Nuclear Power Plant

01:35 / Posted by tech data / comments (0)

Nuclear reactors, which produce heat by splitting uranium atoms, do the same job as conventional power producing equipment in the generation of electricity – they produce heat to convert waterinto steam, which spins a turbine or generator to make electricity. Instead of coal, oil or natural gas, Canadian nuclear reactors use natural uranium for fuel. But the uranium is not burned. Uranium atoms make heat by splitting – the technical term is fissioning.


When a neutron (a tiny sub-atomic particle that is one of the components of almost all
atoms) strikes an atom of uranium, the uranium atom splits into two lighter atoms(which are called fission products) and releases heat at the same time. The fissioning process also releases from one to three more neutrons that can split other uranium atoms. This is the beginning of a "chain reaction" in which more and more uranium atoms are split, releasing more and more neutrons (and heat).

In a power reactor, the chain reaction is tightly controlled to produce only the amount of heat needed to generate a specific amount of electricity.
Heat makes Steam
The fission process generates a huge amount of heat. In order to be useful, the heat has to be moved to boilers to make steam. In a reactor, heavy water does this job. It is pumped constantly through the fuel channels in the reactor and takes the heat from the fuel bundles up to boilers above the reactor. In the boilers the heated heavy water heats up ordinary water to make steam. The steam is piped out of the boilers and over to the turbine
hall where it drives the huge turbines/generators that make the electricity we use.

Creating A Chain Reaction
Canadian reactors use fuel made of natural uranium. Like uranium in the ground, almost all of the uranium in fuel is U-238. This is the common form of the element. The ore also contains tiny amounts (0.7%) of U-235, an unstable isotope of uranium that fissions spontaneously – that’s why Geiger counters react to ore-carrying rock. The fact that U-235 atoms fission spontaspontaneously makes it possible to get a controlled chain reaction
going inside the mass of fuel in the reactor. But no chain reaction can take place in this fuel unless three conditions are all satisfied at the same time:

  • several tons of fuel are present;

  • the tubes containing the fuel are stacked in a special arrangement, neither too close together, nor too far apart; and,

  • a material called a "moderator" surrounds the fuel. The moderator slows, or moderates, the speed of the neutrons resulting from the fission so they are more likely to collide with, and split, more uranium atoms. The moderator in Canadian reactors is heavy water which is
very efficient at slowing down neutrons while not absorbing too many of them. Heavy water is 10% heavier than ordinary water because it incorporates a heavy form of hydrogen called deuterium.

Reactor Fuel
Natural uranium fuel for Power Generation’s reactors is first formed into ceramic pellets and then sealed into metal tubes. The tubes are assembled into fuel bundles weighing about 22 kilograms each. One bundle produces the same amount of heat as 400 tonnes of coal.

The Calandria
The heart of an Power Generation reactor is a large cylindrical tank filled with the heavy water moderator. This tank, or calandria, is penetrated horizontally by several hundred fuel channels. Twelve or thirteen fuel bundles are placed end-to-end in each fuel channel as shown in the picture. Pressurized heavy water is pumped through the fuel channels where it is heated by the fuel to 300ÂșC. It then travels to a boiler to boil ordinary
water into high-pressure steam that drives the turbine/ generator to produce electricity. Upon cooling the heavy water is returned to the reactor to pick up more heat and the ordinary water is recirculated to the boiler to be reheated.
Safety and Reactor Control
The reactor is automatically controlled to the required reactor power using liquid zone controllers and mechanical control absorbers. These specially designed tubes and control rods can be activated by the computer or manually controlled. During routine operation, operators can shut down a reactor by completely inserting the control rods. In emergency
situations, however, a separate set of neutron absorbing rods, called shut-off rods, will automatically drop into the reactor and shut it down. In all Ontario Power Generation reactors, the safety systems are independent of the process systems and independent of each other. They do not function during normal operation of the reactor. They activate only if the
process systems are unable to ensure the safe shut down or cooling of the unit.

Curtesy :Ontario Power Generation

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BPDB Electricity Tariff Plan

00:33 / Posted by tech data / comments (0)

CATEGORY - A : RESIDENTIAL LIGHT & POWER
Applicable to the electricity service through a single watt hour meter for lighting and appliances used in a dwelling place including related grounds and buildings, having sanctioned load up to 50 KW.

CATEGORY - B : AGRICULTURAL PUMPING

Applicable to the electricity service through a single watt hour meter for irrigation and drainage of the land for the purpose of cultivation, having sanctioned load up to 50 KW.

