Nonlinear Determination Method for Self-Heating Initiative Temperature of Sulfide Ores

The purpose of this article is to explore a new method to determine the self-heating initiative temperature of sulfide ores for preventing spontaneous combustion of sulfide ores. Two typical ore samples with self-heating characteristics are studied by wavelet transform, recursive graph analysis, Hur...

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Main Authors: Huimin Jin, Wei Pan, Xue Shen, Shuangyi Cheng
Format: Article
Language:English
Published: Wiley 2020-01-01
Series:Complexity
Online Access:http://dx.doi.org/10.1155/2020/1709158
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author Huimin Jin
Wei Pan
Xue Shen
Shuangyi Cheng
author_facet Huimin Jin
Wei Pan
Xue Shen
Shuangyi Cheng
author_sort Huimin Jin
collection DOAJ
description The purpose of this article is to explore a new method to determine the self-heating initiative temperature of sulfide ores for preventing spontaneous combustion of sulfide ores. Two typical ore samples with self-heating characteristics are studied by wavelet transform, recursive graph analysis, Hurst index extraction, and approximate entropy detection. On this basis, self-heating initiative temperature of sulfide ores was measured. The results indicate that the Hurst index of both ore samples in the experiment is greater than 0.5; moreover, the Hurst index in the later period of the experiment is greater than that of the earlier period. The self-heating of sulfide ores is an unsteady process with positive persistence and obvious mutation, so the possibility of self-heating of sulfide ores can be determined according to the change characteristics of Hurst index. The mutation times of the two samples are 864 min and 819 min, respectively, reference values of self-heating initiative temperature are 219.4°C and 232.3°C, and the average relative error is only 1.49%, which are in good agreement with the measured values, and therefore, it provides basis for safety production of high-sulfur ore mine.
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spelling doaj-art-94dcbb3050674da28d29065185b686932025-08-20T02:09:48ZengWileyComplexity1076-27871099-05262020-01-01202010.1155/2020/17091581709158Nonlinear Determination Method for Self-Heating Initiative Temperature of Sulfide OresHuimin Jin0Wei Pan1Xue Shen2Shuangyi Cheng3School of Resources and Safety Engineering, Central South University, Changsha 410083, ChinaSchool of Resources and Safety Engineering, Central South University, Changsha 410083, ChinaSchool of Resources and Safety Engineering, Central South University, Changsha 410083, ChinaSchool of Resources and Safety Engineering, Central South University, Changsha 410083, ChinaThe purpose of this article is to explore a new method to determine the self-heating initiative temperature of sulfide ores for preventing spontaneous combustion of sulfide ores. Two typical ore samples with self-heating characteristics are studied by wavelet transform, recursive graph analysis, Hurst index extraction, and approximate entropy detection. On this basis, self-heating initiative temperature of sulfide ores was measured. The results indicate that the Hurst index of both ore samples in the experiment is greater than 0.5; moreover, the Hurst index in the later period of the experiment is greater than that of the earlier period. The self-heating of sulfide ores is an unsteady process with positive persistence and obvious mutation, so the possibility of self-heating of sulfide ores can be determined according to the change characteristics of Hurst index. The mutation times of the two samples are 864 min and 819 min, respectively, reference values of self-heating initiative temperature are 219.4°C and 232.3°C, and the average relative error is only 1.49%, which are in good agreement with the measured values, and therefore, it provides basis for safety production of high-sulfur ore mine.http://dx.doi.org/10.1155/2020/1709158
spellingShingle Huimin Jin
Wei Pan
Xue Shen
Shuangyi Cheng
Nonlinear Determination Method for Self-Heating Initiative Temperature of Sulfide Ores
Complexity
title Nonlinear Determination Method for Self-Heating Initiative Temperature of Sulfide Ores
title_full Nonlinear Determination Method for Self-Heating Initiative Temperature of Sulfide Ores
title_fullStr Nonlinear Determination Method for Self-Heating Initiative Temperature of Sulfide Ores
title_full_unstemmed Nonlinear Determination Method for Self-Heating Initiative Temperature of Sulfide Ores
title_short Nonlinear Determination Method for Self-Heating Initiative Temperature of Sulfide Ores
title_sort nonlinear determination method for self heating initiative temperature of sulfide ores
url http://dx.doi.org/10.1155/2020/1709158
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AT shuangyicheng nonlineardeterminationmethodforselfheatinginitiativetemperatureofsulfideores