he water taken from a stream at an average speed of 5 m/s is transferred to the turbine by a forced (pressurized) pipe system in order to generate electrical energy. After passing through a 10 m3/s flow rate turbine passing through a pressure pipe, it is poured into the lake downstream. the total irreversible (irreversible) load (energy) loss Dec the piping system between points 1 and 2 (excluding the turbine) is determined as 8 m. Calculate the theoretical and actual power of the turbine by taking the efficiency of the turbine generator set, η = 0.85
he water taken from a stream at an average speed of 5 m/s is transferred to the turbine by a forced (pressurized) pipe system in order to generate electrical energy. After passing through a 10 m3/s flow rate turbine passing through a pressure pipe, it is poured into the lake downstream. the total irreversible (irreversible) load (energy) loss Dec the piping system between points 1 and 2 (excluding the turbine) is determined as 8 m. Calculate the theoretical and actual power of the turbine by taking the efficiency of the turbine generator set, η = 0.85
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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The water taken from a stream at an average speed of 5 m/s is transferred to the turbine by a forced (pressurized) pipe system in order to generate electrical energy. After passing through a 10 m3/s flow rate turbine passing through a pressure pipe, it is poured into the lake downstream. the total irreversible (irreversible) load (energy) loss Dec the piping system between points 1 and 2 (excluding the turbine) is determined as 8 m. Calculate the theoretical and actual power of the turbine by taking the efficiency of the turbine generator set, η = 0.85.
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