CATEGORY - C : SMALL INDUSTRIAL

Category-C is applicable to the electricity service through a single watt hour meter for small industry, where articles or substances are produced, adopted, manufactured, altered, repaired, ornamented, finished, packaged or treated from raw materials with a view to their use, sale, transport, delivery and disposal having a sanctioned load up to 50 KW.

CATEGORY - D : NON-RESIDENTIAL LIGHT & POWER

Applicable to the electricity service through a single watt hour meter for hospitals, educational institutions, religious & charitable establishments and all classes of consumers other than those specified under category A, B, C, E & J having sanctioned load up to 50 KW.

CATEGORY - E : LT COMMERCIAL

Applicable to the electricity service through a single watt hour meter for offices, trading and commercial enterprises such as shops, businesses, hotels & cinema halls, having sanctioned load up to 50 KW.

RATE : CATEGORY - F : MEDIUM VOLTAGE GENERAL PURPOSE (11 KV)

Applicable to the electricity service through energy and demand meters for all classes consumers having sanctioned load up to 5 MW, where the consumer provides his own sub-station, including transformer, high tension control, protection and power factor correction equipment.

CATEGORY - G-1 : EXTRA HIGH VOLTAGE DESA (132 KV)

Applicable to the electricity service through energy and demand meter for Dhaka Electric Supply Authority (DESA) receiving power at 132 KV.

CATEGORY - G-2 : EXTRA HIGH VOLTAGE GENERAL (132 KV)

Applicable to the electricity service through energy and demand meter for all classes of consumer receiving power at 132 KV having sanctioned load above 15 MW upto150 MW, where the consumer provides his own sub-station including transformer, high tension control, protective and power factor correction equipment.

CATEGORY - H : HIGH VOLTAGE GENERAL PURPOSE (33 KV)

Applicable to the electricity service through energy and demand meter for all classes of consumers other than REB/PBS receiving power at 33 KV, having contracted load up to 15 MW other than REB/PBS where the consumer provides his own sub-station, including transformer and high tension control, protective and power factor correction equipment.

In absence of maximum demand meter the maximum demand of the consumers’ categories G2 & H may be calculated as follows :

100% for the first 75 KW of Connected Load
85% for the next 75 KW of Connected Load
75% for the next 75 KW of Connected Load
65% for the next 75 KW of Connected Load
60% for the rest
CATEGORY - I : HIGH VOLTAGE BULK SUPPLY FOR RURAL ELECTRIFICATION OF BOARD/ PALLI BIDDYUT SAMITI

Applicable to the electricity service through energy and demand meter for REB/PBS receiving power at 33 KV, having contracted load up to 15 MW, where the consumer provides his own transformer, high tension control, protective and power factor correction equipment.

CATEGORY - J : STREET LIGHT AND WATER PUMPS.

Applicable to the electricity service through a single watt-hour meter for Municipality, WASA and Public Health for the purpose of street lighting and drinking water pumping stations having sanctioned load up to 50 KW.

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Thermal power station

22:52 / Posted by tech data / comments (1)

A thermal power station is a power plant in which the prime mover is steam driven. Water is heated, turns into steam and spins a steam turbine which drives an electrical generator. After it passes through the turbine, the steam is condensed in a condenser; this is known as a Rankine cycle. The greatest variation in the design of thermal power stations is due to the different fuel sources. Some prefer to use the term energy center because such facilities convert forms of heat energy into electrical energy.

Different types of power plants generate electricity and synchronize it with the national grid. There are some isolated diesel power stations at remote places and islands which are not connected with the National Grid. Terminal voltage of different generators are 11 KV, 11.5 KV and 15.75 KV. This is Ghorasal 210MW thermal Power station.

The local engineers have set a rare example of professional excellence by repairing the dysfunctional Ghorashal Power Plant within six months thus saving Tk 100 crore. The Russian experts had earlier said they would require eight months to restore the power plant that went out of order about eight months ago.

With the help of local experts and utilizing local technology, the 210 MW Ghorashal unit-4 power plants came into operation on Saturday after six months since its rehabilitation works completed. This unit of power station had been out of order for the last eight months. The local engineers and experts had taken just six months for its rehabilitation.

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Hydro Power Station (Karnafuli )

10:12 / Posted by tech data / comments (0)

Hydroelectricity is electricity generated by hydropower,the production of power through use of the gravitational force of falling or flowing water. It is the most widely used form of renewable energy.


