Výpočetní model pro sledování teploty oceli v licích pánvích
Loading...
Downloads
5
Date issued
Authors
Journal Title
Journal ISSN
Volume Title
Publisher
Vysoká škola báňská - Technická univerzita Ostrava
Location
Signature
Abstract
This thesis describes the software solution of the calculation model (just below CM) for monitoring
of the steel temperature in the ladle in the steel plant of ArcelorMittal Ostrava company.
The aim is both to analyze the temperature monitoring condition in ladles in predefined states of
the heat, and to create a software solution that calculates the steel temperature and heat losses
in ladles, and then shows this information in specific modules to the user using the Windows
Presentation Foundation (WPF) graphical interface.
The solution of the diploma thesis contains several components which together make up a
whole, both for calculating the temperature and individual losses, and for displaying of information
to the users. To calculate the temperature and heat loss in the individual heats during
secondary metallurgy of steel, it was necessary to create a windows service that calculates these
and losses and sends this information to the database. The windows service registers to the
event with the heat process identifier and then sends the calculated temperature in each state
back to the database.
The other task is the client-server solution where the Windows Communication Foundation
(WCF) interface provides communication between applications and enables to create serviceoriented
applications. The client is created using WPF to form a desktop application with a
total administration of the developed system which can be used to monitor individual views of
the heat process and losses that are implemented into the modules. The thesis further includes
filtering, the possibility of reports to files, including pdf or excel files. Another option is to create
graphs using OxyPlot and Live Charts.
Description
Subject(s)
Computational Model, Steel Temperature, (Casting) Ladle, Thermal (Heat) Loss, Heat, User Interface, Software Solution