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You're currently reading the news digest published from 24 July 2023 to 4 September 2023.
Featured (4)
Of interest (3)
Press (60)
Featured
TS_Repair_Jan-2023_small.jpg

With contracts in place, the repair campaign has begun

Contracts were awarded this summer to the companies that will carry out the repair/refurbishment of the ITER thermal shield and vacuum vessel sectors. Teams deployed on site are already executing the first steps of the campaign.  One year ago, the first of nine vacuum vessel sector modules (#6) had been transferred in the Tokamak pit and two others (#7 and #8) were in preparation in sub-assembly tooling in the Assembly Hall, where the 440-tonne sectors were being matched with thermal shield panels and toroidal field coils. The discovery of major defects in two of the components making up these sector modules brought vacuum vessel sub-assembly works to a halt and mobilized resources inside the ITER Organization to identify the root causes of the defects and to explore different repair options. The ITER team worked with experts from the ITER Domestic Agencies, professional organizations from the ITER Members, and research institutes such as CEA, CERN and professional welding institutes to arrive at its final strategy, and with industrial partners to test its assumptions through mock-ups and trials. The repair campaign would be handled under three separate contracts—one for the repair of thermal shield panels, a second for the manufacturing of new thermal shield panels, and a third for vacuum vessel bevel repair. Working in close collaboration with the technical and legal teams, the ITER Procurement & Contracts Division was able to launch restricted tenders early in 2023, and conclude all negotiations in time to meet the tight schedule established by ITER management. Outboard segments of thermal shield await disassembly by contractor teams at one end of the Poloidal Field Coils Winding Facility on site. Two sets will be repaired at the premises of INOX India, and returned to ITER; the strategy for five other sets is being defined. (Photo: August 2023) The vacuum vessel thermal shield, which confines the radiation heat load from the vessel and keeps it from being transferred to the magnets operating at 4.5K, is actively cooled by gaseous helium running through a network of cooling tubes welded to the panels. After "stress corrosion cracking" was identified on three sets of panels—and determined to be a likely risk for the others—the decision was made to replace the cooling fluid pipes on all nine sets of vacuum vessel thermal shield. "The structural integrity assuring the leak-tight configuration of these pipes—all 23 kilometres of them—is critical because gases and liquids will find the tiniest breach in a structure under vacuum," explains Sergio Orlandi, Head of the ITER Construction Project. "Even submicron cracks can alter vacuum quality and degrade machine performance." Two strategies were established by the expert groups. For thermal shield sectors showing no sign of stress corrosion cracking, the panels could be repaired. Repair would entail dismantling the sets into individual panels, removing all cooling pipes, grinding and polishing to remove the silver coating from the surface and to remove up to approximately ~3mm of base material from the panels in the area of the cooling pipes, and  finally re-attaching new pipes with stitch welding (and without silver coating). For thermal shield sectors already compromised by damage, complete re-fabrication was the preferred option. For both contracts, companies would be responsible for developing the methods and practices to achieve ITER requirements. The ITER Organization is supplying the new pipes. Thermal shield repair will be performed by INOX India. The contract was signed on 29 June for the repair of two sets of vacuum vessel thermal shield, and the optional repair of five others. The panels for these two sets will be disassembled at ITER, shipped to INOX premises for repair, tested for leaks in the factory, then shipped back to the ITER site for reassembly and testing by the contractor. A team from INOX is already mobilized on the ITER site for disassembly. Qualification activities on a mockup are also underway at the INOX India workshop under ITER Organization supervision. Thermal shield replacement will be performed by SamHong Heavy Machinery (Korea). The contract was signed on 30 June for the manufacture of two sets of vacuum vessel thermal shield. The company is required to perform qualification of the whole fabrication process through mock-ups. It will also procure raw material, carry out all aspects of manufacturing, perform factory testing to ensure leak tightness, and deliver the components to ITER. The kick-off meeting has already taken place. The SIMIC/Ansaldo consortium will repair the non-conformities on sectors #6 and #7 while they are suspended in sector sub-assembly tooling in the Assembly Hall. The bevel regions will be re-worked through a combination of build-up (building up material through manual welding) and shaving (removing excess material through machining). (Photo: January 2023) Dimensional non-conformities were found in the bevel (field joint) region of the three vacuum vessel sectors that have been delivered to ITER (#6, #7 and #8), with particularly severe variance against nominal geometry in sector #8. Left unrepaired, these non-conformities would compromise the access and operation of the bespoke automated welding tools planned for the in-pit welding of the sectors. The ITER Organization approach to repair is to re-work the bevels through a combination of building up material through manual welding and shaving excess material down through machining. "From the start, our investigation teams stressed the importance of preferring machining over build-up wherever possible in order to minimize build-up as a whole. This is because added material is more susceptible to welding defects generating shrinkage in the sectors' configuration. That is a first important element of our repair strategy for the vacuum vessel," says Orlandi. "The second is that we need to take an integrated approach in the investigation of adjacent sectors' geometry. Instead of considering a sector's geometry only against its nominal manufacturing drawings, we have to consider each sector's configuration in relation to the adjacent sectors on either side to which it will be jointed through spliced plates with automatic welding." This approach informed the technical specifications that were prepared for the restricted tender. Vacuum vessel bevel repair will be carried out at the ITER site by a consortium comprising the Italian firms SIMIC S.p.A. and Ansaldo Nucleare. The contract is awarded for the repair of sector #6 and #7 (vertically, in sector sub-assembly tooling in the Assembly Hall), with an option for the repair of sector #8 (horizontally, in the former Cryostat Workshop). The industrial partner must develop its design solution (including the balance between build up and machining), qualify its design solution and tools with mock-ups, perform the repairs, and ensure metrology and non-destructive examination. The contract was signed on 4 August and the kick-off meeting is planned in the first week of September. The teams will start with the repair of sector #7. The ITER Organization has formed dedicated task force (also involving specialists in the European Agency Fusion for Energy) that has all of the requisite competencies to follow, control and manage the repair works. The ITER Newsline will be meeting with this team in the coming days and weeks to produce a photo reportage on repair activities underway.
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Spare coil arriving from Japan

