PROPOSAL FOR A RESEARCH AND ISOTOPE REACTOR AT ORNL.

PROPOSAL FOR A RESEARCH AND ISOTOPE REACTOR AT ORNL. PDF Author:
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Languages : en
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Proposal for a Research and Isotope Reactor at ORNL

Proposal for a Research and Isotope Reactor at ORNL PDF Author: Arthur H. Snell
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ISBN:
Category : Isotopes
Languages : en
Pages : 48

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PROPOSAL FOR A RESEARCH AND ISOTOPE REACTOR AT ORNL.

PROPOSAL FOR A RESEARCH AND ISOTOPE REACTOR AT ORNL. PDF Author:
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ISBN:
Category :
Languages : en
Pages :

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Proposal for a Research and Isotope Reactor at ORNL.

Proposal for a Research and Isotope Reactor at ORNL. PDF Author: Arthur Hawley Snell
Publisher:
ISBN:
Category :
Languages : en
Pages : 44

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The Oak Ridge High Flux Isotope Reactor, Design and Initial Operation

The Oak Ridge High Flux Isotope Reactor, Design and Initial Operation PDF Author:
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ISBN:
Category :
Languages : en
Pages : 34

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A Review of Proposed Upgrades to the High Flux Isotope Reactor and Potential Impacts to Reactor Vessel Integrity

A Review of Proposed Upgrades to the High Flux Isotope Reactor and Potential Impacts to Reactor Vessel Integrity PDF Author:
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Category :
Languages : en
Pages :

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The High Flux Isotope Reactor (HFIR) at Oak Ridge National Laboratory (ORNL) was scheduled in October 2000 to implement design upgrades that include the enlargement of the HB-2 and HB-4 beam tubes. Higher dose rates and higher radiation embrittlement rates were predicted for the two beam-tube nozzles and surrounding vessel areas. ORNL had performed calculations for the upgraded design to show that vessel integrity would be maintained at acceptable levels. Pacific Northwest National Laboratory (PNNL) was requested by the U.S. Department of Energy Headquarters (DOE/HQ) to perform an independent peer review of the ORNL evaluations. PNNL concluded that the calculated probabilities of failure for the HFIR vessel during hydrostatic tests and for operational conditions as estimated by ORNL are an acceptable basis for selecting pressures and test intervals for hydrostatic tests and for justifying continued operation of the vessel. While there were some uncertainties in the embrittlement predictions, the ongoing efforts at ORNL to measure fluence levels at critical locations of the vessel wall and to test materials from surveillance capsules should be effective in dealing with embrittlement uncertainties. It was recommended that ORNL continue to update their fracture mechanics calculations to reflect methods and data from ongoing research for commercial nuclear power plants. Such programs should provide improved data for vessel fracture mechanics calculations.

The Oak Ridge National Laboratory Research Reactor (ORR)

The Oak Ridge National Laboratory Research Reactor (ORR) PDF Author: T. E. Cole
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ISBN:
Category : Materials testing reactors
Languages : en
Pages : 70

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Needs and Requirements for Future Research Reactors (ORNL Perspectives).

Needs and Requirements for Future Research Reactors (ORNL Perspectives). PDF Author:
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Category :
Languages : en
Pages : 38

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The High Flux Isotope Reactor (HFIR) is a vital national and international resource for neutron science research, production of radioisotopes, and materials irradiation. While HFIR is expected to continue operation for the foreseeable future, interest is growing in understanding future research reactors features, needs, and requirements. To clarify, discuss, and compile these needs from the perspective of Oak Ridge National Laboratory (ORNL) research and development (R & D) missions, a workshop, titled "Needs and Requirements for Future Research Reactors", was held at ORNL on May 12, 2015. The workshop engaged ORNL staff that is directly involved in research using HFIR to collect valuable input on the reactor's current and future missions. The workshop provided an interactive forum for a fruitful exchange of opinions, and included a mix of short presentations and open discussions. ORNL staff members made 15 technical presentations based on their experience and areas of expertise, and discussed those capabilities of the HFIR and future research reactors that are essential for their current and future R & D needs. The workshop was attended by approximately 60 participants from three ORNL directorates. The agenda is included in Appendix A. This document summarizes the feedback provided by workshop contributors and participants. It also includes information and insights addressing key points that originated from the dialogue started at the workshop. A general overview is provided on the design features and capabilities of high performance research reactors currently in use or under construction worldwide. Recent and ongoing design efforts in the US and internationally are briefly summarized, followed by conclusions and recommendations.

SELECTED STUDIES OF PAST OPERATIONS AT THE ORNL HIGH FLUX ISOTOPE REACTOR.

SELECTED STUDIES OF PAST OPERATIONS AT THE ORNL HIGH FLUX ISOTOPE REACTOR. PDF Author:
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Category :
Languages : en
Pages :

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In response to on-going programs at Oak Ridge National Laboratory, two topics related to past operations of the High Flux Isotope Reactor (HFIR) are being reviewed and include determining whether HFIR fuel can be converted from high enriched uranium (HEU) to low enriched uranium (LEU) and determining whether HFIR beryllium reflectors are discharged as transuranic (TRU) waste. The LEU conversion and TRU waste studies are being performed in accordance with the Reduced Enrichment for Research and Test Reactors program and the Integrated Facility Disposition Project, respectively. While assessing data/analysis needs for LEU conversion such as the fuel cycle length and power needed to maintain the current level of reactor performance, a reduction of about 8% (~200 MWD) in the end-of-cycle exposure for HFIR fuel was observed over the lifetime of the reactor (43 years). The SCALE 6.0 computational system was used to evaluate discharged beryllium reflectors and it was discovered if the reflectors are procured according to the current HFIR standard, discharged reflectors would not be TRU waste, but the removable reflector (closest to core) would become TRU waste approximately 40 years after discharge. However, beryllium reflectors have been fabricated with a greater uranium content than that stipulated in the standard and these reflectors would be discharged as TRU waste.

Review of the Oak Ridge National Laboratory (ORNL) Neutronic Calculations Regarding the Conversion of the High Flux Isotope Reactor (HFIR) to the Use of Low Enriched Uranium (LEU) Fuel

Review of the Oak Ridge National Laboratory (ORNL) Neutronic Calculations Regarding the Conversion of the High Flux Isotope Reactor (HFIR) to the Use of Low Enriched Uranium (LEU) Fuel PDF Author:
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Category :
Languages : en
Pages :

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The High Flux Isotope Reactor (HFIR) Cold Source Project at ORNL.

The High Flux Isotope Reactor (HFIR) Cold Source Project at ORNL. PDF Author:
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Category :
Languages : en
Pages : 1

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The scope of this project includes the development, design, procurement/fabrication, testing, and installation of all of the components necessary to produce a working cold source within an existing HFIR beam tube hole in the pressure vessel. All aspects of the cold source design will be based on demonstrated technology adapted to the HFIR design and operating conditions.