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面接触条件下胶结颗粒物导热系数模型优化
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作者 陈沅江 蒋志强 谭智仁 《煤田地质与勘探》 CAS CSCD 北大核心 2019年第6期153-158,166,共7页
为了更好地探究岩土类胶结颗粒材料的导热系数变化规律,减少造成的热害问题,根据胶结颗粒物的结构特征,考虑颗粒物和胶结基质为混合物时的状态,并结合有效介质导热系数模型和面接触导热系数模型,构建了适用于岩土类胶结颗粒材料的有效... 为了更好地探究岩土类胶结颗粒材料的导热系数变化规律,减少造成的热害问题,根据胶结颗粒物的结构特征,考虑颗粒物和胶结基质为混合物时的状态,并结合有效介质导热系数模型和面接触导热系数模型,构建了适用于岩土类胶结颗粒材料的有效导热系数计算模型。采用瞬态热线法测试了实验试块的导热系数,将预测值与实测结果和Maxwell-Eucken模型的计算结果对比后发现,两模型的导热系数计算值都随着孔隙率的增加而逐渐减小。4组测试数据结果显示,Maxwell-Eucken模型的导热系数计算结果平均值为0.17172W/(m·K),优化的导热系数计算模型结果平均值为0.17139 W/(m·K),说明优化的导热系数计算模型得出的结论与实际测试结果平均值(0.16922 W/(m·K))更接近,能够更好预测胶结颗粒物质的导热系数。 展开更多
关键词 胶结颗粒物 面接触 导热系数 导热系数模型 孔隙率
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A cementation method of loose particles based on microbe-based cement 被引量:8
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作者 RONG Hui QIAN ChunXiang WANG RuiXing 《Science China(Technological Sciences)》 SCIE EI CAS 2011年第7期1722-1729,共8页
Microbe-based cement has been widely reported in recent literatures. It is a new method of consolidating loose fine particles, which relies on the bacterially induced formation of a compatible carbonate precipitation ... Microbe-based cement has been widely reported in recent literatures. It is a new method of consolidating loose fine particles, which relies on the bacterially induced formation of a compatible carbonate precipitation around individual particles and at particle-particle contacts. Materials and cementation procedure are two major factors that influence the cementation performance of microbe-based cement. Besides, there are some other factors related to the performance, such as pH, temperature, metabolism activity, the flushed times of bacterial solution, concentration of substrate and calcium ion, etc., which affect consolidation function. The assessment methods for cementation process are carried out by various techniques. The performance of consolidation loose grains based on microbe-based cement is tested with the help of experiment. In this paper a review is presented on the cementation mechanism of microbe-based cement, techniques utilized to monitor cementation process, the consolidated performance by microbe-based cement and bond factors. 展开更多
关键词 microbe-based cement bacteria loose particles consolidation carbonate precipitation compressive strength permeability porosity
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