In August, Japan's National Institutes for Quantum Science and Technology (QST) and supplier Mitsubishi Heavy Industries shipped a spare toroidal field coil to ITER—the very last (of nine) D-shaped coils to be supplied by Japan to the ITER Project. On 23 August 2023, the spare coil left Mitsubishi's Futami plant for transport by barge to the port of Kobe. The 300-tonne component was loaded onto an oceangoing vessel in early September, for arrival in France later this month.  This milestone marks the end of an important industrial effort in Japan that began in 2005 when QST launched R&D for toroidal field coil manufacturing, and that gained steam when a Procurement Arrangement was signed with the ITER Organization in 2008 for the supply of 9 complete toroidal field coils (an assembly of winding packs and coil structures) and all 19 toroidal field coil structures. Working in collaboration, QST and Mitsubishi Heavy Industries developed high-precision technology for winding the niobium-tin conductors that form the heart of the superconducting winding pack, as well as durable structural materials for the coil cases. To arrive at manufacturing methods that would counter deformations caused by welding, parameter tests were conducted, and the welds verified using both miniature and full-scale specimens. Ultimately, through advanced welding procedures and machining techniques, Mitsubishi was able to meet the stringent requirements demanded for ITER. QST collaborated with Mitsubishi Heavy Industries, Mitsubishi Electric Corporation, Hyundai Heavy Industries, and Toshiba Energy Systems & Solutions Corporation for the full scope of the Procurement Arrangement. Mitsubishi Heavy Industries manufactured the inboard coil structures for all 19 coil cases and performed the final assembly (coil insertion and case closing) for 5 toroidal field coils, including the first coil to be completed for the ITER Project (January 2020) and the final, spare coil (TF19) that was completed last month. The coil is expected to reach France in late September and the ITER site in October.  See the Mitsubishi press release in English here. 
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Mayor Pizot, a friend and a partner

