云南水力发电
雲南水力髮電
운남수력발전
Yunnan Water Power
2015年
5期
26-31
,共6页
保华富%谢正明%王海波%庞桂%王磊
保華富%謝正明%王海波%龐桂%王磊
보화부%사정명%왕해파%방계%왕뢰
长河坝水电站%反滤料及过渡料%表面振动法%压实控制指标%计算公式
長河壩水電站%反濾料及過渡料%錶麵振動法%壓實控製指標%計算公式
장하패수전참%반려료급과도료%표면진동법%압실공제지표%계산공식
Changheba Hydropower Station%filter material and transition material%surface vibration method%compaction control indicator%calculation formula
结合长河坝水电站大坝反滤料和过渡料填筑,采用表面振动法进行了系统的相对密度试验研究,得出反滤料和过渡料的最小干密度和最大干密度随着P5含量增减而变化,填料的最大干密度与含水率关系密切,最大干密度随含水率从干到湿呈双峰型变化,说明无凝聚性粗粒填料也只能在充分加水时其压实性最佳,应避免含水率在谷点附近碾压。提出了填料最小干密度和最大干密度的理论计算公式,该方法快速、简捷、经济实用,成果比较符合现场振动碾的工作实际。
結閤長河壩水電站大壩反濾料和過渡料填築,採用錶麵振動法進行瞭繫統的相對密度試驗研究,得齣反濾料和過渡料的最小榦密度和最大榦密度隨著P5含量增減而變化,填料的最大榦密度與含水率關繫密切,最大榦密度隨含水率從榦到濕呈雙峰型變化,說明無凝聚性粗粒填料也隻能在充分加水時其壓實性最佳,應避免含水率在穀點附近碾壓。提齣瞭填料最小榦密度和最大榦密度的理論計算公式,該方法快速、簡捷、經濟實用,成果比較符閤現場振動碾的工作實際。
결합장하패수전참대패반려료화과도료전축,채용표면진동법진행료계통적상대밀도시험연구,득출반려료화과도료적최소간밀도화최대간밀도수착P5함량증감이변화,전료적최대간밀도여함수솔관계밀절,최대간밀도수함수솔종간도습정쌍봉형변화,설명무응취성조립전료야지능재충분가수시기압실성최가,응피면함수솔재곡점부근년압。제출료전료최소간밀도화최대간밀도적이론계산공식,해방법쾌속、간첩、경제실용,성과비교부합현장진동년적공작실제。
The surface vibration method was used to perform the systematic relative density test and study based on the placement of the damfi lter and transition materials of Changheba hydropower project. It is concluded that both minimum dry density and maximum dry density of thefi lter material and the transition material change with increase and decrease of P5 content, and that the maximum dry density of the placed material is closely related with its percent moisture content and the maximum dry density changes with variation of percent moisture content from dry to wet in bimodal distribution, which shows that the placed cohesionless coarse material can reach its best compactibility only when it is suffi ciently wetted, and roller compaction should not be carried out when the percent moisture content is at valley point. The paper puts forward a theoretical calculation formula of minimum dry density and maximum dry density. The method can be implemented in a quick, simple and practical way and the results comparably accord with thefi eld working practice of a vibratory roller.