Living with Fukushima

2021 ◽  
Author(s):  
◽  
Ruby Somerville

<p>Nuclear power is a highly disputed and powerful industry that continues to grow worldwide alongside safer renewable resources. No country seemed to have as much unwavering faith in the nuclear industry as Japan, until the catastrophic events of Fukushima in 2011. Although large-scale disasters caused by nuclear power facilities are few and far between, the devastation to the environment is, in most cases, irreparable. Fukushima remains to this day a painful reminder of this fact.  In 2011 Japan suffered an unprecedented three-strike disaster. First a 9.0 magnitude earthquake struck the country. This was followed by a subsequent tsunami which tore apart Japan’s East Coast and resulted in the loss of more than 20,000 lives. However, it was the triple meltdown at the Fukushima Daiichi Nuclear Power Plant that was the final devastating blow. 160,000 people were forced to evacuate. These nuclear refugees, as they have come to be known, have paid the ultimate price. Their home lands have been permanently scarred by the radiation, with only small sections able to be decontaminated. Even in these areas, land that has been cultivated for centuries will likely never again be able to produce safe crops in the traditional way. In a region highly valued for its agriculture and fishing industries, they have lost everything that they spent generations working and caring for.  The Architecture and Dystopia Stream challenges architectural projects to call attention to the dystopian realities that our generation will face in the future. This is a project for a small broken town, Namie, and how we might propose a future where the people can live alongside the damage left by nuclear contamination. The project attempts to capture intimate day-to- day moments for the people within a much larger scheme that sheds light on the potentially damaging consequences of the nuclear industry. In this sense, the true challenge of the project is to simultaneously explore both the megascale and the human-scale.  Earlier this year Namie was one of the first towns in the Fukushima exclusion zone to be partially reopened. Since then thousands of residents have made the tough decision between the familiarity of and love for their home town and the invisible threat of radiation. It is heard continually in surveys, interviews, and political rallies that these evacuees simply want their old lives back, and those who are returning to Namie have seized this chance. It is clear, however, that the ‘cleanup’ of these towns that are reopening cannot repair the lasting damage of the nuclear radiation on the natural environment. Fishing in the river, picking mushrooms in the foothills, these sorts of activities were part of daily life in this rural town that can no longer be enjoyed without great risk. Not only have they lost many of the joys that come with living so closely amongst the environment, they also can no longer make a living off their land. It is feared that their lives here will be a shadow of what they were before. Although the reality sounds bleak and dystopian, the architectural intervention designed for Namie will be Utopian, focussing on the future that these returning residents are daring to hope for.  Lastly, it has been openly speculated that the heavy influence of the nuclear industry on Japanese government is responsible for Japan’s lack of exploration into safer, sustainable energy sources. Japan is usually on the forefront of new technologies. Following the Fukushima meltdown, for the first time since it was introduced to the country, Japanese are questioning and openly challenging the use of nuclear energy in their country. The uncertainty of the future has spurred opportunities for a change in direction, in what many consider is a pivotal moment in Japan’s history. This project aims to be bold and push past what might be an expected solution, capitalising on this rare openness towards new beginnings, to propose a highly unconventional project that optimistically envisions a better future for the people of Namie.</p>

