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水中高压电脉冲放电致裂不同强度煤体效果研究 被引量:6
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作者 赵胤翔 赵金昌 +2 位作者 马忠忠 常乐 李春明 《中国矿业》 2021年第10期175-180,共6页
为探明高压脉冲放电技术对不同物理力学特性煤体的致裂效果,用相似材料替代煤岩地层,运用高压脉冲放电系统对不同强度的相似材料进行水中放电致裂实验并分析致裂效果。研究表明:宏观来看,试样强度越大,形成贯通裂纹所需脉冲放电次数越多... 为探明高压脉冲放电技术对不同物理力学特性煤体的致裂效果,用相似材料替代煤岩地层,运用高压脉冲放电系统对不同强度的相似材料进行水中放电致裂实验并分析致裂效果。研究表明:宏观来看,试样强度越大,形成贯通裂纹所需脉冲放电次数越多,所需要的能量也就越大;试样强度越小,形成贯通裂纹后的试样钻孔内部裂隙发育越丰富。裂纹的扩展程度都呈现三个阶段,即准备阶段、发展阶段和破环阶段;但随着试样强度的增大,准备阶段的次数增加,即需要更大能量为发展阶段做准备。裂纹的扩展速度都呈现出“慢-快-慢”的趋势。微观上来看,钻孔周围的裂纹随实验次数增加明显变宽,直至破碎,而这种现象随着距钻孔的距离越大越不明显。 展开更多
关键词 煤层增渗 水中脉冲放 液电现象 裂纹扩展
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Electrokinetic phenomena of poly(vinyl butyral) hollow fiber membranes in different electrolyte solutions
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作者 漆静 王永前 邱运仁 《Journal of Central South University》 SCIE EI CAS 2013年第6期1490-1495,共6页
The streaming potential of poly(vinyl butyral) (PVB) hollow fiber membrane was studied in different electrolyte solutions (including NaCl, KCl, CaCl2 and MgCl2), the effects of ionic strength, ion valence and pH... The streaming potential of poly(vinyl butyral) (PVB) hollow fiber membrane was studied in different electrolyte solutions (including NaCl, KCl, CaCl2 and MgCl2), the effects of ionic strength, ion valence and pH value on the streaming potential (SP) of the membrane were investigated. The zeta potentials and surface charge densities of the membrane were estimated on the basis of Helmholtz-Smoluchowski equation and Gouy-Chapmann theory. The results show that the PVB membrane has a weak negative charge due to the specific adsorption of ions. Moreover, the streaming potential, the zeta potential and the surface charge density of the membrane depend strongly on the salt concentration and the type and valence of ions. The iso-electric point (IEP) of the PVB membrane is arotmd 3.0 in the monovalent media (NaC1 and KC1) and 3.5 in divalent electrolytes (CaCl2 and MgCl2). A few retentions were obtained for PVB membrane in low concentration solutions. This result verifies that the negative charged membrane surface can reject inorganic solutes by means of electrostatic repulsion effect even though the size of membrane pores is much larger than the size of salts. 展开更多
关键词 streaming potential zeta potential poly(vinyl butyral) hollow fiber membrane
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