Remedial Shielding Concepts For Line D And Line D Facilities Los Alamos Meson Physics Facility Los Alamos National Laboratory Los Alamos New Mexico PDF Download

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Remedial Shielding Concepts for Line D and Line D Facilities, Los Alamos Meson Physics Facility, Los Alamos National Laboratory, Los Alamos, New Mexico

Remedial Shielding Concepts for Line D and Line D Facilities, Los Alamos Meson Physics Facility, Los Alamos National Laboratory, Los Alamos, New Mexico
Author:
Publisher:
Total Pages: 317
Release: 1992
Genre:
ISBN:

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This appendix contains preliminary structural assessments for tunnel sections 6(T/21), 5(21/21), 3(21/21), 2(21/21), 1(21/21), 2(21/24), 1(21/24), 3(23/23), 5(21/21)S, 4(22/22), and 5(2/8). The tunnel sections are subjected to vertical and horizontal loads estimated as 115 lbs/ft2 for each 1 ft of soil covering the structure and a horizontal load equivalent to 0.3 of the estimated cover load. Determination of shear, axial and bending stresses and associated deformations are included. Young's modulus, cross sectional area, depth of section, thickness of web, weight per unit length, moment of inertia, sectional modulus, radius of gyration, neutral axis, extreme fiber, and element length are the reported properties for the roof, floor, sides, soil, soilend, subsoil, subsoilend elements.


Remedial Shielding Concepts for Line D and Line D Facilities, Los Alamos Meson Physics Facility, Los Alamos National Laboratory, Los Alamos, New Mexico

Remedial Shielding Concepts for Line D and Line D Facilities, Los Alamos Meson Physics Facility, Los Alamos National Laboratory, Los Alamos, New Mexico
Author:
Publisher:
Total Pages: 274
Release: 1992
Genre:
ISBN:

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This appendix contains the structural embankment analysis of the following Line D tunnel sections: 6(T/21), 5(21/21), 3(21/21), 2(21/21), 1(21/21), 2(21/24), 6(T/21), 3(23/23), 5(21/21)S, and 5(2/8). The structural assessment is for each section being covered with a 30 ft tuff berm used as shielding in the event of a beam spill. Each tunnel section is subject to vertical and horizontal loads estimated as 115 lbs/ft2 for each 1 ft or overburden and horizontal loads equivalent to 0.2948 of the vertical load, due to the weight of the tuff berm placed over the structure. The profile of the berm is based on preliminary shielding assessments. Shear, axial and bending stresses are determined with the associated tunnel deformations.


Cost and Schedule Estimate to Construct the Tunnel and Shaft Remedial Shielding Concept, Los Alamos Meson Physics Facility, Los Alamos National Laboratory, Los Alamos, New Mexico. Final Report

Cost and Schedule Estimate to Construct the Tunnel and Shaft Remedial Shielding Concept, Los Alamos Meson Physics Facility, Los Alamos National Laboratory, Los Alamos, New Mexico. Final Report
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Total Pages:
Release: 2006
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ISBN:

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The report provides an estimate of the cost and associated schedule to construct the tunnel and shaft remedial shielding concept. The cost and schedule estimate is based on a preliminary concept intended to address the potential radiation effects on Line D and Line Facilities in event of a beam spill. The construction approach utilizes careful tunneling methods based on available excavation and ground support technology. The tunneling rates and overall productivity on which the cost and project schedule are estimated are based on conservative assumptions with appropriate contingencies to address the uncertainty associated with geological conditions. The report is intended to provide supplemental information which will assist in assessing the feasibility of the tunnel and shaft concept and justification for future development of this particular aspect of remedial shielding for Line D and Line D Facilities.