2021 ◽  
Author(s):  
◽  
Ruby Somerville

<p>Nuclear power is a highly disputed and powerful industry that continues to grow worldwide alongside safer renewable resources. No country seemed to have as much unwavering faith in the nuclear industry as Japan, until the catastrophic events of Fukushima in 2011. Although large-scale disasters caused by nuclear power facilities are few and far between, the devastation to the environment is, in most cases, irreparable. Fukushima remains to this day a painful reminder of this fact.  In 2011 Japan suffered an unprecedented three-strike disaster. First a 9.0 magnitude earthquake struck the country. This was followed by a subsequent tsunami which tore apart Japan’s East Coast and resulted in the loss of more than 20,000 lives. However, it was the triple meltdown at the Fukushima Daiichi Nuclear Power Plant that was the final devastating blow. 160,000 people were forced to evacuate. These nuclear refugees, as they have come to be known, have paid the ultimate price. Their home lands have been permanently scarred by the radiation, with only small sections able to be decontaminated. Even in these areas, land that has been cultivated for centuries will likely never again be able to produce safe crops in the traditional way. In a region highly valued for its agriculture and fishing industries, they have lost everything that they spent generations working and caring for.  The Architecture and Dystopia Stream challenges architectural projects to call attention to the dystopian realities that our generation will face in the future. This is a project for a small broken town, Namie, and how we might propose a future where the people can live alongside the damage left by nuclear contamination. The project attempts to capture intimate day-to- day moments for the people within a much larger scheme that sheds light on the potentially damaging consequences of the nuclear industry. In this sense, the true challenge of the project is to simultaneously explore both the megascale and the human-scale.  Earlier this year Namie was one of the first towns in the Fukushima exclusion zone to be partially reopened. Since then thousands of residents have made the tough decision between the familiarity of and love for their home town and the invisible threat of radiation. It is heard continually in surveys, interviews, and political rallies that these evacuees simply want their old lives back, and those who are returning to Namie have seized this chance. It is clear, however, that the ‘cleanup’ of these towns that are reopening cannot repair the lasting damage of the nuclear radiation on the natural environment. Fishing in the river, picking mushrooms in the foothills, these sorts of activities were part of daily life in this rural town that can no longer be enjoyed without great risk. Not only have they lost many of the joys that come with living so closely amongst the environment, they also can no longer make a living off their land. It is feared that their lives here will be a shadow of what they were before. Although the reality sounds bleak and dystopian, the architectural intervention designed for Namie will be Utopian, focussing on the future that these returning residents are daring to hope for.  Lastly, it has been openly speculated that the heavy influence of the nuclear industry on Japanese government is responsible for Japan’s lack of exploration into safer, sustainable energy sources. Japan is usually on the forefront of new technologies. Following the Fukushima meltdown, for the first time since it was introduced to the country, Japanese are questioning and openly challenging the use of nuclear energy in their country. The uncertainty of the future has spurred opportunities for a change in direction, in what many consider is a pivotal moment in Japan’s history. This project aims to be bold and push past what might be an expected solution, capitalising on this rare openness towards new beginnings, to propose a highly unconventional project that optimistically envisions a better future for the people of Namie.</p>


Author(s):  
Jayati Das-Munshi ◽  
Tamsin Ford ◽  
Matthew Hotopf ◽  
Martin Prince ◽  
Robert Stewart

In this final chapter to the second edition of Practical Psychiatric Epidemiology, developments in psychiatric epidemiology since the first edition are summarized and the editors offer a view on where the future may lie. The themes summarized in this chapter include those related to large-scale datasets or ‘big data’, new technologies and science communication (including data generated through GPS tracking systems and the impact of social media), expanding biological data and biobanks, as well as the impact of globalization, migration, and culture on understanding psychiatric epidemiological principles. The last part of this chapter raises the important issue of open science initiatives. The chapter concludes with a brief discussion on the constancy and ongoing evolution of psychiatric epidemiology.


Author(s):  
Dale E. Matthews ◽  
Ralph S. Hill ◽  
Charles W. Bruny

ASME Nuclear Codes and Standards are used worldwide in the construction, inspection, and repair of commercial nuclear power plants. As the industry looks to the future of nuclear power and some of the new plant designs under development, there will be some significant departures from the current light water reactor (LWR) technology. Some examples are gas-cooled and liquid metal-cooled high temperature reactors (HTRs), small modular reactors (SMRs), and fusion energy devices that are currently under development. Many of these designs will have different safety challenges from the current LWR fleet. Variations of the current LWR technology are also expected to remain in use for the foreseeable future. Worldwide, many LWRs are planned or are already under construction. However, technology for construction of these plants has advanced considerably since most of the current construction codes were written. As a result, many modern design and fabrication methods available today, which provide both safety and economic benefits, cannot be fully utilized since they are not addressed by Code rules. For ASME Nuclear Codes and Standards to maintain and enhance their position as the worldwide leader in the nuclear power industry, they will need to be modernized to address these items. Accordingly, the ASME Nuclear Codes and Standards organizations have initiated the “2025 Nuclear Code” initiative. The purpose of this initiative is to modernize all aspects of ASME’s Nuclear Codes and Standards to adopt new technologies in plant design, construction, and life cycle management. Examples include modernized finite element analysis and fatigue rules, and incorporation of probabilistic and risk-informed methodology. This paper will present the vision for the 2025 ASME Nuclear Codes and Standards and will discuss some of the key elements that are being considered.


