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regenerative ladle baking system heat balance test methods heat balance test heat balance steel industry access door production line load test rfid-based electronic seal readers
GB/T 32971-2016 in English

GB/T 32971-2016 in English

SUPERSEDED

Methods of determination and calculation of heat balance in regenerative burner for ladle preheating system of iron and steel industry

  • Issued on:2016-08-29
  • Implemented on:2017-07-01
  • File Format:PDF
  • Delivery:Via email within 1~3 business days
Price(USD): $190.00
$185.00
Standard No: GB/T 32971-2016
Document status: SUPERSEDED
Superseded by: GB/T 32974-2024 Methods of determination and calculation of heat balance in regenerative furnace of iron and steel industry
Superseded on: 2025-04-01
Title in English: Methods of determination and calculation of heat balance in regenerative burner for ladle preheating system of iron and steel industry
Title in Chinese: 钢铁行业蓄热式钢包烘烤系统热平衡测试与计算方法
Language: English
File Format: Electronic (PDF)
Delivery: Via email within 1~3 business days
Issued on: 2016-08-29
Implemented on: 2017-07-01
Professional Classification: GB-National Standard
Related Keywords: regenerative ladle baking system
heat balance test methods
heat balance test
heat balance
steel industry
Related Topics: steel industry
Regenerative
heat storage
How to calculate 3 times in parallel
thermogravimetric heat balance
way and method
GBT32971
GB/T 32971-2016
Single chamber balance vessel calculation formula
Thermal Balance Test of Regenerative Heating Furnace
Dryer cylinder dynamic balancing country
Thermal balance test method for steel heating furnaces

《GB/T 32971-2016钢铁行业蓄热式钢包烘烤系统热平衡测试与计算方法》由TC183(全国钢标准化技术委员会)归口,TC183SC2(全国钢标准化技术委员会基础分会)执行,主管部门为中国钢铁工业协会。


Introduction

GB/T32971—2016 Standard Development Background and Significance

With the increasing requirements for energy efficiency in the steel industry, the regenerative ladle baking system has been widely used as a high-efficiency energy-saving technology. This standard aims to standardize the thermal balance test and calculation methods of such systems to ensure the scientificity and consistency of thermal efficiency evaluation.

Core content interpretation

Project Specific requirements Scope of application
Base temperature Ambient temperature 1 meter away from the roaster All test scenarios
Fuel calorific value Received base low calorific value of wet coal gas System with gas as fuel
Thermal balance test time Consistent with the ladle baking time, at least 4 consecutive tests All test cycles

Technology Evolution Analysis

From traditional combustion to regenerative combustion, technological progress has significantly improved energy efficiency. By comparing the technical parameters of different stages, it can be seen that the evolution of heat balance test methods has played a key role in improving system performance.


Professional Terminology Analysis

Fuel Calorific Value

Refers to the amount of heat released by a unit mass or volume of fuel when it is completely burned, and is an important indicator for evaluating energy efficiency.

Heat Balance Test

The process of determining the thermal efficiency of the system by comprehensively measuring and calculating the heat income and heat expenditure in the system.

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