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Geopolymer-based modification of blasting sealing materials and optimization of blasting block size in coal seams of open pit mines
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作者 Xiaohua Ding Zhongchen Ao +5 位作者 Wei Zhou Hao Qin Zhongao Yang wen an Xiaoshuang Li Honglin Liu 《International Journal of Mining Science and Technology》 SCIE EI CAS CSCD 2023年第12期1551-1562,共12页
This research proposes the utilization of a geopolymer-based blasting sealing material to improve the profitability of coal sales and reduce the rate of coal fragmentation during blasting in open pit mines.The study f... This research proposes the utilization of a geopolymer-based blasting sealing material to improve the profitability of coal sales and reduce the rate of coal fragmentation during blasting in open pit mines.The study first focused on optimizing the strength of the sealant material and reducing curing time.This was achieved by regulating the slag doping and sodium silicate solution modulus.The findings demonstrated that increasing slag content and improving the material resulted in an early rise in strength while increasing the modulus of the sodium silicate solution extended the curing time.The slag doping level was fixed at 80 g,and the sodium silicate solution modulus was set at 1.5.To achieve a strength of 3.12 MPa,the water/gel ratio was set at 0.5.The initial setting time was determined to be 33 min,meeting the required field test duration.Secondly,the strength requirements for field implementation were assessed by simulating the action time and force destruction process of the sealing material during blasting using ANSYS/LS-DYNA software.The results indicated that the modified material meets these requirements.Finally,the Shengli Open Pit Coal Mine served as the site for the field test.It was observed that the hole-sealing material’s hydration reaction created a laminated and flocculated gel inside it.This enhanced the density of the modified material.Additionally,the pregelatinized starch,functioning as an organic binder,filled the gaps between the gels,enhancing the cohesion and bonding coefficient of the material.Upon analyzing the post-blasting shooting effect diagram using the Split-Desktop software,it was determined that the utilization of the modified blast hole plugging material resulted in a decrease in the rate of coal fragmentation from 33.2%to 21.1%.This reduction exhibited a minimal error of 1.63%when compared to the field measurement,thereby providing further confirmation of the exceptional plugging capabilities of the modified material.This study significantly contributes to establishing a solid theoretical basis for enhancing the blasting efficiency of open pit mines and,in turn,enhancing their economic advantages. 展开更多
关键词 Open pit coal mine Coal seam blasting Sealing materials Block size optimization Numerical simulation
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Initial alignment of compass based on genetic algorithm-particle swarm optimization 被引量:2
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作者 Yi-feng Liang Peng-fei Jiang +2 位作者 Jiang-ning Xu wen an Miao Wu 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2020年第1期257-262,共6页
The rapidity and accuracy of the initial alignment influence the performance of the strapdown inertial navigation system(SINS),compass alignment is one of the most important methods for initial alignment.The selection... The rapidity and accuracy of the initial alignment influence the performance of the strapdown inertial navigation system(SINS),compass alignment is one of the most important methods for initial alignment.The selection of the parameters of the compass alignment loop directly affects the result of alignment.Nevertheless,the optimal parameters of the compass loop of different SINS are also different Traditionally,the alignment parameters are determined by experience and trial-and-error,thus it cannot ensure that the parameters are optimal.In this paper,the Genetic Algorithm-Particle Swarm Optimization(GA-PSO) algorithm is proposed to optimize the compass alignment parameters so as to improve the performance of the initial alignment of strapdown gyrocompass.The experiment results showed that the GA-PSO algorithm can find out the optimal parameters of the compass alignment circuit quickly and accurately and proved the effectiveness of the proposed method. 展开更多
关键词 INERTIAL ALIGNMENT GENETIC algorithm SINS COMPASS ALIGNMENT
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防冻胀护道型式对季冻区高铁路基冻结特征影响分析 被引量:2
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作者 温安 张玉芝 赵维刚 《石家庄铁道大学学报(自然科学版)》 2019年第3期27-33,共7页
基于哈大高铁典型断面的实测数据,运用非稳态相变温度场的数学模型及数值模拟的方法,采用有限元软件COMSOL Multiphysics对路基温度场进行了数值模拟,着重研究了不同型式防冻胀护道对季节性冻土区路基冻结特征的影响,分析了其对路基横... 基于哈大高铁典型断面的实测数据,运用非稳态相变温度场的数学模型及数值模拟的方法,采用有限元软件COMSOL Multiphysics对路基温度场进行了数值模拟,着重研究了不同型式防冻胀护道对季节性冻土区路基冻结特征的影响,分析了其对路基横向地温及横向冻深差异的消除效果。得出结论:增大防冻胀护道的高度可有效减少冷量从两侧侵入路基,能有效减小路基冻深;根据现有研究,建议在修建南北走向季节性冻土区高速铁路路基时采用阳坡侧较低,阴坡侧较高,且阴坡侧护道高度与路基齐平的非对称型式护道,以最大限度减小路基横向地温及横向冻深差异。 展开更多
关键词 季节性冻土区 防冻胀护道 路基 冻结特征
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