On January 9, 2004, Royal Dutch/Shell, one of the world's largest publicly traded oil companies, shocked the international financial community by announcing that it had overstated its oil and gas reserves by 20 percent, representing the equivalent of 3.9 billion barrels of petroleum--worth an estimated $136 billion
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Anatomy of a Price Surge
Michael T. Klare: Oil companies, speculators and OPEC helped spike the cost of oil, but ruinous Bush Administration policies have compounded the damage.
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The New Geopolitics of Energy
Michael T. Klare: The Pentagon has now placed resource competition at the center of its strategic planning.
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Architect of War(s)
Michael T. Klare: Dick Cheney's Mideast tour suggests another catastrophic military adventure in the Persian Gulf is still in the cards.
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Beyond the Age of Petroleum
Michael T. Klare: Welcome to the Age of Insuffiency: As oil prices hit new highs and supplies sink, our way of life will drastically change.
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Targeting Tehran
Michael T. Klare: As the Bush Administration steps up its campaign against Iran, opponents have a dual responsibility: to contest the strategic context for escalation and to bar specific acts of aggression.
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Ominous Signs of a Wider War
Michael T. Klare: The naming of Adm. William Fallon to replace Gen. John Abizaid as head of Centcom is an ominous sign that Bush is preparing for a wider war.
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Ending Nonproliferation
Michael T. Klare: President Bush's dangerous deal to deliver nuclear technology to India is a significant breach of the nonproliferation treaty and will make nuclear war more likely.
Scarcely had the global oil community absorbed the troubling news from Shell than it received yet another powerful shock: On February 24, the New York Times reported that top US energy analysts now believe that Saudi Arabia--the world's number-one producer--is facing the wholesale depletion of its major oilfields and may not be able to sustain its current output of 10 million barrels per day (mbd) much beyond the current decade. Were Saudi production to fall below 10 mbd for any length of time, the global energy system would simply collapse, as no other country can make up the difference on a sustained basis. But even if the Saudis do maintain this level, but fail to rise above it, the global economy will still suffer, since there is no way to satisfy rapidly growing world demand without a substantial increase in Saudi output. The US Department of Energy (DOE), for example, predicts that Saudi oil production will rise by 12.5 mbd between now and 2025, an increase of 125 percent, in order to meet anticipated world demand at the end of that period. Without this additional 12.5 mbd, there is no way the global oil industry will be able to satisfy anticipated requirements in the years ahead, and the entire world will face an acute energy crisis.
These two developments, coupled with news of declining or stagnant production in such established oil "provinces" as the United States, the North Sea, Indonesia, Nigeria and Venezuela, have directed fresh attention to claims that the world is approaching the moment of maximum or "peak" oil output, beyond which no amount of drilling or investment will result in higher levels of production.
The concept of "peak" oil derives from the pioneering research of M. King Hubbert, a prominent geophysicist who worked for many years at Shell Oil in Houston. In the early 1950s Hubbert determined that the oil output of any given field or reservoir typically follows a parabolic (bell) curve: at first, production rises very rapidly as the largest and most accessible stores of oil are developed; eventually, the rate of increase begins to decline as these stores are depleted and drilling commences on smaller, less accessible pockets; eventually, daily field output achieves its maximum attainable, or peak, level, and then begins an irreversible decline, moving ever closer to zero as all remaining supplies are exhausted. Hubbert further determined that peak production normally occurs when half of the reservoir's original petroleum inheritance has been extracted.
This insight led to another: that the moment of peak output for a given field could be predicted in advance by estimating its net recoverable supply and using production history data to calculate when the half-way point in total extraction would be reached. Using this method, Hubbert predicted in 1956 that peak oil output in the United States (not including Alaska) would occur in or around 1970--a prediction that was met with widespread disbelief and derision at the time. But daily output in the Lower 48 did peak in 1970, and since then Hubbert's calculations have been viewed as extraordinarily prescient.
King Hubbert did not apply his methodology to the world as a whole--data on non-US supplies were too imprecise in the 1950s to make such calculations possible --but his followers in this country and abroad have used more recent and reliable information to plot the onset of global peak oil. Using estimates of recoverable world supplies of approximately 2 trillion barrels of conventional (i.e., liquid) petroleum, and estimated recovery-to-date tallies of about 900 billion barrels, these experts believe that global peak production--sometimes called "Hubbert's Peak"--will occur sometime during this decade. The intensive development of deep-offshore oil, polar supplies and "unconventional" sources (such as tar sands and shale oil) may extend the peak for another decade, they claim, but world oil production will eventually slacken and then turn relentlessly downward. (Readers who are interested in these calculations should consult Hubbert's Peak by Kenneth Deffeyes. Additional information is available at the website of the Association for the Study of Peak Oil and Gas, www.peakoil.net.)
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