Portal:Energy
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Introduction
In physics, energy (from Ancient Greek ἐνέργεια (enérgeia) 'activity') is the quantitative property that is transferred to a body or to a physical system, recognizable in the performance of work and in the form of heat and light. Energy is a conserved quantity—the law of conservation of energy states that energy can be converted in form, but not created or destroyed; matter and energy may also be converted to one another. The unit of measurement for energy in the International System of Units (SI) is the joule (J).
Common forms of energy include the kinetic energy of a moving object, the potential energy stored by an object (for instance due to its position in a field), the elastic energy stored in a solid object, chemical energy associated with chemical reactions, the radiant energy carried by electromagnetic radiation, and the internal energy contained within a thermodynamic system. All living organisms constantly take in and release energy.
Due to mass–energy equivalence, any object that has mass when stationary (called rest mass) also has an equivalent amount of energy whose form is called rest energy, and any additional energy (of any form) acquired by the object above that rest energy will increase the object's total mass just as it increases its total energy.
Human civilization requires energy to function, which it gets from energy resources such as fossil fuels, nuclear fuel, or renewable energy. The Earth's climate and ecosystems processes are driven by the energy the planet receives from the Sun (although a small amount is also contributed by geothermal energy). (Full article...)
Selected article
Most hydroelectric power comes from the potential energy of dammed water driving a water turbine and generator. The energy extracted from water depends on the volume and on the difference in height between the source and the water's outflow. Pumped storage hydroelectricity schemes produce electricity to supply high peak demands by moving water between reservoirs at different elevations. They currently provide the only commercially important means of grid energy storage. At times of low electrical demand, excess generation capacity is used to pump water back into the higher reservoir, from where it can be released through the turbines at short notice. Less common types of hydroelectricity include run-of-the-river, waterwheels, and tidal power schemes.
A major advantage of hydroelectricity is the elimination of fuel costs and the associated carbon emissions although, in tropical regions, decaying plant material behind the dam can sometimes result in greater greenhouse gas emissions than a conventional power station. Other issues include the need to relocate people from areas to be flooded and disruption caused to aquatic ecosystems.
Selected image
![](http://upload.wikimedia.org/wikipedia/commons/thumb/7/7d/Apollo_11_Saturn_V_lifting_off_on_July_16%2C_1969.jpg/300px-Apollo_11_Saturn_V_lifting_off_on_July_16%2C_1969.jpg)
Photo credit: NASA
A Saturn V rocket launches Apollo 11, burning 3,580 U.S. gallons (13,552 liters) of kerosene per second.
Did you know?
- Samuel Andrews (1836–1904) was an English-born chemist and inventor whose request for investment capital to build an oil refinery in 1862 led to a partnership with John D. Rockefeller and the formation of the Standard Oil companies?
- Golar Spirit (pictured) is the world's first floating storage and regasification vessel converted from a LNG carrier?
- The Rockies Express Pipeline, currently under construction, will be one of the largest natural gas pipelines ever built in North America?
- Syncrude Canada Ltd. is the world's largest producer of synthetic crude oil from oil sands?
- During World War II, Australia produced almost 500,000 barrels of shale oil by operating the Nevada–Texas–Utah type of oil-shale retorts?
- The Sangtuda 1 Hydroelectric Power Plant is expected to provide up to 12% of the total energy output of Tajikistan?
Selected biography
Between 1992 and 1995, after Soviet president Mikhail Gorbachev's 'perestroika' economic reforms permitted the opening of small private businesses, Abramovich founded five companies that eventually evolved to specialize in the trading of oil and oil products. With the approved by Boris Yeltsin, in 1995 Roman Abramovich and partner Boris Berezovsky paid $100m for a controlling interest in the major Russian Sibneft oil company, then valued at $150 million. Berezovsky subsequently sold his stake to Abramovich after fleeing to London. In September 2005 Abramovich sold his interest in Sibneft to state energy giant Gazprom for $13 billion.
Despite maintaining that his primary residence is Moscow, in 2006 Abramovich was named as the second-wealthiest person in the United Kingdom. His property investments and other assets were estimated at £10.8 billion. In June 2003, Abramovich became the owner of the companies that control Chelsea Football Club (soccer club). He also became the world's greatest spender on luxury yachts, with four boats in what the media have called the 'Abramovich Navy'.
Although he rarely visits the area, in October 2005 Abramovich was reappointed governor of the impoverished Chukotka Autonomous Okrug in the Russian Far East where he has made significant financial contributions. He was originally elected to the governorship in 1999.
In the news
- 22 June 2024 – Russian invasion of Ukraine
- Russia launches missile and drone strikes across Ukraine, injuring two people and damaging energy infrastructure. Ukraine says that it shot down 12 of 16 missiles and all 13 drones. (Reuters)
- 16 June 2024 – Russian invasion of Ukraine
- Norway announces that it will give Ukraine 1.1 billion kroner (US$103 million) to help repair its energy infrastructure and secure the country's electricity supply before the winter. (Le Monde)
- 15 June 2024 – Russian invasion of Ukraine
- The United States announces a $1.5 billion aid package to Ukraine, focused primarily on the country's energy industry and humanitarian assistance. (Politico)
General images
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WikiProjects connected with energy:
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National energy supply, use & conservation
National electricity sector
Politics, economics, environment
- Climate change
- Energy conservation
- Energy economics
- Energy crises
- Energy development
- Energy policy
- Peak oil
Energy sources
- Fuels
- Biofuels
- Fossil fuels
- Fusion power
- Nuclear technology
- Renewable energy
- Energy conversion
- Electric power
- Energy storage
Energy-related design
Scientific usage
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