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ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATION

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Page 1: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

ELECTRIC ENERGY GENERATION,UTILISATION & CONSERVATION

Page 2: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

UNIT- I

GENERATION

UNIT- I

GENERATION

Page 3: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

CONVENTIONAL METHODS

Classifications:

a) Hydro electric power station

b) Steam power station

c) Nuclear power station

CONVENTIONAL METHODS

Classifications:

a) Hydro electric power station

b) Steam power station

c) Nuclear power station

Page 4: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

HYDRO ELECTRIC POWER PLANT

Page 5: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Parts of Hydro electric power station: Reservoir Dam Surge tank Valve house Penstock Turbine Draft tube Power house

Parts of Hydro electric power station: Reservoir Dam Surge tank Valve house Penstock Turbine Draft tube Power house

Page 6: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Advantages:

Water is the cheapest and reliable

source

No fuel transportation problem

Maintenance cost is low

Running cost is low

Life of this plant is more

Advantages:

Water is the cheapest and reliable

source

No fuel transportation problem

Maintenance cost is low

Running cost is low

Life of this plant is more

Page 7: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Disadvantages:

Long time for erection

Capital cost of the plant is high

Cost of transmission lines and

losses will be more

Depends on rain fall

Disadvantages:

Long time for erection

Capital cost of the plant is high

Cost of transmission lines and

losses will be more

Depends on rain fall

Page 8: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

STEAM POWER PLANT

Page 9: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Advantages:

Fuel is the cheapest source

Capital cost is low

Cost of transmission lines and

losses will be low

Advantages:

Fuel is the cheapest source

Capital cost is low

Cost of transmission lines and

losses will be low

Page 10: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Disadvantages:

Maintenance cost of the plant is high

Running cost is high

Ash handling is difficult

Air is polluted

Disadvantages:

Maintenance cost of the plant is high

Running cost is high

Ash handling is difficult

Air is polluted

Page 11: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Nuclear Power plant

Energy released from the

continuous nuclear fission

Neutron from U-235 strikes

another nucleus and causes to

fission.

Energy released from the

continuous nuclear fission

Neutron from U-235 strikes

another nucleus and causes to

fission.

Page 12: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Main components: Fuel : pellets of

uranium - rods

Reactor core : no. of fuel rods

Moderator : to moderate the

neutron velocity

(graphite, heavy

and light water)

Fuel : pellets of

uranium - rods

Reactor core : no. of fuel rods

Moderator : to moderate the

neutron velocity

(graphite, heavy

and light water)

Page 13: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Coolant : to transfer heat

(water, liquid

metals)

Control rods : Neutron absorber

(cadmium, boron &

hafnium)

Pressure vessel : to maintain

constant pressure.

Coolant : to transfer heat

(water, liquid

metals)

Control rods : Neutron absorber

(cadmium, boron &

hafnium)

Pressure vessel : to maintain

constant pressure.

Page 14: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

PRESSURIZED WATER REACTOR

Page 15: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

REACTOR

PRESSURIZED WATER REACTOR

REACTOR

Page 16: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

BOILING WATER REACTOR

Page 17: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Advantages:

Amount of fuel required is very

small

No fuel transportation problem

Less space is required

Located at load centre

Most economical

Advantages:

Amount of fuel required is very

small

No fuel transportation problem

Less space is required

Located at load centre

Most economical

Page 18: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Disadvantages:

Long time for erection

Capital cost and maintenance costof the plant are high

By products are radio active andcause pollution

Fuel is expensive

Disadvantages:

Long time for erection

Capital cost and maintenance costof the plant are high

By products are radio active andcause pollution

Fuel is expensive

Page 19: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

TIDAL POWER PLANT

It is a rise and fall of water level of

sea

Due to the action of sun and moon

on the earth water.

It is a rise and fall of water level of

sea

Due to the action of sun and moon

on the earth water.

Page 20: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Classifications:

Single basin arrangement.

Double basin arrangement.

Classifications:

Single basin arrangement.

Double basin arrangement.

