李微哲 婁平
摘要:
給出了小剪切變形下的基樁PΔ效應(yīng)和大剪切變形下支座PΔ效應(yīng)計(jì)算的桿單元?jiǎng)偠染仃嚪匠?。假定桿單元彎曲變形位移函數(shù)為三次冪函數(shù),剪切變形函數(shù)為線(xiàn)性函數(shù),根據(jù)有限元法一般原理,推導(dǎo)了一種同時(shí)計(jì)入豎向力徑向剪切分力剪切變形和水平力剪切變形的PΔ效應(yīng)桿單元?jiǎng)偠确匠蹋茖?dǎo)了一種僅計(jì)入豎向力徑向剪切分力剪切變形而忽略水平力剪切變形的PΔ效應(yīng)桿單元?jiǎng)偠确匠?,推?dǎo)了一種僅計(jì)入水平力剪切變形而忽略豎向力徑向剪切分力剪切變形的PΔ效應(yīng)桿單元?jiǎng)偠确匠獭S?jì)入水平力剪切變形而忽略豎向力徑向剪切分力剪切變形的PΔ效應(yīng)桿單元可良好的模擬支座在大剪切變形下的偏心工作特性,能實(shí)時(shí)計(jì)入其偏心彎矩影響,為實(shí)時(shí)計(jì)入支座偏心特性的結(jié)構(gòu)動(dòng)靜力分析提供了理論支撐。最后通過(guò)自編MATLAB程序進(jìn)行算例分析,結(jié)果表明,計(jì)入支座大剪切變下的PΔ效應(yīng)后,基樁內(nèi)力位移和地基土壓力均顯著增大?;鶚蹲陨砑羟凶冃螌?duì)樁身內(nèi)力位移和地基土壓力影響較小,可以忽略。
關(guān)鍵詞:基樁;支座;水平力剪切變形;豎向力徑向剪切分力;PΔ效應(yīng);有限桿單元法
中圖分類(lèi)號(hào):TU470
文獻(xiàn)標(biāo)志碼:A文章編號(hào):16744764(2016)06006210
Abstract:Finite pole element method is presented for PΔ effect analysis of pile and bearing while shear deformation is well considered. It is assumed that horizontal displacement of the pole element has a longitudinally cubic power function and the shear displacement has a longitudinally linear function, the PΔ effect pole element rigid equation considering the shear deformation produced by lateral load and the radial component of vertical load, is derived. The PΔ effect pole element rigid equation considering the shear deformation only produced by lateral load is derived in the paper. The PΔ effect pole element rigid equation considering the shear deformation only produced by the radial component of vertical load, is derived in the paper. And the PΔ effect pole element considering the shear deformation only produced by lateral load can simulate the bearing working eccentrically well in realtime. Matlab process of finite pole element method for PΔ effect analysis of pile and bearing is edited, and case analysis is done, and the theory and the method is proved good. Finally conclusions are drawn as follows: (i) the PΔ effect analysis result of pile will increase obviously while the eccentric bending moment of the bearing is well considered; (ii) the deformation has little effect on the PΔ effect analysis result of the pile and bearing.
