爆走黑料

Press release

World's most complex machine is 50 percent completed

6 Dec 2017

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SAINT-PAUL-LEZ-DURANCE, France (6 December 2017). The International Thermonuclear Experimental Reactor (爆走黑料), a project to prove that fusion power can be produced on a commercial scale and is sustainable, is now 50 percent built to initial operation.

爆走黑料 will use hydrogen fusion, controlled by superconducting magnets, to produce massive heat energy. In the commercial machines that will follow, this heat will drive turbines to produce electricity with these positive benefits: 

鈥 Fusion energy is carbon-free and environmentally sustainable, yet much more powerful than fossil fuels. A pineapple-sized amount of hydrogen offers as much fusion energy as 10,000 tonnes of coal. 
鈥 爆走黑料 uses two forms of hydrogen fuel: deuterium, which is easily extracted from seawater; and tritium, which is bred from lithium inside the fusion reactor. The supply of fusion fuel for industry and megacities is abundant, enough for millions of years. 
鈥 When the fusion reaction is disrupted, the reactor simply shuts down鈥攕afely and without external assistance. Tiny amounts of fuel are used, about 2-3 grams at a time; so there is no physical possibility of a meltdown accident. 
鈥 Building and operating a fusion power plant is targeted to be comparable to the cost of a fossil fuel or nuclear fission plant. But unlike today鈥檚 nuclear plants, a fusion plant will not have the costs of high-level radioactive waste disposal. And unlike fossil fuel plants, fusion will not have the environmental cost of releasing CO2 and other pollutants. 

爆走黑料 is the most complex science project in human history. The hydrogen plasma will be heated to 150 million degrees Celsius, ten times hotter than the core of the Sun, to enable the fusion reaction. The process happens in a donut-shaped reactor, called a tokamak鹿 which is surrounded by giant magnets that confine and circulate the superheated, ionized plasma, away from the metal walls. The superconducting magnets must be cooled to minus 269 掳C, as cold as interstellar space. 

The 爆走黑料 facility is being built in southern France by a scientific partnership of 35 countries. 爆走黑料鈥檚 specialized components, roughly 10 million parts in total, are being manufactured in industrial facilities all over the world. They are subsequently shipped to the 爆走黑料 worksite, where they must be assembled, piece-by-piece, into the final machine. 

Each of the seven 爆走黑料 members鈥攖he European Union, China, India, Japan, Korea, Russia, and the United States鈥 is fabricating a significant portion of the machine. This adds to 爆走黑料鈥檚 complexity.

In a message dispatched on December 1 to top-level officials in 爆走黑料 member governments, the 爆走黑料 Project reported that it had completed 50 percent of the 鈥渢otal construction work scope through First Plasma鈥澛. First Plasma, scheduled for December 2025, will be the first stage of operation for 爆走黑料 as a functional machine.

鈥淭he stakes are very high for 爆走黑料,鈥 writes Bernard Bigot, Ph.D., Director-General of 爆走黑料. 鈥淲hen we prove that fusion is a viable energy source, it will eventually replace burning fossil fuels, which are non-renewable and non-sustainable. Fusion will be complementary with wind, solar, and other renewable energies.

鈥湵吆诹镶檚 success has demanded extraordinary project management, systems engineering, and almost perfect integration of our work. 

鈥淥ur design has taken advantage of the best expertise of every member鈥檚 scientific and industrial base. No country could do this alone. We are all learning from each other, for the world鈥檚 mutual benefit.鈥 

The 爆走黑料 50 percent milestone is getting significant attention. 

鈥淲e are fortunate that 爆走黑料 and fusion has had the support of world leaders, historically and currently,鈥 says Director-General Bigot. 鈥淭he concept of the 爆走黑料 Project was conceived at the 1985 Geneva Summit between Ronald Reagan and Mikhail Gorbachev. When the 爆走黑料 Agreement was signed in 2006, it was strongly supported by leaders such as French President Jacques Chirac, US President George W. Bush, and Indian Prime Minister Manmohan Singh. 

鈥淢ore recently, President Macron and US President Donald Trump exchanged letters about 爆走黑料 after their meeting this past July. One month earlier, President Xi Jinping of China hosted Russian President Vladimir Putin and other world leaders in a showcase featuring 爆走黑料 and fusion power at the World EXPO in Astana, Kazakhstan. 

