collected in a container of choice by the operator Desalinated Water
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The System: Maintenance Daily Maintenance o Clean Trough of all saline build up o Clean Condenser of all build up o Check Solar Sausage for any tearing Weekly Maintenance o Rinse saline water filter of all dirt and debris o Clean desalinated water containers o Tighten all connections on the pressure regulation system o Clean Saline Water and Desalinated Water piping systems of all build up Solar Sausage for Desalination Crystal Wells 17
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Testing: Completed Testing Relationship of Flow Rate and Handle Position Handle Position (degrees) Average Flow Rate (gal/min) 200.00 450.60 601.44 903.14 Solar Sausage for Desalination Crystal Wells 18 Calibration and Confirmation of Equipment accuracy o Salinity: Accuracy of 2% o Thermometer: Accuracy of 1.5% Relationship of flow rate and valve handle angle Figure 2: Valve shown at (a) 0˚ position (Closed) and (b) 90 ˚ position (Open) (a) (b)
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Testing: Future Testing Solar Sausage for Desalination Crystal Wells 19
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Testing: Safety & Quality Safety ProceduresWater Quality Heat-Resistant gloves will be worn during testing All temperatures will be taken at a distance with a Pistol-Grip Infrared Thermometer Trough and Condenser will be allowed 30 minutes to cool after testing before Solar Sausage for Desalination Crystal Wells 20
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Business Plan Commercialization PlanCustomer Profile 1 st year: Network 2 nd - 4 th year: Enter market 5 th /6 th : development of domestic commercialized systems Non-profit organizations & humanitarian engineering teams On-site training by organization or team Solar Sausage for Desalination Crystal Wells 21
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Budget Solar Sausage for Desalination Crystal Wells 22
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Schedule Solar Sausage for Desalination Crystal Wells 23
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Summary Desalination system utilizing the Solar Sausage technology Design o Modular, little maintenance, components, and sun-tracking system Testing o Completed: Determine optimal flow rate based on handle position o Future: Focal point concentration, Sun-tracking system values, Type of distillation o Safety & Quality: heat-resistant gloves and thermometers used, testing salinity Business o International market within 4 years o Domestic mass production within 6 years Budget o 23% spent Currently on Schedule o Weather conditions Solar Sausage for Desalination Crystal Wells 24
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Questions? For more information: http://eng.fsu.edu/me/senior_design/2015/team07/ http://eng.fsu.edu/me/senior_design/2015/team07/ 25 Solar Sausage for Desalination Crystal Wells
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