Steam Turbines Table of Contents Introduction 3 Components 4 Principle of Operation 6 Over-Speed Trip Mechanism 6 Introduction The Steam Turbine is a device that converts thermal energy to mechanical energy in order to produce work‚ which is then used to drive a load. The steam turbine is design based on the Rankin Vapor Cycle shown in Figure 1 Figure 1: Rankin Cycle Diagram The Rankin Vapor Cycle work in four main processes which are: Compression – Heating – Expansion – Cooling Process 1-2:
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Unit-2 Subject : Applied Thermodynamics : Question bank Steam Nozzle-(Theory) 1 2 3 4 5 6 7 8 1 What is steam nozzle? Why it is convergent divergent? What assumptions are adopted in analyzing flow through nozzle? Explain the significance of critical pressure ratio. What is the steady flow energy equation of nozzle? Explain its use in calculating the steam velocity at exit? Why the divergent portion of nozzle is necessary? Define nozzle efficiency. What is the effect of friction in nozzle Explain
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Steam Generators A steam generator generates steam at the desired rate at the desired pressure and temperature by running fuel in its furnace (used in both fossil-fuel and nuclear-fuel electric generating power stations). It is a complex integration of furnace‚ superheater‚ reheater‚ boiler or evaporator‚ economizer and air preheater along with various auxiliaries such as pulverizers‚ burners‚ fans‚ stokers‚ dust collectors and precipitators‚ ash handling equipment and chimney/stack. Steam
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How is the steam engine significant in history? The original steam engine was built in 1712 by a man with a creative‚ innovative mind whose name was Thomas Newcomen. From a never ending search for energy sources came this machine which impacted and changed the world by maximizing production‚ efficiency‚ reliability and minimizing the total times to make products. Through this invention came radical changes in work as well as transportation. The countries that believed in this machines capabilities
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STEAM TURBINES 50 KW To 6 MW SINGLESTAGE /MULTISTAGE /CONDENSING / EXTRACTION-CONDENSING We are pleased to introduce ourselves as Manufacturer of complete range of Steam Turbines and Turbo Generator Sets ranging from 50 KW to 6000 KW for power generation and for drive application. Turbines are manufactured with American know-how and are highly engineered to operate in most rugged conditions. TYPES OF SINGLE STAGE TURBINES: (50 KW To 2‚500 KW) 1. 2. 3. • • Sl. No 1 2 3 4 Horizontally Split
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The Steam Turbine‚ Part I The Steam Turbine by Sir CHARLES A. PARSONS‚ K.C.B. Best viewed with window no wider than the above line. THE STEAM TURBINE In modern times the progress of science has been phenomenally rapid. The old methods of research have given place to new. The almost infinite complexity of things has been recognized and methods‚ based on a co-ordination of data derived from accurate observation and tabulation of facts‚ have proved most successful in unravelling the secrets of
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This is a Newspaper on Steam engines. The Watt steam engine (alternatively known as the Boulton and Watt steam engine) was the first type of steam engine to make use of steam the new design replaced Newcomen engines in areas where coal was expensive‚ and then went on to be used in the place of most natural power sources such as wind and water. A Scottish instrument maker‚ James Watt‚ was given the job in 1763 of repairing a model Newcomen engine for the University of Glasgow‚ and noted how inefficient
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STEAM TURBINES A steam turbine is a prime mover which converts heat energy into mechanical energy. In a conventional steam turbines cycle‚ water is used as the working fluid. The water is heated in a boiler by burning fuel. It evaporates into steam which is expanded in a turbine where mechanical power is generated. The steam generated is of high temperature and high pressure. The temperature is often in the 450 to 540 degrees centigrade range. The pressure ranges between 60 and 120 bar. The
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Title: Distillation of an Ethanol Using Fractional Distillation Lab Report Abstract: This experiment aimed to separate the components of a mixture using Fractional Distillation. A volume of 28.0mL of a mixture including ethanol was heated until the temperature reached 78.0 C. Approximately 1.0mL of distillate was collected between 78.0 – 84.0 C. Percent composition by weight of the 1.0mL sample was determined to be 95% ethanol. By careful and accurate techniques‚ a high percent composition
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EXECUTIVE SUMMARY: The main objective of this project was to carry out a design on the Propane distillation column for a process that produces 1‚3 Butadiene. The raw materials used are Butane‚ Oxygen and Water and the process capacity is 100 000 tonnes per annum nominal. In the previous work it was stated that the plant is located in China. The main location of the plant is in the capital city of the Gansu Provence‚ Lanzhou. This was decided as the location over other provinces due to the excellent
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