水利水电科技进展
水利水電科技進展
수이수전과기진전
ADVANCES IN SCIENCE AND TECHNOLOGY OF WATER RESOURCES
2014年
5期
28-34
,共7页
欧孝夺%廖有芳%苏建%潘鑫%李结全
歐孝奪%廖有芳%囌建%潘鑫%李結全
구효탈%료유방%소건%반흠%리결전
上游法尾矿库%湿堆尾矿%固结装置%大变形固结%径向排水%竖向排水%变荷载%变渗透系数
上遊法尾礦庫%濕堆尾礦%固結裝置%大變形固結%徑嚮排水%豎嚮排水%變荷載%變滲透繫數
상유법미광고%습퇴미광%고결장치%대변형고결%경향배수%수향배수%변하재%변삼투계수
upstream tailings%wet filling tailings%drainage device%large-strain consolidation%horizontal drainage%vertical drainage%time dependent loading%variable permeability coefficient
根据上游法湿堆尾矿的工艺特点,在分析上游法湿堆尾矿渗流固结特性和存在问题的基础上,结合一种适合于上游法尾矿库的排水固结装置的排水特点,在考虑竖向和径向双向排水、变渗透系数及变荷载条件下,采用大变形固结理论推导了尾矿固结计算模型,进而得到以超静孔隙水压力表示的考虑双向排水作用的大变形固结控制方程,并将该方程与Barron固结方程进行比较,验证了计算模型的正确性。采用有限差分法对该大变形固结控制方程进行求解,得到了固结控制方程的差分方程,并利用追赶法等数学方法对差分方程进行了求解。以中铝广西分公司某尾矿库为计算实例,采用该排水固结装置的大变形固结计算模型及数值计算程序进行计算,结果表明该计算模型能有效反映尾矿的固结规律,采用排水固结装置尾矿固结时间缩短了60%以上。
根據上遊法濕堆尾礦的工藝特點,在分析上遊法濕堆尾礦滲流固結特性和存在問題的基礎上,結閤一種適閤于上遊法尾礦庫的排水固結裝置的排水特點,在攷慮豎嚮和徑嚮雙嚮排水、變滲透繫數及變荷載條件下,採用大變形固結理論推導瞭尾礦固結計算模型,進而得到以超靜孔隙水壓力錶示的攷慮雙嚮排水作用的大變形固結控製方程,併將該方程與Barron固結方程進行比較,驗證瞭計算模型的正確性。採用有限差分法對該大變形固結控製方程進行求解,得到瞭固結控製方程的差分方程,併利用追趕法等數學方法對差分方程進行瞭求解。以中鋁廣西分公司某尾礦庫為計算實例,採用該排水固結裝置的大變形固結計算模型及數值計算程序進行計算,結果錶明該計算模型能有效反映尾礦的固結規律,採用排水固結裝置尾礦固結時間縮短瞭60%以上。
근거상유법습퇴미광적공예특점,재분석상유법습퇴미광삼류고결특성화존재문제적기출상,결합일충괄합우상유법미광고적배수고결장치적배수특점,재고필수향화경향쌍향배수、변삼투계수급변하재조건하,채용대변형고결이론추도료미광고결계산모형,진이득도이초정공극수압력표시적고필쌍향배수작용적대변형고결공제방정,병장해방정여Barron고결방정진행비교,험증료계산모형적정학성。채용유한차분법대해대변형고결공제방정진행구해,득도료고결공제방정적차분방정,병이용추간법등수학방법대차분방정진행료구해。이중려엄서분공사모미광고위계산실례,채용해배수고결장치적대변형고결계산모형급수치계산정서진행계산,결과표명해계산모형능유효반영미광적고결규률,채용배수고결장치미광고결시간축단료60%이상。
According to the wet landfill process of upstream tailings, its seepage consolidation characteristics and existing problems are analyzed and additionally, it is put forward based on a drainage device that is suitable for about upstream tailings. With the establishment of the mathematical model, it was possible to derive the formula that considers vertical and radial drainage, varying permeability coefficient, and variable load condition at the same time. The governing equations of large-strain consolidation with both horizontal and vertical drainage are reduced, which is denoted by excess pore water pressure. By comparing study of that governing equations and Barron consolidation formula, we assessed the accuracy of the proposed model. Using the finite difference method to derive the resulting of large strain consolidation of differential equations, thus obtaining the differential equations of consolidation equations an then solving it by using mathematical methods like Pursuit Method. Using the Guangxi Branch of Chalco aluminum tailings as case study, the results show that this calculation model can effectively reflect the consolidation law of the tailings slurry, and the consolidation time of tailings slurry is shortened by more than 60%.