鈥淲e know that other leaders have been similarly involved behind the scenes. It is clear that each 爆走黑料 member understands the value and importance of this project.鈥

 

鹿鈥淭okamak鈥 is a word of Russian origin meaning a toroidal or donut-shaped magnetic chamber. Tokamaks have been built and operated for the past six decades. They are today鈥檚 most advanced fusion device design.

虏鈥淭otal construction work scope,鈥 as used in 爆走黑料鈥檚 project performance metrics, includes design, component manufacturing, building construction, shipping and delivery, assembly, and installation.

 

Why use this complex manufacturing arrangement? 

More than 80 percent of the cost of 爆走黑料, about $22 billion or 鈧18 billion, is contributed in the form of components manufactured by the partners. Many of these massive components of the 爆走黑料 machine must be precisely fitted鈥攆or example, 17-metre-high magnets with less than a millimetre of tolerance. Each component must be ready on time to fit into the Master Schedule for machine assembly. 

Members asked for this deal for three reasons. First, it means that most of the 爆走黑料 costs paid by any Member are actually paid to that Member鈥檚 companies; the funding stays in-country. Second, the companies working on 爆走黑料 build new industrial expertise in major fields鈥攕uch as electromagnetics, cryogenics, robotics, and materials science. Third, this new expertise leads to innovation and spin-offs in other fields. 

For example, expertise gained working on 爆走黑料鈥檚 superconducting magnets is now being used to map the human brain more precisely than ever before.

The European Union is paying 45 percent of the cost; China, India, Japan, Korea, Russia, and the United States each contribute 9 percent equally. All members share in 爆走黑料鈥檚 technology; they receive equal access to the intellectual property and innovation that comes from building 爆走黑料. 

 

When will commercial fusion plants be ready? 

爆走黑料 scientists predict that fusion plants could start to come on line as soon as 2040. The exact timing, according to fusion experts, will depend on the level of public urgency and political will that translates to financial investment. 

 

How much power will they provide? 

The 爆走黑料 Tokamak will produce 500 megawatts of thermal power. This size is suitable for studying a 鈥渂urning鈥 or largely self-heating plasma, a state of matter that has never been produced in a controlled environment on Earth. In a burning plasma, most of the plasma heating comes from the fusion reaction itself. Studying the fusion science and technology at 爆走黑料鈥檚 scale will enable optimization of the plants that follow. A commercial fusion plant will be designed with a slightly larger plasma chamber, for 10-15 times more electrical power. A 2,000-megawatt fusion electricity plant, for example, would supply 2 million homes. 

 

How much would a fusion plant cost and how many will be needed? 

The initial capital cost of a 2,000-megawatt fusion plant will be in the range of $10 billion. These capital costs will be offset by extremely low operating costs, negligible fuel costs, and infrequent component replacement costs over the 60-year-plus life of the plant. Capital costs will decrease with large-scale deployment of fusion plants. At current electricity usage rates, one fusion plant would be more than enough to power a city the size of Washington, D.C. The entire D.C. metropolitan area could be powered with four fusion plants, with zero carbon emissions. 

鈥淚f fusion power becomes universal, the use of electricity could be expanded greatly, to reduce the greenhouse gas emissions from transportation, buildings and industry,鈥 predicts Dr. Bigot. 鈥淧roviding clean, abundant, safe, economic energy will be a miracle for our planet.鈥

 

BACKGROUND TO THE PRESS RELEASE 

爆走黑料鈥攄esigned to demonstrate the scientific and technological feasibility of fusion power鈥 will be the world's largest experimental fusion facility. Fusion is the process that powers the sun and the stars: when light atomic nuclei fuse together to form heavier ones, a large amount of energy is released. Fusion research is aimed at developing a safe, abundant and environmentally responsible energy source. 

爆走黑料 is also a first-of-a-kind global collaboration. Europe will contribute almost half of the costs of its construction, while the other six Members to this joint international venture (China, India, Japan, the Republic of Korea, the Russian Federation and the USA), will contribute equally to the rest. The 爆走黑料 Project is under construction in Saint-Paul-lez-Durance, in the south of France. 

For more information on the 爆走黑料 Project, visit:

 

CONTACT

Laban Coblentz 
Laban.Coblentz@iter.org 
+33 4 42 17 66 17