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ISO 13579-2:2013

Current

Current

The latest, up-to-date edition.

Industrial furnaces and associated processing equipment — Method of measuring energy balance and calculating efficiency — Part 2: Reheating furnaces for steel

Available format(s)

Hardcopy , PDF , PDF 3 Users , PDF 5 Users , PDF 9 Users

Language(s)

English, French

Published date

01-03-2013

ISO 13579-2:2013 specifies a general methodology for measuring energy balance and calculating the efficiency of the process involving reheating furnaces for steel as designed by furnace manufacturers. This general methodology includes measurement methods, calculations (general calculation) and energy balance and efficiency calculation evaluation report. ISO 13579-2:2013 is not applicable to any efficiencies related to the process itself outside of reheating furnaces for steel.

Committee
ISO/TC 244
DevelopmentNote
Supersedes ISO/DIS 13579-2. (01/2013)
DocumentType
Standard
Pages
34
PublisherName
International Organization for Standardization
Status
Current

Standards Relationship
NF ISO 13579-2 : 2013 Identical
BS ISO 13579-2:2013 Identical

PD IEC/TS 62796:2013 Energy efficiency in electroheating installations
BS ISO 13579-11:2017 Industrial furnaces and associated processing equipment. Method of measuring energy balance and calculating energy efficiency Evaluation of various kinds of efficiency
ISO 13579-11:2017 Industrial furnaces and associated processing equipment — Method of measuring energy balance and calculating energy efficiency — Part 11: Evaluation of various kinds of efficiency
16/30340778 DC : 0 BS ISO 13579-11 - INDUSTRIAL FURNACES AND ASSOCIATED PROCESSING EQUIPMENT - METHOD OF MEASURING ENERGY BALANCE AND CALCULATING ENERGY EFFICIENCY - PART 11: EVALUATION OF VARIOUS KIND OF EFFICIENCY

VDMA 24206 : 2002 ACCEPTANCE AND ORDERING OF THERMOPROCESSING EQUIPMENT FOR THE STEEL, IRON AND NON-FERROUS METALS INDUSTRY
ISO 13579-1:2013 Industrial furnaces and associated processing equipment — Method of measuring energy balance and calculating efficiency — Part 1: General methodology

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