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The Containment of Underground Nuclear Explosions...

The Containment of Underground Nuclear Explosions...
Author: United States. Congress. Office Of Techn
Publisher: Hardpress Publishing
Total Pages: 100
Release: 2013-12
Genre:
ISBN: 9781314910353

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Unlike some other reproductions of classic texts (1) We have not used OCR(Optical Character Recognition), as this leads to bad quality books with introduced typos. (2) In books where there are images such as portraits, maps, sketches etc We have endeavoured to keep the quality of these images, so they represent accurately the original artefact. Although occasionally there may be certain imperfections with these old texts, we feel they deserve to be made available for future generations to enjoy.


Caging the Dragon

Caging the Dragon
Author:
Publisher:
Total Pages: 741
Release: 1995
Genre:
ISBN:

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The science of the containment of U.S. underground tests is documented through a series of interviews of leading containment scientists and engineers.


Nuclear Weapons

Nuclear Weapons
Author: Office of Technology Assessment (OTA)
Publisher:
Total Pages: 324
Release: 2017-11-16
Genre:
ISBN: 9781973313687

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Three authoritative reports provide unique information about nuclear weapons testing and the verification of nuclear nonproliferation treaties: (1) The Containment of Underground Nuclear Explosions, (2) Seismic Verification of Nuclear Testing Treaties, (3) Environmental Monitoring for Nuclear Safeguards. The Containment of Underground Nuclear Explosions - At a time of continued underground nuclear bomb tests, an assessment of the safety of the process led to this report. This special report reviews the safety of the nuclear testing program and assesses the technical procedures used to test nuclear weapons and ensure that radioactive material produced by test explosions remains contained underground. An overall evaluation considers the acceptability of the remaining risk and discusses reasons for the lack of public confidence. Seismic Verification of Nuclear Testing Treaties - Like an earthquake, the force of an underground nuclear explosion creates seismic waves that travel through the Earth. A satisfactory seismic network to monitor such tests must be able to both detect and identify seismic signals in the presence of "noise," for example, from natural earthquakes. In the case of monitoring a treaty that limits testing below a certain size explosion, the seismic network must also be able to estimate the size with acceptable accuracy. All of this must be done with an assured capability to defeat adequately any credible attempt to evade or spoof the monitoring network. This report addresses the issues of detection, identification, yield estimation, and evasion to arrive at answers to the two critical questions: Down to what size explosion can underground testing be seismically monitored with high confidence? How accurately can the yields of underground explosions be measured? Environmental Monitoring for Nuclear Safeguards - To assure that states are not violating their Non-Proliferation Treaty commitments, the International Atomic Energy Agency (IAEA) must also verify that states do not possess covert nuclear facilities-a mission that prior to the 1991 Gulf War, it had neither the political backing nor the resources to conduct. In the report, OTA concluded that providing the IAEA with the resources, the information, and the political support it needs to look for such sites may turn out to be the most important aspect of a reinvigorated safeguards regime. The IAEA recognizes the importance of this new mission and is in the process of assuming it. One of the tools it is exploring to provide some indication of the presence of secret, or undeclared, nuclear activities and facilities is environmental monitoring. Modern sampling and analysis technologies provide powerful tools to detect the presence of characteristic substances that are likely to be emitted by such illicit activities. This background paper examines the prospects for such technologies to improve nuclear safeguards. It concludes that environmental monitoring can greatly increase the ability to detect undeclared activity at declared, or known, sites, and it can significantly increase the chances of detecting and locating undeclared sites.


Geotechnical Studies Relevant to the Containment of Underground Nuclear Explosions at the Nevada Test Site

Geotechnical Studies Relevant to the Containment of Underground Nuclear Explosions at the Nevada Test Site
Author:
Publisher:
Total Pages:
Release: 1982
Genre:
ISBN:

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The Department of Energy and the Department of Defense are actively pursuing a program of nuclear weapons testing by underground explosions at the Nevada Test Site (NTS). Over the past 11 years, scores of tests have been conducted and the safety record is very good. In the short run, emphasis is put on preventing the release of radioactive materials into the atmosphere. In the long run, the subsidence and collapse of the ground above the nuclear cavities also are matters of interest. Currently, estimation of containment is based mostly on empiricism derived from extensive experience and on a combination of physical/mechanical testing and numerical modeling. When measured directly, the mechanical material properties are obtained from short-term laboratory tests on small, conventional samples. This practice does not determine the large effects of scale and time on measured stiffnesses and strengths of geological materials. Because of the limited data base of properties and in situ conditions, the input to otherwise fairly sophisticated computer programs is subject to several simplifying assumptions; some of them can have a nonconservative impact on the calculated results. As for the long-term, subsidence and collapse phenomena simply have not been studied to any significant degree. This report examines the geomechanical aspects of procedures currently used to estimate containment of undergroung explosions at NTS. Based on this examination, it is concluded that state-of-the-art geological engineering practice in the areas of field testing, large scale laboratory measurements, and numerical modeling can be drawn upon to complement the current approach.


Proceedings of the Seventh Symposium on Containment of Underground Nuclear Explosions

Proceedings of the Seventh Symposium on Containment of Underground Nuclear Explosions
Author:
Publisher:
Total Pages: 431
Release: 1993
Genre:
ISBN:

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This is Volume 2 of two unclassified volumes of a meeting of workers at all levels in the science and technology of containment. Papers on containment and related geological, geophysical, engineering, chemical, and computational topics were included. Particular topics in this volume include: Low-yield test beds, modeling and residual stress, material properties, collapse phenomena and shock diagnostics, stemming practices and performance, geophysics, and geosciences and weapons destruction. Individual papers are indexed separately on the data base.


Phenomenology and Containment of Underground Nuclear Explosions

Phenomenology and Containment of Underground Nuclear Explosions
Author:
Publisher:
Total Pages: 53
Release: 1968
Genre:
ISBN:

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This document will deal with some aspects of the phenomenology of underground nuclear explosions. It is divided into four general sections. First, we shall examine the rather extensive history of routine underground explosions and note that, from a pragmatic point of view, a nuclear explosion can be contained by putting it underground. Those few cases where some radioactivity was released will be examined to see if they can be categorized or if there were extenuating circumstances. Second, we shall describe the calculation of early time phenomenology the interactions between a nuclear explosion and the media surrounding it during the first few tenths of a second after the explosion. We shall attempt to substantiate these calculations by showing how well they agree with actual measurements. Third, we will present a parallel discussion of the calculation of late time phenomenology and the verificati6n of these calculations by field observations. Fourth, we shall address the question of how containment is affected by geological features such as faults and joints.