Page 21: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

General scheme of tidal power plant

Page 22: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Main components:

a) Power house

b) Dam to form basin

c) Sluice gates

a) Power house

b) Dam to form basin

c) Sluice gates

Page 23: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Operation of single basin arrangement

Page 24: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Sluice gates open, Turbines shut off

Page 25: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Sluice gates shut, Turbine operation

Page 26: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Advantages:

a) Renewable source of energy

b) Non polluting

c) No transportation problem

d) Cheaper

Advantages:

a) Renewable source of energy

b) Non polluting

c) No transportation problem

d) Cheaper

Page 27: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Disadvantages:

a) Tidal energy is fluctuating innature

b) Noisy in operation

c) Over all weight is very high

d) Not reliable

Disadvantages:

a) Tidal energy is fluctuating innature

b) Noisy in operation

c) Over all weight is very high

d) Not reliable

Page 28: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

MAGNETO HYDRO DYNAMICGENERATION

Page 29: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Components:

a) Combustor

b) MHD generator

c) Air pre heater

Components:

a) Combustor

b) MHD generator

c) Air pre heater

Page 30: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

a) Purifier

b) Inverter

c) Seed recovery

d) Stack

a) Purifier

b) Inverter

c) Seed recovery

d) Stack

Page 31: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

ADVANTAGES

Conversion efficiency is around50%

Capital cost is less

Over all generation is less

No moving parts

Closed cycle system producespower, free of pollution

Conversion efficiency is around50%

Capital cost is less

Over all generation is less

No moving parts

Closed cycle system producespower, free of pollution

Page 32: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

The heat energy of interior ofearth.

Classifications:

•Direct or dry steam PP

•Flash steam

•Binary fluid

GEOTHERMAL POWER PLANT The heat energy of interior of

earth.

Classifications:

•Direct or dry steam PP

•Flash steam

•Binary fluid

Page 33: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Components:

a) Hot brine

b) Turbine

c) Condenser

d) Heat exchanger

Components:

a) Hot brine

b) Turbine

c) Condenser

d) Heat exchanger

Page 34: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

FLASH STEAM POWER PLANTFLASH STEAM POWER PLANT

Page 35: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

BINARY CYCLE POWER PLANTBINARY CYCLE POWER PLANT

Page 36: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Advantages:

Versatile in use

Cheaper

Highest annual load factor

Pollution less

Advantages:

Versatile in use

Cheaper

Highest annual load factor

Pollution less

Page 37: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Disadvantages:

Efficiency is low

Noisy drilling operation

Need large area

Disadvantages:

Efficiency is low

Noisy drilling operation

Need large area

Page 38: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

SOLAR POWER PLANT

Page 39: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Sub systems

Solar energy collection system

Thermal energy transfer system

Thermal energy storage system

Energy conversion system

Sub systems

Solar energy collection system

Thermal energy transfer system

Thermal energy storage system

Energy conversion system

Page 40: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

PARABOLIC THROUGH SYSTEM

Page 41: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Advantages:

It is free of pollution

Requires little maintenance

economical

Advantages:

It is free of pollution

Requires little maintenance

economical

Page 42: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Disadvantages:

Available only by day not whensun is cloudy

Not reliable

Located at high attitudes

Initial cost is high.

Disadvantages:

Available only by day not whensun is cloudy

Not reliable

Located at high attitudes

Initial cost is high.

Page 43: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

DISTRIBUTED GENERATION

The integrated use of small generation

units directly connected to the system

They operate on a renewable fuel such

as sun light, wind, gas and biomass

The integrated use of small generation

units directly connected to the system

They operate on a renewable fuel such

as sun light, wind, gas and biomass

Page 44: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Example of technologies used :

Micro turbines

Fuel cells

Photovoltaic cell

Internal combustion engines

Example of technologies used :

Micro turbines

Fuel cells

Photovoltaic cell

Internal combustion engines

Page 45: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

UNIT II

CONSERVATIONCONSERVATION

Page 46: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Economics of Generation

Connected load - sum of continuousratings of allsystems

Maximum demand - greatest demand ofload

Demand factor - Maximum demandConnected load

Connected load - sum of continuousratings of allsystems

Maximum demand - greatest demand ofload

Demand factor - Maximum demandConnected load

Page 47: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Load factor - Average load/Maximumdemand

Diversity factor - Sum of individualDemand / Max.demand

Capacity factor - Average demand/ plantcapacity

Load factor - Average load/Maximumdemand

Diversity factor - Sum of individualDemand / Max.demand

Capacity factor - Average demand/ plantcapacity

Page 48: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Load curve

Curve showing the load demand Very useful in determining the annual

requirements for energy

Curve showing the load demand Very useful in determining the annual

requirements for energy

Page 49: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Load duration curve

Obtained from load curveLoad elements of load curve are arranged

in descending order

Obtained from load curveLoad elements of load curve are arranged

in descending order

Page 50: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Load on the power station:

Base load - unvarying load occursthe whole day.