Keywords:
pile; bearing; lateral shear deformation; radial component of vertical load; PΔ effect; finite pole element method
傾斜荷載下的基樁,不僅水平力產(chǎn)生剪切變形,豎向力因轉(zhuǎn)角產(chǎn)生徑向剪切分力也將產(chǎn)生剪切變形。樁頂支座大剪切變形下的PΔ效應(yīng)極顯著,不容忽略。目前,計(jì)入剪切變形的基樁PΔ效應(yīng)計(jì)算的有桿單元法尚似未見(jiàn)報(bào)道。而彈簧、剛臂或等效偏心彎矩均難實(shí)時(shí)模擬支座大剪切變形下的PΔ效應(yīng)。因此研究計(jì)入小剪切變形下的基樁PΔ效應(yīng)和大剪切變形下支座PΔ效應(yīng)計(jì)算方法具有實(shí)際意義。
目前基樁PΔ效應(yīng)計(jì)算分析方法較多,可分為解析解法和有限元法兩大類(lèi)。線(xiàn)彈性土中基樁PΔ效應(yīng)靜力計(jì)算解析解,主要有m法假定的冪級(jí)數(shù)解[1],C法(張氏法)假定的解析解[23],以及 (mz+C)法假定的冪級(jí)數(shù)解[4]。隨后欒魯寶等[5]給出了粘彈性土中考慮PΔ效應(yīng)時(shí)基樁水平振動(dòng)的解析解答。趙明華等[6]提出應(yīng)用有限元-有限層法進(jìn)行基樁PΔ效應(yīng)計(jì)算。在有限桿元法中,通過(guò)附加幾何剛度矩陣來(lái)考慮PΔ效應(yīng)。常用的桿單元幾何剛度矩陣為線(xiàn)性近似的幾何剛度矩陣或一致幾何剛度矩陣。但因假定和推導(dǎo)過(guò)程差異,幾何剛度矩陣形式較多。王用中等 [7]、趙明華等[8,10]、夏擁軍等[9]均給出了不同形式的PΔ效應(yīng)桿單元?jiǎng)偠染仃嚪匠獭A喝式艿萚11]提出用白噪聲掃描的手段,結(jié)合數(shù)值計(jì)算的方法,求解結(jié)構(gòu)考慮 PΔ 效應(yīng)時(shí)的模態(tài)參數(shù),并研究了PΔ 效應(yīng)對(duì)結(jié)構(gòu)動(dòng)力特性影響。李剛等[12]應(yīng)用有限桿單元法對(duì)結(jié)構(gòu)PΔ效應(yīng)動(dòng)力分析,認(rèn)為PΔ效應(yīng)將降低結(jié)構(gòu)抗震能力。耿江瑋等[13]對(duì)考慮材料非線(xiàn)性和PΔ效應(yīng)的非規(guī)則連續(xù)梁橋進(jìn)行地震反應(yīng)分析,魏標(biāo)等[14]重點(diǎn)研究了支座布置對(duì)不等高墩非規(guī)則連續(xù)梁橋地震響應(yīng)的影響,張志俊等[15]進(jìn)行了彈性支座對(duì)橋梁車(chē)致振動(dòng)的隔振效果研究,以上學(xué)者均用彈簧或彈簧阻尼單元模擬橋梁支座,忽略了支座的偏心彎矩效應(yīng)。馬長(zhǎng)飛等[16]、劉彥輝等[17]通過(guò)構(gòu)造水平力偶代替支座偏心彎矩,應(yīng)用有限桿單元法對(duì)上下部結(jié)構(gòu)和隔震支座進(jìn)行了地震反應(yīng)分析,雖考了了支座偏心彎矩效應(yīng),但求解較復(fù)雜,通用性不足。孟凡濤等[18]綜合考慮剪切變形和梁柱節(jié)點(diǎn)連接半剛性影響的基礎(chǔ)上,給出了框架柱的抗側(cè)移剛度公式,認(rèn)為剪切變形對(duì)框架結(jié)構(gòu)的 PΔ 效應(yīng)影響顯著,已超出工程上可接受的 5%的誤差范圍。endprint
本文將假定桿單元剪切變形和彎曲變形的位移模式,推導(dǎo)小剪切變形下的PΔ效應(yīng)桿單元?jiǎng)偠确匠?,用以?jì)算樁身剪切變形影響;推導(dǎo)大剪切變形下的PΔ效應(yīng)的桿單元?jiǎng)偠确匠?,用以?jì)算支座大剪切變形下的PΔ效應(yīng)。
1計(jì)入剪切變形的PΔ效應(yīng)桿單元
為推導(dǎo)計(jì)入了剪切變形和PΔ效應(yīng)的桿單元?jiǎng)偠确匠蹋俣◤澢冃萎a(chǎn)生的水平位移為三次冪函數(shù),剪切變形產(chǎn)生的水平位移為線(xiàn)性函數(shù)。
1.1PΔ效應(yīng)桿單元受力平衡微分方程