For the ITER community in France, Roger Pizot, who passed away on Sunday 23 July, was more than the long-standing mayor (1995-2020) of Saint-Paul-lez-Durance, the small village in Provence where ITER is located administratively. He was a friend and a partner. In 2001, as the ITER Final Design Report was being finalized and France was already intent on hosting the project, Mayor Pizot played a key role in marshalling the support, both political and financial, of local governments in Provence. As the long-time neighbour of CEA-Cadarache, one of France's largest nuclear research centres, he knew from experience the benefits that a major scientific institution could bring to its environment. On his initiative, the local governments of the Sud-PACA region would pledge close to half a billion euros to ITER—a sum equivalent in value, at the time, to the contribution of an ITER Member. Like many in his time and place, Mayor Pizot had left school early but retained, throughout his life, a vast curiosity for the world around him that led him to understand the importance of science exploration in general and of fusion research in particular. In 2012 Mayor Pizot, here with ITER Director-General Osamu Motojima (2010-2015), initiated a tradition—the gift of a large Christmas tree ever year to symbolize the family-like relationship between ITER and the local community. In 1959, the creation of a large CEA research centre in Cadarache, an uninhabited section of Saint-Paul-lez-Durance (pop. 900), had brought pride, jobs and prosperity to the poor and sleepy community. Half a century later, ITER placed the village under an international spotlight and promised renewed opportunities. In Mayor Pizot's words, Saint-Paul had become the improbable "world capital of the atom." In 2008, he confided to the ITER Newsline that he intended to "serve ITER as ITER is serving Saint-Paul." And serve he did: an industrial park was created at the village entrance to accommodate ITER contractors, along with a small commercial centre in the heart of the village with shops and restaurants to cater to their employees. In 2009 Mayor Pizot was appointed Head of the Commission locale d'information, an independent body that acts as an interface between a nuclear installation and the public. He is seen here during a meeting with ITER Director-General Bernard Bigot (2015-2022). Mayor Pizot's interaction with ITER took on an extra dimension in 2009 when he was appointed president of the newly created Commission locale d'information, an independent body that acts as an interface between a nuclear installation and the public in France. When ITER moved to its permanent headquarters in 2012, he initiated a tradition that his successor at the town hall in Saint-Paul has perpetuated: the gift of a large Christmas tree ever year symbolizing the strong, family-like relationship between ITER and the local community. The passing of Mayor Pizot at age 76 fills ITER with sadness. He will be remembered as a generous, efficient and no-nonsense associate to the project.
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A changing panorama

New "bridges" spanning the main boulevard of the ITER platform, massive structures progressively donning their final attire, buildings in the last stages of civil works rising like pyramids ... thirteen years into construction, the ITER scientific installation is acquiring its near-final appearance. Despite the heat waves of July and August, progress made over the summer is observable in every corner. Some of it is spectacular, some of it barely perceptible but no less significant. For a full visual tour, view the photo gallery below.  
Of interest

United Nations: "Science as a public good"

https://www.iter.org/of-interest?id=1194
After designating 2022 as the "International Year of Basic Sciences for Sustainable Development (IYBSSD)," the United Nations (UN) General Assembly has now proclaimed 2024 to 2033 as the "International Decade of Sciences for Sustainable Development (IDSSD)," acknowledging the imperative to "create bridges accross scientific disciplines and knowledge forms in order to address the complex and intricate challenges of our time." Recognizing that developing countries face specific challenges in accessing new sciences and technologies, the resolution—proposed by Argentina, Cuba, Equatorial Guinea, Guatemala, Honduras, Hungary, Serbia, South Africa, Spain and Vietnam—proclaims the International Decade of Sciences for Sustainable Development represents "a unique opportunity for humanity to use the critical role that sciences play in the pursuit of sustainable development in its three dimensions as one of the key means of implementation as well as in responding to the complex challenges of our time to ensure a safe and prosperous future for all." The ITER Organization is one of many scientific organizations that supports the IYBSSD. Read the UN declaration in English here.