Peak load - various peak demandsof load over & abovebase load

Base load - unvarying load occursthe whole day.

Peak load - various peak demandsof load over & abovebase load

Page 51: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Cost of Electrical Energy

Fixed cost

Running cost (or ) cost of energy

Fixed cost

Running cost (or ) cost of energy

Page 52: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Fixed cost:

Cost which is independent of

maximum demand &units generated

Capital cost of power plant

Interest on capital, taxes &insurance

Fixed cost:

Cost which is independent of

maximum demand &units generated

Capital cost of power plant

Interest on capital, taxes &insurance

Page 53: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Running cost :

Depends on only upon the no of

units generated

Cost of fuel

Maintenance cost

Operation cost.

Depends on only upon the no of

units generated

Cost of fuel

Maintenance cost

Operation cost.

Page 54: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Tariff

Different methods of charging

consumers are known as tariff

It should be simple and

comprehensible to the public

It should be uniform

Different methods of charging

consumers are known as tariff

It should be simple and

comprehensible to the public

It should be uniform

Page 55: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Types of tariff:

Simple tariff

Flat rate tariff

Block rate tariff

Two part tariff

Maximum demand tariff

Power factor tariff

Simple tariff

Flat rate tariff

Block rate tariff

Two part tariff

Maximum demand tariff

Power factor tariff

Page 56: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Need for Electrical Energy Conservation

• In order to save the scarce and fastdepleting non renewable energy, sourcessuch as coal, gas etc.

• To protect the environment from thepollution caused by them

• In order to save the scarce and fastdepleting non renewable energy, sourcessuch as coal, gas etc.

• To protect the environment from thepollution caused by them

Page 57: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Effect on Energy Conservation

The energy conservation results in Optimal utilization energy

Prolong the usage of energyavailable in the earth

Reduce green house gas emission

Minimize the global warming

The energy conservation results in Optimal utilization energy

Prolong the usage of energyavailable in the earth

Reduce green house gas emission

Minimize the global warming

Page 58: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Energy Management

The judicious and effective use of energycost to minimize energy cost & tomaximize profits.

Reduce avoidable losses

Use energy efficient technologies

The judicious and effective use of energycost to minimize energy cost & tomaximize profits.

Reduce avoidable losses

Use energy efficient technologies

Page 59: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Energy management strategy

Appoint Energy Manager Conduct Energy Audit Formalize an Energy Management Policy

Statement Conduct Staff Awareness & Training

Programme Annual report

Appoint Energy Manager Conduct Energy Audit Formalize an Energy Management Policy

Statement Conduct Staff Awareness & Training

Programme Annual report

Page 60: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Energy Auditing

Key to a systematic approach for decisionmaking area of energy management.

Quantifies energy usage according to itsdiscrete function

Verification, Monitoring & Analysis of useof energy including submission oftechnical report

Key to a systematic approach for decisionmaking area of energy management.

Quantifies energy usage according to itsdiscrete function

Verification, Monitoring & Analysis of useof energy including submission oftechnical report

Page 61: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Energy Audit methodology

• Macro level - methodology

Energyinput ( A)

Unavoidable losses(C)

Energyinput ( A)

Avoidable losses(D)

Theoreticalrequirement (B)

Page 62: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Energyconservation

Capacity utilization

Fine tuning

Energy conservation at Macro level

Technology up -gradation

Page 63: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Types of Energy Audit:

Preliminary Energy Audit

Detailed Energy Audit

Types of Energy Audit:

Preliminary Energy Audit

Detailed Energy Audit

Page 64: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Preliminary Energy Audit

To establish energy consumption

To estimate the scope for energy

savings

Identify simple energy saving

proposals

To establish energy consumption

To estimate the scope for energy

savings

Identify simple energy saving

proposals

Page 65: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Detailed Energy Audit

Pre Audit phase

Detailed Audit phase

Post Audit phase

Pre Audit phase

Detailed Audit phase

Post Audit phase

Page 66: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Economics of power factor improvement

The power factor can be improved by

Installing static power capacitors

Operating synchronous motor in over

excited

Installing static VAR compensators

The power factor can be improved by

Installing static power capacitors

Operating synchronous motor in over

excited

Installing static VAR compensators

Page 67: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Method of Power factor improvement

Centralized / group compensation

Distributed / Individual

compensation

Mixed compensation

Centralized / group compensation

Distributed / Individual

compensation

Mixed compensation

Page 68: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

POWER QUALITY

It means that supply of powerwithin the permitted variation ofvoltage and frequency and withoutdistortion of sinusoidal wave form inbalance condition

It means that supply of powerwithin the permitted variation ofvoltage and frequency and withoutdistortion of sinusoidal wave form inbalance condition

Page 69: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Parameters

Voltage

Frequency

Harmonics

Power supply disturbances (sags,swells, transients, flickers, interruptsoutages etc.)

