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Showing posts with the label shaft coupler

#27 Why the circuit Current (I) decrease, when Inductance (L) or inductive reactance (XL) increases in inductive circuit?

Why the circuit Current (I) decrease, when Inductance (L) or inductive reactance (XL) increases in inductive circuit?   Explain the statement that ” In Inductive circuit, when  Inductance (L) or inductive reactance (X L ) increases, the circuit Current (I) decrease”   OR Why the circuit Current (I) decrease, when   Inductance (L) or inductive reactance (X L ) increases in inductive circuit? Explanation: We know that,  I = V / R,  but in inductive circuit,  I = V/X L So Current in inversely proportional  to the Current ( in inductive circuit. Let ‘s check with an example..     Suppose, when Inductance (L) = 0.02H V=220, R= 10 Ω,  L=0.02 H , f=50Hz. X L  = 2πfL = 2 x 3.1415 x 50 x 0.02 = 6.28 Ω Z = √ (R 2 +X L 2 ) = √ (10 2  + 6.28 2 ) = 11.8 Ω I = V/Z = 220/11.8 =   18.64 A Now we increases Inductance (L) form 0.02 H to 0.04 H, V=2...

#8 TRANSDUCERS

      INTRODUCTION OF TRANSDUCERS  A transducer is a device that convert one form of energy to other form. It converts the measurand to a usable electrical signal.   In other word it is a device that is capable of converting the physical quantity into a proportional electrical quantity such as voltage or current. BLOCK DIAGRAM OF TRANSDUCERS • Transducer contains two parts that are closely related to each other i.e. the sensing element and transduction element.  • The sensing element is called as the sensor. It is device producing measurable response to change in physical conditions.  • The transduction element convert the sensor output to suitable electrical form. CHARACTERISTICS OF TRANSDUCERS 1. Ruggedness  2. Linearity  3. Repeatability  4. Accuracy  5. High stabilityand reliability  6. Speed of response  7. Sensitivity  8. Small size TRANSDUCERS SELECTION FACT...

#2 Thermal power plant and its working

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Thermal Power Plants Thermal power plants use water as working fluid. Nuclear and coal based power plants fall under this category. The way energy from fuel gets transformed into electricity forms the working of a power plant. In a thermal power plant a steam turbine is rotated with help of high pressure and high temperature steam and this rotation is transferred to a generator to produce electricity. Fig.1 Power is produced in thermal power plants by rotating steam turbine Energy absorption from steam When turbine blades get rotated by high pressure high temperature steam, the steam loses its energy. This in turn will result in a low pressure and low temperature steam at the outlet of the turbine. Here steam is expanded till saturation point is reached. Since there is no heat addition or removal from the steam, ideally entropy of the steam remains same. This change is depicted in the following p-v and T-s diagrams. If we can bring this low pressure, low temperature st...