Lessons from Shielding Retrofits at the LAMPF

Lessons from Shielding Retrofits at the LAMPF
Author:
Publisher:
Total Pages: 15
Release: 1994
Genre:
ISBN:

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The experience in the past 7 years to improve the shielding and radiation control systems at the Los Alamos Meson Physics Facility (LAMPF) and the Manuel Lujan Jr. Neutron Scattering Center (LANSCE) provides important lessons for the design of radiation control systems at future, high beam power proton accelerator facilities. Major issues confronted and insight gained in developing shielding criteria and in the use of radiation interlocks are discussed. For accelerators and beam lines requiring hands-on-maintenance, our experience suggests that shielding criteria based on accident scenarios will be more demanding than criteria based on routinely encountered beam losses. Specification and analysis of the appropriate design basis accident become all important. Mitigation by active protection systems of the consequences of potential, but severe, prompt radiation accidents has been advocated as an alternate choice to shielding retrofits for risk management at both facilities. Acceptance of active protection systems has proven elusive primarily because of the difficulty in providing convincing proof that failure of active systems (to mitigate the accident) is incredible. Results from extensive shielding assessment studies are presented including data from experimental beam spill tests, comparisons with model estimates, and evidence bearing on the limitations of line-of-sight attenuation models in complex geometries. The scope and significant characteristics of major shielding retrofit projects at the LAMPF site are illustrated by the project to improve the shielding beneath a road over a multiuse, high-intensity beam line (Line D).


Shielding Calculations and Verifications for the New Radiation Instrument Calibration Facility at Los Alamos National Laboratory

Shielding Calculations and Verifications for the New Radiation Instrument Calibration Facility at Los Alamos National Laboratory
Author:
Publisher:
Total Pages: 6
Release: 2002
Genre:
ISBN:

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MCNP-4C1 was used to perform the shielding design for the new Central Health Physics Calibration Facility (CHPCF) at Los Alamos National Laboratory (LANL). The problem of shielding the facility was subdivided into three separate components: (1) Transmission; (2) Skyshine; and (3) Maze Streaming/ Transmission. When possible, actual measurements were taken to verify calculation results. The comparison of calculation versus measurement results shows excellent agreement for neutron calculations. For photon comparisons, calculations resulted in conservative estimates of the Effective Dose Equivalent (EDE) compared to measured results. This disagreement in the photon measurements versus calculations is most likely due to several conservative assumptions regarding shield density and composition. For example, reinforcing steel bars (Rebar) in the concrete shield walls were not included in the shield model.


Shielding Concerns at a Spallation Source

Shielding Concerns at a Spallation Source
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Total Pages:
Release: 1989
Genre:
ISBN:

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Neutrons produced by 800-MeV proton reactions at the Los Alamos Neutron Scattering Center spallation neutron source cause a variety of challenging shielding problems. We identify several characteristics distinctly different from reactor shielding and compute the dose attenuation through an infinite slab/shield composed of iron (100 cm) and borated polyethylene (15 cm). Our calculations show that (for an incident spallation spectrum characteristic of neutrons leaking from a tungsten target at 90/degree/) the dose through the shield is a complex mixture of neutrons and gamma rays. High-energy (> 20 MeV) neutron production from the target is approx. =5% of the total, yet causes approx. =68% of the dose at the shield surface. Primary low-energy (


Radiological Safety Aspects of the Operation of Proton Accelerators

Radiological Safety Aspects of the Operation of Proton Accelerators
Author: Ralph H. Thomas
Publisher:
Total Pages: 510
Release: 1988
Genre: Business & Economics
ISBN:

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This report serves as a guide for the planning and implementation of radiation protection programmes for all types of positive ion accelerators. The basic types of accelerators are briefly described, followed by a detailed description of several installations covering the energy range from 10 MeV to 500 GeV. Special emphasis is given to the production of ionizing radiation and its transmission through shielding, computer techniques for shield design, radiation measurement and interpretation, and the radiological impact of accelerators on the environment. Extensive references are given so the book can serve as a source to the published literature.


Publications of Los Alamos Research

Publications of Los Alamos Research
Author: Los Alamos National Laboratory
Publisher:
Total Pages: 176
Release: 1985
Genre: Research
ISBN:

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