Voltage

Frequency

Harmonics

Power supply disturbances (sags,swells, transients, flickers, interruptsoutages etc.)

Page 70: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Harmonics :Multiples of fundamental frequency.Reduced equipment life time &

energy efficiency.

Page 71: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Voltage tags :Decreased in rms voltage or current.Caused by faults, energy heavy loads

Page 72: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Voltage swells:

Increased in rms value of voltage or

current at the power frequency

Page 73: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Voltage transients:

Very short duration over voltagesassociated with impulses

Page 74: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

Flickers:Variation of input voltage Caused by AC,DC arc furnaces

Page 75: ELECTRIC ENERGY GENERATION, UTILISATION & CONSERVATIONfmcet.in/EEE/EE2451_uw.pdf · Tap changer control • Variable voltage control without losses • Low voltage tap changing method

UNIT III

ILLUMINATION, HEATINGAND WELDING

ILLUMINATION, HEATINGAND WELDING

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ILLUMINATION

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Definition of terms

Illumination : Result of lightingfalling on surface.

Luminous Intensity : light output fallingon unit squaremeter of surface,unit is lux

Reflection Factor : Ratio betweenreflected light to theincident light

Illumination : Result of lightingfalling on surface.

Luminous Intensity : light output fallingon unit squaremeter of surface,unit is lux

Reflection Factor : Ratio betweenreflected light to theincident light

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MHSP : Mean Spherical CandlePower- total flux / 4 π

MHCP : Mean Horizontal CandlePower

Reduction factor : MSCP / MHCP

MHSP : Mean Spherical CandlePower- total flux / 4 π

MHCP : Mean Horizontal CandlePower

Reduction factor : MSCP / MHCP

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Laws of Illumination

Inverse Square law

Lambert’s Cosine law

Inverse Square law

Lambert’s Cosine law

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Measurement of Luminous intensity

Bunsen photometer head

Lummer – Brodhun photometer head

Flicker photometer head

Bunsen photometer head

Lummer – Brodhun photometer head

Flicker photometer head

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Bunsen photometer head

It = Is (d2 / d1)2

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Lummer – Brodhun photometer head

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Types of Lamp

Filament Lamp (GLS)

Tungsten Halogen Lamp

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Filament Lamp (GLS)

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Tungsten Halogen Lamp

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Fluorescent Lamp

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High Pressure Mercury Vapour Lamp

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Types of Lighting

Direct lighting

semi direct

Indirect

Semi indirect

Direct lighting

semi direct

Indirect

Semi indirect

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HEATING

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When electric current passes through amedium, heat is produced

H = I2 Rt Joules

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Properties of heating materials

High specific resistance

High melting point

Freedom from oxidation

Small temperature coefficient

High specific resistance

High melting point

Freedom from oxidation

Small temperature coefficient

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Types of Heating

Resistance heatinga) Directb) Indirect

Induction heatinga) Direct

b) Indirect Dielectric heating Arc heating

Resistance heatinga) Directb) Indirect

Induction heatinga) Direct

b) Indirect Dielectric heating Arc heating

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Direct resistance heating

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Indirect resistance heating

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Induction heating

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Types of Induction furnaces

Core typea) Directb) Indirectc) Vertical

Coreless type

Core typea) Directb) Indirectc) Vertical

Coreless type

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Vertical type Induction furnace

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Indirect type Induction furnace

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Coreless type Induction furnace

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UNIT V

ELECTRIC TRACTION

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INTRODUCTION

• Locomotion in which driving force is obtainedfrom motors

• Driving equipment should be capable ofoverloads for short periods

• Maximum tractive effort should be exerted atstarting

• Wear should be minimum

• Locomotion in which driving force is obtainedfrom motors

• Driving equipment should be capable ofoverloads for short periods

• Maximum tractive effort should be exerted atstarting

• Wear should be minimum

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Advantages :

• Cheapest method• Free from smoke and flue gas• Very high starting torque• Smooth and rapid acceleration and braking• Adhesion coefficient is better• Great passenger carrying capacity