假定PΔ效應(yīng)桿單元為彈性體,單元受力如圖1所示。
式(43)~(45)分別由式(35)~(37)演化而來(lái),主要是在反算單元節(jié)點(diǎn)剪力時(shí)已計(jì)入了小變形情況下豎向力因傾角而產(chǎn)生的徑向剪切分力。式(43)~(45)的剪力項(xiàng)分別減去式(35)~(37)對(duì)應(yīng)的剪力項(xiàng)即可得豎向力因傾角而產(chǎn)生的徑向剪切分力。
1.7支座等大剪切變形構(gòu)件PΔ效應(yīng)計(jì)算
工程中大部分構(gòu)件剪切變形影響很小而可以忽略。但如支座等大剪切變形構(gòu)件,豎向力產(chǎn)生的偏心彎矩十分顯著,而剛臂或彈簧均不能實(shí)時(shí)模擬支座的偏心彎矩效應(yīng)。支座發(fā)生大剪切變形時(shí),本文豎向力徑向剪切分力近似計(jì)算公式不再適用。但是僅計(jì)入水平力剪切變形時(shí)的PΔ效應(yīng)桿單元?jiǎng)偠确匠淌剑?6)卻能很好地反映支座的工作性能,可以很好地計(jì)入豎向力在因支座大剪切變形而產(chǎn)生的偏心彎矩影響,即支座的PΔ效應(yīng)。
2支座PΔ效應(yīng)算例一
某支座高h(yuǎn)=0.3 m,直徑d=850 mm,剪切模量G=2 MPa,抗壓彈性模量E=5 000 MPa,豎向力FN= 15 000 kN,水平力FH=180 kN。
支座受力如圖2,支座頂水平位移由剪切變形Vs和彎曲變形Vm組成,但剪切變形遠(yuǎn)大于彎曲變形,且與支座高度h同數(shù)量級(jí),為典型的大剪切變形構(gòu)件;支座底部總彎矩由豎向力偏心彎矩和水平力矩組成,豎向力偏心彎矩往往極顯著,且遠(yuǎn)大于水平力矩。支座偏心受壓后其豎向抗壓剛度會(huì)隨之變化,其彎曲變形會(huì)出現(xiàn)一定的非線(xiàn)性,本文暫時(shí)忽略此影響,并假定其抗壓彈模不變。
因此,支座PΔ效應(yīng)對(duì)基樁內(nèi)力位移影響顯著,應(yīng)該考慮;而剪切變形對(duì)樁身內(nèi)力位移影響極小,則可忽略。
支座偏心彎矩效應(yīng)也可以通過(guò)水平力作用在支座的剪切變形乘以豎向力近似求得,并將此偏心彎矩加載至基樁頂,即可在基樁PΔ效應(yīng)計(jì)算時(shí)等效考慮支座的影響。但在上下部結(jié)構(gòu)、支座和地基共同作用時(shí),支座的偏心彎矩效應(yīng)很難用等效彎矩進(jìn)行實(shí)時(shí)模擬。因此,提出的計(jì)入水平力剪切變形時(shí)的PΔ效應(yīng)桿單元?jiǎng)偠确匠淌剑?5)能很好地反映支座的偏心工作特性,為上下部結(jié)構(gòu)共同作用的關(guān)鍵銜接構(gòu)件——支座提供了理論支撐。
4結(jié)論
假定桿單元位彎曲變形移函數(shù)為三次冪函數(shù),剪切變形位移函數(shù)為線(xiàn)性函數(shù),根據(jù)有限元一般原理,導(dǎo)出了考慮了PΔ效應(yīng)、水平力剪切變形、豎向力徑向剪切分力剪切變形的桿單元的剛度方程,通過(guò)算例分析,主要結(jié)論如下:
1)推導(dǎo)了同時(shí)考慮水平力剪切變形、豎向力徑向剪切分力剪切變形和PΔ效應(yīng)的桿單元?jiǎng)偠染仃嚪匠?;推?dǎo)了僅計(jì)入水平力剪切變形而忽略豎向力徑向剪切分力剪切變形時(shí)的PΔ效應(yīng)桿單元?jiǎng)偠染仃嚪匠?;推?dǎo)了僅計(jì)入豎向力徑向剪切分力剪切變形而忽略水平力剪切變形時(shí)的PΔ效應(yīng)桿單元?jiǎng)偠染仃嚪匠?,進(jìn)一步完善了PΔ效應(yīng)桿單元理論。
2)僅計(jì)入水平力剪切變形而忽略豎向力徑向剪切分力剪切變形時(shí)的PΔ效應(yīng)桿單元能很好地反映支座大剪切變形的偏心工作特性,為上下部結(jié)構(gòu)共同作用動(dòng)靜力分析的關(guān)鍵銜接構(gòu)件——支座提供了理論支撐。
3)支座和基樁共同作用的PΔ效應(yīng)分析表明,在水平力作用下,支座大剪切變形下的PΔ效應(yīng)將使基樁內(nèi)力位移和樁側(cè)土壓力顯著增大,并進(jìn)一步削弱支座和墩臺(tái)綜合水平剛度,基樁PΔ效應(yīng)分析、墩臺(tái)水平力分配時(shí)應(yīng)予以考慮。
4)基樁自身剪切變形對(duì)基樁PΔ效應(yīng)影響極小,可以忽略。
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(編輯胡玲)endprint