Karnafuli Hydro Power Station is located at kaptai, chittagong. This plant was constructed in 1962 as part of the 'Karnafuli Multipurpose Project', and is one of the biggest water resources development project of Bangladesh. After being commissioned in 1962, the plant could feed the national grid with 80 MW of electricity. In later years, the generation capacity was increased in two phases to a total of 230 MW. The plant not only plays an important role in meeting the power demand of the country but is also vital as a flood management installation for the areas downstream.

Power generation The project was inaugurated in early 1962, with two of its three planned generators putting 80 MW of electricity into the national power grid. The third generator of 50 MW started power generation in January 1982. A feasibility study revealed that the reservoir had a 25% higher capacity than what was originally computed. The operating data also revealed a higher value of inflow than had initially been calculated. In order to exploit this additional potential, two more generators having 50 MW capacity each was installed in 1988.

The power available from this dam has accelerated the establishment and expansion of industries in Bangladesh and has resulted in an appreciable saving in foreign exchange required for the import of manufactured goods. The power generated also permits pumping of water to achieve widespread irrigation and drainage. The reservoir storage designed to prevent serious flood has already saved the city of Chittagong from severe damage. Fishing in Kaptai reservoir annually produces more than 7,000 tons of freshwater fish. Right above the dam there is the unending vista of a smooth sheet of water up to all conceivable corners of chittagong hill tracts made negotiable by launches, boats and other craft to the farthest Barkal rapids to the east and Kasalong forest reserves to the north, past rangamati. At Kaptai, all floating cargoes are transported across the dam by electric overhead trolleys.

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Barge Mounted Power Plant Chittagong

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Natural gas produced in Bangladesh is a primary fuel for this 2 x 28MW Gas Turbine driven power plant, which went into a commercial operation, October 1986. IHI designed, built and commissioned this facility on a full turn-key basis.

Date in Service : October 1986
Electric Output : 28MW per unit
Fuel : Natural Gas
Location :Chittagong, Bangladesh

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Power Generation feature in Bangladesh

10:04 / Posted by tech data / comments (0)

In the mordern age the demand of electricity increasing day by day. But generation of electricity is not increases so fast in Bangladesh. So it occurs load-shedding, hampered production.In october 30, 2008 , reliable base of generation capacity is about 4,300 Megawatts (MW), with peak output on most days between 3,500 and 3,800 MW. But peak demand is estimated to exceed 5,000 MW on most days so many customers find themselves getting cut off when they most need power.

Here is a over all brief of power generation in Bangladesh.
Single line diagram of Dhaka area -1 Single line diagram of Dhaka-2Power plants in Dhaka area-2 Power plants in Dhaka area-1Single line diagram of Chittagong area Power Plants in ChittagongSingle line diagram of Khulna areaPower plants in Khulna

Single line diagram in Mymensingh area
Power plant in Mymensingh

Single line diagram in sylhetPower plant in SylhetSingle line diagram of Rajshahi areapower plant in Rajshahi
All information @2007

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Wartsila Power Plant

07:31 / Posted by tech data / comments (0)

This plant is setup by Wartsila, Finnish Company, under the agreement with Khulna Power Company Limited (KPCL). It is the first private power plant project in Bangladesh. It has started its production since October 13, 1998. It supplies power to our national grid. The plant has two sections; the main generating section is mounted on two separate barges floating on water; and the rest of the plant including administration building, workshop, store house, fire house, fuel storages, data management section etc are situated on the ground. It is the only power plant in Bangladesh that is running under full computer control monitoring & protection system. This plant has both the ISO9002 & ISO14001 certifications from the International Standard Organization (ISO) for its best quality management and environment management.
The management authority of the power plant has employed service-man in consideration of per MW generating capacity of the power plant. In that respect the total manpower of this plant is
Marine Engineers 4
B. Sc Engineers 24
Diploma Engineers 46
M. Sc 2
Workers 50
Total manpower 126
Although for maintaining good management there are 126 working persons instead of 110.
The plant has two symmetrical power generating units, such as –
1. Tiger 1 &
2. Tiger 3.
Both are mounted on two separate barges. Tiger -1 has nine (9) generators and Tiger-3 has ten (10) generators. So, total numbers of generators are nineteen (19). Each has 6.5 MW generating capacity. So total generating capacity of
Tiger-1 = 9 x 6.5 MW = 58.0 MW (app)
Tiger-3 = 10 x 6.5 MW = 65.0 MW (app)
A single generator is being kept standby condition for maintenances purposes & sudden failure protection. Generators are v-type reciprocating synchronous diesel engine [engine configuration - 19x18V32LN]. The fuel used for the engines is Heavy Fuel Oil (HFO).
Information:September 28, 2002

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