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OUR SUBSTITUTE FOR WATER HEATING AND STEAM GENERATION DEVICES WORLDWIDE PATENT PENDING JOHN DORSETT Current Boiler Environment US Industrial sector annually consumes 24.7 quadrillion Btu of water ‘Water heaters’ do not produce a continual supply of hot water, they heat one batch at a time Boilers are able to provide continuous hot water/steam Conventionally, boilers are powered by fossils fuels or electricity derived by burning fossil fuels Or: nuclear power/renewable resources Introduction Our Product Operation Science Conventional Water Heaters Storage Water Heater Keeps water tank hot regardless of consumption Tank-less Water Heater Heat water on demand using a faster method No standby losses The savings of tank-less heaters are lost in installation costs, and maintenance costs, so it lacks widespread use Introduction Our Product Operation Science Conventional Steam Generation Current steam generators require large amounts of space Steam Boilers are usually installed off-site For safety reasons (gas leakage/explosion) Loss of energy in transport of steam Too noisy to have on-site Introduction Our Product Operation Science Current Need Reduce reliance on foreign fuel supplies Reduce environmental impact Cost savings Increased efficiency Introduction Our Product Operation Science Our Product Can remove impurities from liquids while heating Alternative application of product: Cleaning water During steam generation only Much safer because it does not utilize gas power Can be located on-site, therefore reducing transport of steam Flexibility in input voltage Reduced carbon footprint Green product, environmentally friendly Affordable N0 special installation Introduction Our Product Operation Science Costs of Operation: Example 1-Water Variable Activators Installed 4 Amperage 28 Amps (18.48 kW/hr) Water Amount 100 Liters Temperature Initial 15° C Temperature Final 60° C Time Period 4 Minutes Energy Cost (Our Product) $0.2069 USD Energy Cost (Conventional Gas Boiler) $0.3001 USD Energy Cost (Conventional Electric Boiler) $0.4069 Introduction Our Product Operation Science Costs of Operation: Example 2-Steam Variable Activators Installed 4 Amperage 28 Amps (18.48 kW/hr) Water Amount 20 Liters Temperature Initial 15° C Temperature Final 170° C Time Period 5 Minutes Energy Cost (Our Product) $0.2585 USD Energy Cost (Conventional Boiler) $0.3510 USD Introduction Our Product Operation Science Operation: Transfer Unit Our Product operates on the principles of molecular friction and nucleation The transfer unit efficiently heats the water Positioned in the vessel’s interior Houses the two or more ‘activators’ (customizable) Transfer Unit housing allows water to enter and contact the ‘activators’ Equipped is a drain valve which empties accumulated impurities during steam generation Introduction Our Product Operation Science Operation: Activators Manufactured from conductive material In contact with both a power source and the liquid which is to be heated Activators may only be energized when there is enough liquid present in the vessel Input voltage will vary depending on number of activators installed Sensors regulate the electricity flow to activators and monitor other parameters of operation Introduction Our Product Operation Science Operation: Activators One activator is always grounded, the remaining are connected to the power source Example of activators : voltage ratio Activators Voltage 2 120 AC 3 220 AC 4 440 AC 5 680 AC Activators are only powered if they are needed For example, if 2 suffices, only 2 of 5 will receive power Introduction Our Product Operation Science Operation: Summary 1. 2. 3. 4. 5. 6. 7. The liquid sensor detects enough water in the vessel The control unit energizes the activators The current flows to the activators Energy is transferred from activators to the liquid Activators in contact with liquid superheat it Impurities from the liquid may be removed Continuous hot water or steam output released Introduction Our Product Operation Science Our Product: Tankless water heater Our Product In Action