Nuclear Simulation: Second European Nuclear Simulation Symposium Schliersee, October 1990 - Proceedings

Nuclear Simulation: Second European Nuclear Simulation Symposium Schliersee, October 1990 - Proceedings

by Moshe R. Heller (Editor)

Paperback(Softcover reprint of the original 1st ed. 1990)

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Product Details

ISBN-13: 9783642842818
Publisher: Springer Berlin Heidelberg
Publication date: 01/05/2012
Edition description: Softcover reprint of the original 1st ed. 1990
Pages: 240
Product dimensions: 6.10(w) x 9.25(h) x 0.02(d)

Table of Contents

Nuclear Power Plant Simulation Session.- Experience with Simulation of Nuclear Systems on Parallel Processing Computer Systems.- A Pump Model for Use in Real-Time Simulation.- Hydraulic Network Modelling for Real-Time Power Plant Simulation with Computer Aided Code Generation.- Software Tools Session.- SIPA, a Training and Engineering Simulator and AGLAE, a Flexible Workshop for Model Generation.- An Environment for Parallel Structuring of Fortran Programs.- Advanced Modular Simulation Techniques for Nuclear Power Plants.- Practical Experience with Software Tools to Assess and Improve the Quality of Existing Nuclear Analysis and Safety Codes.- Nuclear Core and Power Plant Simulation on High Performance Parallel Computer Systems.- Artificial Intelligence Session.- Knowledge-Based Systems to Support Dynamic Process Simulation.- Computational Fluid Dynamics Session.- Two Phase Flow Analysis Capability of Advanced Computer Codes.- Finite Element Weak Statement CFD Algorithms for Fluid-Thermal System Analysis.- Neutron Kinetics Session.- Real-Time Advanced Nuclear Reactor Core Model.- The Validity of the Point Kinetics Model During Reactor Start-Up.- Axial Flux Difference on Beijing Nuclear Power Plant Simulator.- Plant Analyser Session.- APROS Nuclear Plant Analyser.- Computer Based Education Session.- Pressurised Water Reactor Simulation in the Training Environment.- A Real-Time Core Model for Nuclear Power Plant Simulators.- Nuclear Waste Session.- Ground Water Flow Analysis of Potential Low Level Radioactive Waste Disposal Sites Using Electrical Circuit Analogies.

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