• Cheapest method• Free from smoke and flue gas• Very high starting torque• Smooth and rapid acceleration and braking• Adhesion coefficient is better• Great passenger carrying capacity

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Classifications :

Railway Electrification

DCsystem

ACsystem

Compositesystem

DCsystem

ACsystem

Compositesystem

1Φ 3Φ1Φ toDC

1Φ to3Φ

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Speed – Time curve

• Sub urban service

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It consists of

Acceleration period Free run period Coasting period Braking period

It consists of

Acceleration period Free run period Coasting period Braking period

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Main line service

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Important terms

• Creset speed (Vc)

- maximum speed attained bytrain during run

Average speed (Va)

- Distance between stops in km

Actual time of run in hour

• Creset speed (Vc)

- maximum speed attained bytrain during run

Average speed (Va)

- Distance between stops in km

Actual time of run in hour

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Urban service

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Tractive effort is transferred to driving wheel Tractive torque and effort is given by

T = Fd’2

F = 2Td’

d = diameter of gear wheel in metres

Tractive effort is transferred to driving wheel Tractive torque and effort is given by

T = Fd’2

F = 2Td’

d = diameter of gear wheel in metres

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Tractive effort for propulsion of a train

• component needed to provide acceleration

• component needed to overcome trainresistance

• component needed to overcome gradients

• component needed to provide acceleration

• component needed to overcome trainresistance

• component needed to overcome gradients

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Factors affecting specific energy consumption

• Distance between the stops

• Maximum speed

• Weight of the train

• Train resistance

• Acceleration and retardation

• Distance between the stops

• Maximum speed

• Weight of the train

• Train resistance

• Acceleration and retardation

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Teaction motor control

• DC series motor control

• Series – parallel control of DC seriesmotor

• DC series motor control

• Series – parallel control of DC seriesmotor

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DC series motor control

• At the time of starting, no back emf, so motorspeed is high.

• to limit the current, starting resistance isadded.

• Some energy is wasted in resistance

• At the time of starting, no back emf, so motorspeed is high.

• to limit the current, starting resistance isadded.

• Some energy is wasted in resistance

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Energy loss diagram

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Series – parallel control

• two motors are used• at starting they are connected in

series for full speed , they are connected in

parallel Energy loss is minimum

• two motors are used• at starting they are connected in

series for full speed , they are connected in

parallel Energy loss is minimum

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Energy loss diagram

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Series – parallel starting methods

• Shunt or short circuit transition method

• Bridge transition method

• Shunt or short circuit transition method

• Bridge transition method

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Shunt transition methods

Full series first transitionSecond transitionThird transitionFirst parallel full parallel

Full series first transitionSecond transitionThird transitionFirst parallel full parallel

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first seriesFull seriesTransition first parallel full parallel

Bridge transition method

first seriesFull seriesTransition first parallel full parallel

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Full series, first transition and Second transition

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Third transition, First parallel& full parallel

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Bridge transition method

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Third transition, First parallel& full parallel

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Recent trends in electric traction

PWM technique is applied PWM AC drives used in subways, rail cars, trolley

buses, diesel electric and electric locomotives. GTOs are user in PWM inverter technologyMicroprocessors unit controls firing pulses to the

GTOs

PWM technique is applied PWM AC drives used in subways, rail cars, trolley

buses, diesel electric and electric locomotives. GTOs are user in PWM inverter technologyMicroprocessors unit controls firing pulses to the

GTOs

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Advanced speed control

Tap changer control

Thyristor control

Chopper control

Microprocessor control

Tap changer control

Thyristor control

Chopper control

Microprocessor control

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Tap changer control

• Variable voltage control without losses• Low voltage tap changing method

- by keeping the number of turnsprimary turns and changing thesecondary turns

• High voltage tap changing method- keeping turn ration constant and

applying variable voltage

• Variable voltage control without losses• Low voltage tap changing method

- by keeping the number of turnsprimary turns and changing thesecondary turns

• High voltage tap changing method- keeping turn ration constant and

applying variable voltage

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Thyristor control

Magnitude of DC voltage is decided byaverage of the positive half cycles allowed topass through the rectifiers

by allowing positive half cycles

by not allowing certain portion of positive halfcycles

Magnitude of DC voltage is decided byaverage of the positive half cycles allowed topass through the rectifiers

by allowing positive half cycles

by not allowing certain portion of positive halfcycles

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Diagram

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Chopper control

• Pulse Width Modulation- time period constant with variation in Ton & Toff

• Pulse Width Modulation- time period constant with variation in Ton & Toff

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Microprocessor control