JET running final campaign

https://www.iter.org/of-interest?id=1192
JET, the Joint European Torus in Culham, Oxfordshire (UK), has just kicked off a third and final campaign in deuterium and tritium. The planned experiments, known as "DTE3," will run for seven weeks and focus on plasma science, materials science, and neutronics. This campaign comes just 20 months after JET demonstrated sustained fusion over five seconds at high power and set a world record. In June, JET celebrated 40 years of science. JET's research findings have been critical to planning at ITER, as well as to that of the UK's prototype fusion powerplant STEP, the European DEMO prototype fusion plant, and other national laboratory and private projects around the world.   Repurposing and decomissioning activities on JET are scheduled to begin in 2024.  See the announcement on the UKAEA/Culham Centre for Fusion Energy website.

Fusion Energy Camp in Denmark

https://www.iter.org/of-interest?id=1191
For the third year in a row, the Department of Physics at the Technical University of Denmark (DTU) has held its Fusion Energy Summer Camp for high school students. 19 participants aged 16 to 19 got to work as researchers and conduct experiments on DTU's small, and Scandinavia's only, NORTH tokamak. From early morning to late evening, from 30 July to 4 August, they followed lectures, practiced problem solving and programming in fusion energy and plasma physics, and participated in experiments, while also having fun and getting a taste of university life on campus. The DTU Physics teams thanks the Novo Nordisk Foundation for its generous support in helping to inspire the young generation to consider an education in science and engineering and be part of the push to develop a sustainable future. --Søren Bang Korsholm, Senior Scientist, and Alexander Simon Thrysøe, Scientist at DTU Physics. Photo: Students are introduced to the NORdic Tokamak device (NORTH) that is enriching the physics and engineering programs at the Technical University of Denmark. Credit: Magnus Møller 
Press

Machine learning might help us finally unlock nuclear fusion

https://interestingengineering.com/science/machine-learning-might-help-us-finally-unlock-nuclear-fusion

US Government invests $5m in fusion energy research platform

https://www.innovationnewsnetwork.com/us-government-invests-5m-in-fusion-energy-research-platform/36829/

High school students learn about fusion energy

https://www.dtu.dk/english/news/university-affairs/high-school-students-learn-about-fusion-energy-at-dtu?id=43595913-b90a-45ff-86e8-a7401c3b4ec3

Une fleur de tungstène

https://irfm.cea.fr/Phocea/Vie_des_labos/News/index.php?id_news=1943

Germany stars in race to hone nuclear fusion

https://www.thetimes.co.uk/article/germany-making-cautious-progress-in-race-to-develop-nuclear-fusion-hhgmkstzm

Machine learning hunts for the right mix of hydrogen isotopes for future nuclear fusion power plants

https://phys.org/news/2023-09-machine-hydrogen-isotopes-future-nuclear.html

Fusion farewell: JET's final tritium experiments mark end of an era

https://www.energylivenews.com/2023/09/01/fusion-farewell-jets-final-tritium-experiments-mark-end-of-an-era/

MHI completes key component for ITER

https://www.neimagazine.com/news/newsmhi-completes-key-component-for-iter-11109388

Harnessing The Power of Fusion Energy

https://metrology.news/harnessing-the-power-of-fusion-energy/

ITER : dans les coulisses d'un convoi de plus de 600 tonnes

https://jdlgroupe.com/2023/08/29/iter-dans-les-coulisses-dun-convoi-de-plus-de-600-tonnes/

El Gobierno entregará 21,9 millones de euros a IFMIF-DONES para reforzar el papel de España en la fusión nuclear

https://infodatnet.blogspot.com/2023/08/el-gobierno-entregara-219-millones-de.html

Gymnasieelever lærer om fusionsenergi

https://www.dtu.dk/nyheder/alle-nyheder/gymnasieelever-laerer-om-fusionsenergi?id=b106f9d6-8293-45b2-b5a6-b4d2ffd27e39

Scientific community to conduct final tritium experiments at JET

https://www.gov.uk/government/news/scientific-community-to-conduct-final-tritium-experiments-at-jet

链接全球科技交流网络

https://k.sina.com.cn/article_1854570915_6e8a81a30200182sn.html

Solving the fusion multi-challenge

https://www.neimagazine.com/features/featuresolving-the-fusion-multi-challenge-11111575/

