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Fluid Dynamics
Fluid Dynamics ME 3370 Design Project I We, have worked this assignment entirely on our own and have received help from no one outside of our group. Our design consists of a piston-cylinder mechanism that expels water out to produce propulsion. A valve stem allows us to compress air in the air chamber. We will be able to find a volume of air which will maximize the expansion therefore maximizing the use of water for propulsion. We will also be able to calculate the buoyancy force acting on the design itself. By counteracting this force, it will allow us to create a submerged craft. By making assumptions, we can use Bernoulli’s equation to determine the exit velocity from the craft. Using this exit velocity we determine the mass flow rate out of the valve. With this information and the change in mass, we can determine the burn time, allowing us to use the momentum equation to calculate the average velocity of the craft. Predicting the burn time and the average velocity will enable us to find the distance the craft traveled in the water. Our submarine design consists of a piston-cylinder mechanism. Compressed air using, equation, find, velocity, mass, assumptions, craft, water, flow, therefore, change, time, submarine, rate, valve, pvc, piston, performance, momentum, length, exit, drag, design, cost, analysis, air, 20, volume, travel, term, out, energy, distance, determine, calculated
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