2020 ◽  
Vol 50 (43) ◽  
pp. 3-67
Author(s):  
Maja Petrović-Šteger ◽  
Felix Ringel ◽  
Ivan Rajković ◽  
Tea Škokić ◽  
Sanja Potkonjak ◽  
...  

In order to be able to contextualize and understand social worlds, anthropologists pay close attention. We observe how individuals and communities relate to each other and to their ideas. We study the intimate and subjective, as well as the large-scale cosmologies by which people make themselves and the world. Our participatory methods and reflective analysis document the complex, intricate, patterned, and also random aspects of people’s reasoning and actions. These activities, on anthropology’s part, supposedly offer not only critical descriptions of the present (on its historical trajectories), but possible intimations of a society’s future. Anthropological analysis, in other words, not only describes but also anticipates. This position paper focuses on the notions of anticipation, predictability, and possibility in anthropology. It asks what methodological and theoretical assumptions are built into our ways of making predictions about our field sites. It invites the reader to consider the effects certain anticipatory practices have for the people and phenomena we study as well as for the discipline. Centrally, the paper proposes different ways of attending to visions that anticipate the future. By reflecting on my ethnographic and analytical journeys in Serbia, I attempt to explain why I currently make so much of questions of predictability and possibility in both the field and the discipline. My desire is to open up a discussion on the value of cultivating attention to what seems to emerge on the side of predictable.


1974 ◽  
Vol 1 (1) ◽  
pp. 21-30 ◽  
Author(s):  
John T. Edsall

Nuclear fission reactors are widely regarded as the chief energy source of the future. This article holds that the hazards of such reactors, in comparison with other prospective energy sources, are unacceptably high. The biological effects of ionizing radiations, as analyzed in the recent BEIR Report (1972) of a committee of the U.S. National Academy of Sciences, are briefly reviewed; the effects include genetic mutations, induction of cancer, and developmental abnormalities. Hazards are encountered at many stages in the process of nuclear power production: in the mining and processing of uranium, in the design and operation of the reactors, and in the handling, shipping, and storage, of the huge quantities of radioactive wastes produced by the reactors. Grave questions have been raised concerning the safety of the emergency core-cooling systems of present reactors; and the planned breeder reactors, which will contain great quantities of plutonium-239, are likely to be even more hazardous. Storage of radioactive wastes, away from all risks of environmental contamination, in order to be acceptable must be secure for about half-a-million years. No place on Earth has yet been found for which such safety can be guaranteed. Hazards of theft, sabotage, and war, are formidable threats to the future of nuclear fission power.Use of fission power is not compulsory; present supplies of coal are adequate for two or three centuries, though its mining and use will require drastic steps to protect the environment, thereby raising costs. Alternative, and far less dangerously polluting, sources of large-scale energy production exist or can be developed: notably solar energy and probably nuclear fusion, where intensive research gives high promise of adequate systems for large-scale energy production within 20–30 years. Geothermal energy, though more limited in amount, is also promising. Great savings can also be made by reducing the extravagant use of energy, especially in such countries as the United States; and various conservation measures are indicated.


2021 ◽  
pp. 014664532110280
Author(s):  
Olena Pareniuk ◽  
Nakahiro Yasuda

Comparisons of the large nuclear accidents that occurred at the nuclear power plants in Chornobyl and Fukushima usually focus on the emission of radionuclides, the contamination area, doses to the public and liquidation workers, etc. However, little attention has been paid to various factors that affect decisions regarding the future development of these territories, such as the sociopolitical and economic situation in the countries during the accident and at the present time, the density and structure of the population, climate change, media coverage, and accessibility of information to the public. This article attempts to discuss the above factors, speculates about the paths for future development of both exclusion zones, and suggests the most promising areas for joint research in the future.