2023 Excellence in Fusion Engineering awarded to Stephanie Diem

http://www.qedfusion.org/FPA/fpn23-34.shtml

7 founders and CEOs discuss fusion power's most pressing challenges (paywall)

https://techcrunch.com/2023/08/24/fusion-power-challenges-founder-survey/?guccounter=1&guce_referrer=aHR0cHM6Ly91c2Z1c2lvbmVuZXJneS5vcmcv&guce_referrer_sig=AQAAAI5wRIGyraXwSy7EosADArwm6iRoxkRzf2SJpZF0u22HAA4a7-NtCUzLP8kT1_dUibcrOtvKT46uX0d42NU-a7Dw46bxqMe

Le projet ITER : la fusion nucléaire, l'énergie du futur ? (vidéo 27'12)

https://www.youtube.com/watch?v=--41f-GXJJg

Johan Frenje wins Fusion Power Associates 2023 Leadership Award

https://www.psfc.mit.edu/news/2023/johan-frenje-wins-fusion-power-associates-2023-leadership-award

Токамак Т-15МД позволит создать термоядерный источник нейтронов

https://www.ras.ru/news/shownews.aspx?id=d4bcded6-a38d-4bb1-a276-b908ef42829a

Fusion model hot off the wall

https://www.kyoto-u.ac.jp/en/research-news/2023-07-28

Conférence grand public "Supraconductivité, champ magnétique et société" à Aix-en-Provence le 14 septembre

https://irfm.cea.fr/Phocea/Vie_des_labos/News/index.php?id_news=1941

南フランス・ITER向けTFコイルの最終号機が完成

https://prtimes.jp/main/html/rd/p/000000499.000025611.html

Promising approaches to combatting tokamak disruptions presented at global PPPL-hosted workshop

https://www.pppl.gov/news/2023/promising-approaches-combatting-tokamak-disruptions-presented-global-pppl-hosted-workshop

MHI Completes Final TF Coil for ITER

https://www.mhi.com/news/23082401.html

Eine Alternative für die Energieversorgung von ASDEX Upgrade

https://www.ipp.mpg.de/5362649/Magnanimo_dissertation

An alternative for the energy supply of ASDEX Upgrade

https://www.ipp.mpg.de/5362865/Magnanimo_dissertation?c=14226

인류가 주목하는 '꿈의 에너지'...막스플랑크 '핵융합 발전 연구소' 가보니

https://v.daum.net/v/20230823113000487

Forging a Path to Fusion by Understanding Plasma Viscosity

https://www.energy.gov/science/articles/forging-path-fusion-understanding-plasma-viscosity

Scientists discover shortcut that aids the design of twisty fusion facilities

https://www.pppl.gov/news/2023/scientists-discover-shortcut-aids-design-twisty-fusion-facilities

Nuclear Fusion Heats Up

https://physics.aps.org/articles/v16/137

Учёные Росатома начали испытания полномасштабного прототипа панели первой стенки международного термоядерного экспериментального реактора ИТЭР

http://www.atominfo.ru/newsz06/a0689.htm

How a US lab created energy with fusion—again

https://www.popsci.com/science/nuclear-fusion-second-success-nif/

Something for the weekend: a fusion-powered future?

https://www.ft.com/content/da1a6876-160f-48de-a343-76cb3dd9abb5

ITER appears unstoppable despite recent setbacks

https://pubs.aip.org/physicstoday/article/76/8/18/2903082/ITER-appears-unstoppable-despite-recent

Exploit historique dans la fusion nucléaire : en Europe, le projet Iter mise tout sur l'atome

https://www.lesoir.be/530013/article/2023-08-08/exploit-historique-dans-la-fusion-nucleaire-en-europe-le-projet-iter-mise-tout

Fusion nucléaire : un laboratoire américain renouvelle ses exploits

https://www.lesechos.fr/idees-debats/sciences-prospective/fusion-nucleaire-un-laboratoire-americain-renouvelle-ses-exploits-1968604

