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低水胶比下粉煤灰对水泥早期水化的影响 被引量:26
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作者 胡曙光 吕林女 +3 位作者 何永佳 丁庆军 耿健 王晓 《武汉理工大学学报》 CAS CSCD 2004年第7期14-16,45,共4页
提出可用等效结合水含量和水化影响因子来定性和定量分析粉煤灰对水泥早期水化作用的大小。若粉煤灰的水化影响因子 >1,则粉煤灰促进水泥水化 ,值越大 ,促进作用越显著 ;若粉煤灰的水化影响因子 <1,则粉煤灰延缓水泥水化 ,值越小 ... 提出可用等效结合水含量和水化影响因子来定性和定量分析粉煤灰对水泥早期水化作用的大小。若粉煤灰的水化影响因子 >1,则粉煤灰促进水泥水化 ,值越大 ,促进作用越显著 ;若粉煤灰的水化影响因子 <1,则粉煤灰延缓水泥水化 ,值越小 ,延缓作用越显著。 展开更多
关键词 粉煤灰 水泥 早期水化 水化影响因子
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An Experimental Study on the Wave-Induced Pore Water Pressure Change and Relative Influencing Factors in the Silty Seabed
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作者 LI Anlong LUO Xiaoqiao +2 位作者 LIN Lin YE Qing LI Chunyu 《Journal of Ocean University of China》 SCIE CAS 2014年第6期911-916,共6页
In this study, a flume experiment was designed to investigate the characteristics of wave-induced pore water pressure in the soil of a silty seabed with different clay contents, soil layer buried depths and wave heigh... In this study, a flume experiment was designed to investigate the characteristics of wave-induced pore water pressure in the soil of a silty seabed with different clay contents, soil layer buried depths and wave heights respectively. The study showed that water waves propagating over silty seabed can induce significant change of pore water pressure, and the amplitude of pore pressure depends on depth of buried soil layer, clay content and wave height, which are considered as the three influencing factors for pore water pressure change. The pressure will attenuate according to exponential law with increase of soil layer buried depth, and the attenuation being more rapid in those soil layers with higher clay content and greater wave height. The pore pressure in silty seabed increases rapidly in the initial stage of wave action, then decreases gradually to a stable value, depending on the depth of buried soil layer, clay content and wave height. The peak value of pore pressure will increase if clay content or depth of buried soil layer decreases, or wave height increases. The analysis indicated that these soils with 5% clay content and waves with higher wave height produce instability in bed easier, and that the wave energy is mostly dissipated near the surface of soils and 5% clay content in soils can prevent pore pressure from dissipating immediately. 展开更多
关键词 wave action silty seabed pore water pressure development influencing factor
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