Author(s):  
Casey R. Kovesdi ◽  
Katya Le Blanc

For existing United States nuclear power plant fleet to remain economically viable, the nuclear industry needs to fundamentally change the way in which these plants are operated, maintained, and supported. A digital transformation is a key strategy to address this challenge. Though, guidance in this area is a continued effort. One framework to support innovation in the nuclear industry has taken a broader perspective by focusing on how technology can be used to meet specific business needs and work for the people and processes at hand. This work discusses the role and value of human factors engineering within this nuclear innovation framework. Human factors methods are presented here regarding how they address the phases of nuclear innovation. This work seeks to describe how human factors can be applied in nuclear innovation by strengthening the alignment of technology, people, processes, and regulations such that the needs of the business is addressed.


2018 ◽  
Vol 8 (1) ◽  
pp. 409-419
Author(s):  
S. G. Maksimova ◽  
M. M. Akulich ◽  
V. V. Pit ◽  
O. E. Noyanzina ◽  
D. A. Omelchenko

<p>The use of nuclear technology increases the ecological risk for the society and people’s moods, inevitably. The article presents results of monitoring, realized in 2013–2015 in nine subjects of the Russian Federation – territories of disposition of the Concern RosEnergoAtom branches – the Voronezhskaya oblast, the Kurskaya oblast, the Leningrad oblast, the Saratovskaya oblast, the Sverdlovskaya oblast, the Murmanskaya oblast, the Rostovskaya oblast, the Tverskaya oblast, and the Smolenskaya oblast. Authors considered social moods of population in regions of location of nuclear power plants, people’s trust to the nuclear industry, opinions about its reliability and safety, and perspectives for the further development. The article contains the results of comparative analysis of integral indexes, characterizing social admissibility of nuclear industry and evaluation of social role of the nuclear power plants in regional economic development. We suggested, that indexes of general and ecological security of the nuclear power plant, revealing the estimations of reliability, stability, general and ecological security, implication of new technologies of protection, implementation of new technologies of environment protection, realized by administrative bodies of the nuclear power plants could could vary in different regions. We proved, that the social admissibility of the risk in regions of nuclear power plants location is a necessary condition for the development of the nuclear industry, elimination of social tension, and formation of positive social moods in regions and cities of location of nuclear power plants.</p>


Author(s):  
Li Min

Fukushima nuclear accident aroused large-scale public panic toward nuclear power development. Due to the limit knowledge of nuclear power, some people feel frightened and fearful for nuclear safety, nuclear radiation as well as nuclear accident. As the energy with clean, stable and high-efficiency, nuclear power always takes imperative and irreplaceable role in Chinese energy program. Therefore, public acceptance and basic knowledge towards nuclear power in post-Fukushima era is facing new unprecedented challenge. How to relieve the panic and frightening of the public and recover the confidence of nuclear power safety is gradually becoming the hot issue among public. This paper makes detailed investigations of current public mental in China toward nuclear power in post-Fukushima era, analyzes the internal and external causes of the panic feeling and further proposes several countermeasures and suggestions accordingly for safe and health development of nuclear power in China.


Author(s):  
Christopher D. Cassino ◽  
Herman O. Lagally

Crisis management and emergent issue resolution are important to maintaining safe and efficient operations in the energy industry. Emergent issues include unanticipated plant complications, new component degradation mechanisms, or events that can affect outage planning and maintenance schedules. This is especially true in the nuclear power industry because of the short schedules for planned outages and maintenance programs. New hires and recent graduates are often unfamiliar with working in a high pressure environment where the consequences of their actions can have safety implications on a large scale. The Steam Generator (SG) Tube Integrity Specialists (TIS) group of Westinghouse Electric Company has developed a number of programs and policies to aid new employees in becoming familiar with emergent issues resolution during planned utility outages and during unplanned events. A summary of best company practices and how they can be applied in undergraduate and graduate education settings is provided. First, the need for more new engineers capable of handling emergent issues is discussed. Then several human performance tools used in the nuclear industry are introduced that can help technical staff perform in demanding situations. Finally, ideas are presented for integrating those tools into a classroom environment so that students can be exposed to error prevention techniques and energy industry concepts before working in the industry.


Sign in / Sign up

Export Citation Format

Share Document