Kernfusion rettet das Klima nicht

https://www.derstandard.at/story/3000000182089/kernfusion-rettet-das-klima-nicht?ref=rss

Zijn we een stap dichter bij een alternatieve en milieuvriendelijke energiebron? 'Het kan mogelijk al tegen 2040'

https://www.demorgen.be/nieuws/zijn-we-een-stap-dichter-bij-een-alternatieve-en-milieuvriendelijke-energiebron-het-kan-mogelijk-al-tegen-2040~b907a27a/?referrer=https://www.google.com/

The Nuclear Fusion Energy Breakthrough, Explained

https://www.bloomberg.com/news/articles/2023-08-07/us-scientists-2nd-nuclear-fusion-energy-breakthrough-explained-quicktake#xj4y7vzkg

What is nuclear fusion? (paywall)

https://www.economist.com/the-economist-explains/2023/08/07/what-is-nuclear-fusion

Nuclear fusion breakthrough: Is cheap, clean energy finally here? (paywall)

https://www.newscientist.com/article/2386288-nuclear-fusion-breakthrough-is-cheap-clean-energy-finally-here/

Fusion Is Having a Moment

https://spectrum.ieee.org/fusion-is-having-a-moment

Fusion nucléaire : un (nouveau) grand bond en avant

https://www.geo.fr/environnement/fusion-nucleaire-nouveau-grand-bond-en-avant-lawrence-livermore-national-laboratory-nif-reproduction-gain-net-lasers-3-5-megajoules-216070

265 Erklär mir Kernfusion, Georg Harrer (audio 55'59")

https://xn--erklrmir-3za.at/2023/08/01/265-erklaer-mir-kernfusion-georg-harrer/

U.S. scientists hit new fusion energy milestone

https://www.axios.com/2023/08/07/nuclear-fusion-net-energy-gain-second-time-us-scientists

U.S. lab says it repeated fusion energy feat — with higher yield

https://www.washingtonpost.com/climate-solutions/2023/08/06/nuclear-fusion-net-energy-gain-higher-yield/

How 3D scanning has made ambitious energy engineering a reality

https://tech.eu/2023/08/05/how-3d-scanning-has-made-ambitious-energy-engineering-a-reality/

US scientists repeat fusion ignition breakthrough for 2nd time

https://www.reuters.com/business/energy/us-scientists-repeat-fusion-power-breakthrough-ft-2023-08-06/

Landmark Controlled Nuclear Fusion Breakthrough Achieved Again By US

https://www.iflscience.com/landmark-controlled-nuclear-fusion-breakthrough-achieved-again-by-us-70152

JT-60SA magnets cooled down at -268°C

https://fusionforenergy.europa.eu/news/jt-60sa-magnets-cooled-down-at-268c/

German private fusion firms multiply as government pledges fresh research money

https://sciencebusiness.net/news/nuclear-fusion/german-private-fusion-firms-multiply-government-pledges-fresh-research-money

한국 참여 '인공태양' ITER 건설 지연...2027년 이후 운전개시

https://www.yna.co.kr/view/AKR20230727129300073?section=international/all

All you need to know about nuclear fusion - Conversation with ITER's general director

https://www.youtube.com/watch?v=lqR6eG172pA

JT-60SA coils are superconducting

https://www.jt60sa.org/wp/coils-superconducting/

Mapping Europe's nuclear fusion industry

https://sifted.eu/articles/mapping-europes-nuclear-fusion-industry

Ambrogio Fasoli appointed Programme Manager of EUROfusion

https://actu.epfl.ch/news/ambrogio-fasoli-appointed-programme-manager-of-eur/

Ambrogio Fasoli est nommé directeur de programme d'EUROfusion

https://actu.epfl.ch/news/ambrogio-fasoli-est-nomme-directeur-de-programme-d/

率先这十年 "学霸"EAST是如何炼成的

https://www.ckcest.cn/entry/focus/details/ca5f3a8ec77000012a5fbf3011a4ffe0

All cold valve boxes are delivered to ITER!

https://fusionforenergy.europa.eu/news/all-cold-valve-boxes-are-delivered-to-iter/