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Podatkovne strukture pri simulaciji ogrevnih peči
Jaklič, Anton (Author), Kolenko, Tomaž (Author), Glogovac, Branislav (Author)

URLURL - Presentation file, Visit http://www.dlib.si/details/URN:NBN:SI:DOC-PF0GFDEA This link opens in a new window

Abstract
Pri simulaciji ogrevnih peči se srečujemo z velikim številom podatkov, ki jih je treba obdelati v realnem času. Ker gre večinoma za rekurzivna izračunavanja, želimo kar največ podatkov hraniti v pomnilniku računalnika, kar bistveno pripomore k hitrosti izračunavanja. Podatkovna struktura določa obliko, v kateri bodo zapisani podatki v pomnilniku. Z izbiro najprimernejše strukture bistveno pripomoremo k preglednosti pri programiranju in hitrosti dostopa do podatkov, olajša pa nam tudi dodajanje in brisanje podatkov v strukturi. V prispevku prikazujemo primer izbrane podatkovne strukture, ki je primerna za obravnavo koračnih in potisnih peči. Gre za kazalčno zasnovano strukturo, ki lahko svojo obliko dinamično prilagaja stanju v peči.

Language:Slovenian
Keywords:koračna peč, simulacija peči, podatkovna struktura, kazalčna struktura
Work type:Not categorized (r6)
Tipology:1.01 - Original Scientific Article
Organization:NTF - Faculty of Natural Sciences and Engineering
Year:2001
Publisher:Inštitut za kovinske materiale in tehnologije
Number of pages:str. 401-403
Numbering:Letn. 35, št. 6
UDC:621.77.014:519.68
ISSN on article:1580-2949
COBISS.SI-ID:330591 Link is opened in a new window
Views:723
Downloads:150
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Record is a part of a journal

Title:Materiali in tehnologije
Shortened title:Mater. tehnol.
Publisher:Inštitut za kovinske materiale in tehnologije
ISSN:1580-2949
COBISS.SI-ID:106193664 This link opens in a new window

Secondary language

Language:English
Title:Data structures in a reheating-furnace simulation
Abstract:
The simulation of reheating furnaces is associated with an enormous amount of data which have to be processed in real time. Dealing mostly by recursive calculations it is preferable for the data to be saved in the computer's RAM. This allows faster manipulation of the data. The data structure determines the form of the data storing in the RAM. The appropriate data structure allows clearer programming; faster data access; and makes code more efficient and simplifies deleting and adding the data in the structure. In this contribution the chosen data structure for a walking-beam furnace and for a pusher-type furnace is presented. It is a pointer-based data structure, which can be dynamically adapted to the situation in the furnace.

Keywords:walking-beam furnace, furnace simulation, data structure, pointer structure

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