! ! Project Title ! (DIY) In order to heat almost 10000 gallons of water using solar energy‚ we have designed and implemented a solar hea9ng device. The design concept is to use a black pipe to absorb heat from the sun light in order to heat the water flowing in the pipes. This solar
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throughout the year‚ w/out mechanical power. Active- requires mechanical power to circulate air‚ water‚ or heat is stored until used‚ ex. pumps etc. Solar collectors- provide space heating or hot water are usually flat parts consisting of a glass covered plate over a black background where an absorbing fluid is circulated throug tubes. solar radiation enters glass + is absorbed by black background Heat is emitted from black material heating fluid circulating in tubes. Phytovadtaic cells- made of thin
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of the system is shown schematically in Figure (3-2). The details of the AGMD system‚ equipment‚ measuring instruments are given in the following sections. Figure 3-1: Photograph of AGMD system. 1. Water Bath 6. Temperature sensor 2. Peristaltic pump 7. Glass Trap 3‚9. Valve 10. Chiller 4‚8. Pressure gauge 11. Data Acquiesce 5. Membrane module 12. Computer Figure 3-2: Schematic diagram of the experimental rig of AGMD process. 3.2.1 Heating Unit The solution in a conical flask was heated by
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analyzed. An expression for the efficiency of the simple cycle is introduced. Theoretical analysis shows that strong and weak solution concentration limits play a decisive role in the value of cycle efficiency. S ystem efficiency with consideration of heat and work added to the system is well defined. The limits of regeneration temperature and mass of strong solution per kg of produced vapor are found highly dependent on the operating concentration of desiccant. Experimental results show that solution
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Gasoline Pump Control System Software Requirements Specification Team 12 Tanay Naik‚ Lucky Nanwani Table of Contents 1. Introduction 1 1.1 Purpose 1 1.2 Scope 1 1.3 Overview 1 2. Overall description 2 2.1 Product perspective 2 2.2 User interfaces 2 2.2.1 Cashier station 2 2.2.2 Management station 3 2.3 Hardware interfaces
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sg/zeb/poweredbysun.html)‚ the Z.E.B. Singapore is fully powered by solar energy‚ whereas the Z.E.O building in China is semi-powered by solar energy. Aside from solar energy‚ the Z.E.O. building in China converts heat energy collected from a horitzontal water sourced heat pump as well as a vertical soil sourced heat pump into energy for lighting as well as for the heating and cooling of the building. Z.E.B. Singapore isn’t in a four-season part of the world‚ thus‚ it doesn’t require a cooling and heating system as
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ENERGY WATER PUMP GROUP1-CIC-4 EFDP2012 Final Report for Water Pump Group1-CIC-4 Executive Summary In the Anh Minh district of Vietnam‚ most of the people are using the manual water pump which is hardly to be operated by elders and children‚ also‚ it has the low capacity about 1‚200 litres per hour. Nowadays‚ with the increasing number of water demand‚ the old manual pumps have to be improved or changed to the alternative energy water pump such as the wind power water pump which our team
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Modeling Queuing Phenomenon at Petrol Pumps -A Case Study of Bharat Petroleum Rakesh Kumar Lecturer School of Mathematics Shri Mata Vaishno Devi University‚ Sub Post Office‚ Katra-182320 (J&K)-INDIA Abstract The queuing problems are more frequent everywhere. A significant amount of time and resources are wasted if we do not have a suitable mechanism to deal with the rising congestion/queuing problems. This study is a part of a consultancy project which is undertaken at Bharat Petroleum. The problems
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Objective: to show the relationship between pressure and temperature of saturated steam Apparatus: a Marcet boiler (Figure 1) is used. It is provided with a pressure gauge‚ a digital thermometer and a safety valve. An aneroid barometer is used to determine atmospheric pressure. 1 2 3 Drain valve Heater Overflow Variation of saturation temperature with pressure Thermodynamics Laboratory Manual Marcet boiler 4 5 6 7 8 9 Temperature sensor Pressure relief valve Filler opening with
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attain knowledge about laws of thermodynamics and their application in thermal engineering. This course provides a foundation for subsequent major engineering courses like Fluid Mechanics‚ Thermodynamics II‚ Heat and Mass Transfer and many more. The knowledge gained during the course is applied to heat / refrigeration cycles and thermodynamic work and energy balance for open and closed systems. Pre-Requisites: Nil Text Book: “Thermodynamics: An Engineering Approach”‚ 6th edition by Yunus
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