2 edition of Validation of AHWR start-up procedure in integral test loop found in the catalog.
Validation of AHWR start-up procedure in integral test loop
R. K. Bagul
|Statement||R.K. Bagul ... [et al.].|
|Series||BARC external -- BARC/2009/E/017|
|Contributions||Bhabha Atomic Research Centre|
|LC Classifications||Microfiche 2010/# (T)|
|The Physical Object|
|Pagination||vii, 39 p.|
|Number of Pages||39|
|LC Control Number||2010319455|
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The structural optimization procedure presented in this book makes it possible to achieve seismic protection through integrated structural/control system design. In particular, it is explained how slender structural systems with a high seismic performance can be achieved through inclusion of viscous and viscoelastic dampers as an integral part. The NuScale plant design has been guided by a comprehensive set of customer utility requirements and informed by U.S. expert panels on reactor safety and data and analyses using state-of-the-art computer codes benchmarked against a 1/3-scale full-pressure, full temperature integral system test facility at Oregon State University.
System Start-up Test NPA Methods for the Analysis of Transport and Deposition of Radionuclides BWR Experimental Test Loop for Stability and Transient Test BAMBOO ADAMS Emergency Procedure Guide-line. The megawatt test reactor, NASA’s only reactor, was the eighth largest test reactor in the world. The facility was built by the Lewis Research Center in the late s to study the effects of radiation on different materials that could be used to construct nuclear propulsion systems for aircraft or rockets.
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Advanced Heavy Water Reactor (AHWR) being developed in India is a pressure tube type natural circulation boiling water-cooled reactor, wherein major part of the power is generated by thorium. Experiments and analytical studies have been performed to Cited by: 1. Validation of AHWR start-up procedure in integral test loop: Vitrification of spent mordenite molecular sieves: Work station for low termperature positron annihilation studies: Workshop, nuclear hydrology, April,Kozhikode (Kerala): proceedings.
WWER pressure vessel steel embrittlement an. Simulates main heat transport and safety systems of AHWR MAIN OBJECTIVE • Simulation of accidental conditions, operational transients and start-up SCALING • Power – to – Volume scaling philosophy adopted • Pressure, temperature and elevation: • Volume scaling ratio: 6.
Implementation and Validation of Downcomer and Upper Tie Plate CCFL Correlations in a Two-Fluid Code. Investigations to Arrive at a Stable Start-Up Procedure for AHWR. Bagul, D. Pilkhwal, Experimental Investigations on the Isolation Condenser Performance in Integral Test Loop.
Manish Sharma, D. Pilkhwal. The integral test loop, which simulates the main heat transport system (MHTS) and the safety systems of AHWR, is utilized to generate steady-state and stability data, start-up procedure validation, and to study parallel channel behavior.
It is also used for performance validation of isolation condensers and ECCS through LOCA : R.K. Sinha, P. Chellapandi, G. Srinivasan, I. Dulera, P.K. Vijayan, S.K. Chande. Experimental validation of a dual loop control of two phases interleaved boost converter for fuel cell Available via license: CC BY-NC-ND Content may be subject to copyright.
The book also presents thermosyphon heat transport devices in nuclear and other industrial plants, a common information need for students and researchers alike. This book is invaluable for engineers, designers, operators and consultants in nuclear, mechanical, electrical and chemical disciplines.
The Compact Integral Effects Test (CIET ) facility reproduces the thermal-hydraulic response of fluoride salt-cooled high-temperature reactors (FHRs) under forced- and natural-circulation. Apart from start-up, power raising, setback, and reactor trip, other operational procedures and transients having the possibility to land the system in an unstable zone need to be analyzed for finalizing the stable operating domain.
Finally, experimental validation of the operating domain is required to. Mathematical Modeling and Experimental Validation of Oscillating Heat Pipes Takurou Daimaru1, closed loop OHP with 16 turns. A comparison of the calculations and experimental results start-up behaviors of different initial conditions of liquid distribution were simulated to clarify the startup characteristics of OHPs.
Test environments include a 3MW boiling water test loop, a scaled test facility (the integral test loop) based on power-to-volume scaling for thermal hydraulic simulation of AHWRs, a natural circulation loop for stability and start-up studies, a transparent setup for natural circulation flow distribution studies, and a facility at the Apsara.
Jiang et al. investigated the start-up at HRTL-5, which represented the geometric and the system design of NHR-5, experimentally in They observed geysering, flashing (at a pressure lower than 3 bar) and DWO I during the start-up and proposed a stable start-up by: 1.
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1 ISBN (soft back ed.) ISSN –(soft back ed.). Thermal-hydraulic Loop Figure shows a schematic of the test facility. The thermal-hydraulic loop consists of two channels, a chimney, an upper-plenum (separator), a downcomer, a subcooler, and a preheater.
The channel length, l c, is m and the chimney length, l r, is m, being around 70% ofFile Size: 4MB. Next, the test-case of a rod-airfoil interaction noise is considered wherein the effect of self-scattering (by modelling the airfoil) on source location and resolution is analysed.
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The NuScale Integral System test facility is being used to evaluate design improvements, and to conduct integral system tests for NRC certification. NuScale Power Inc. submitted an application to the US Department of Energy for the SMR development support programme in March and is awaiting the results, expected by the end of .
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