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        折線溫差分布下倒虹吸橫向溫度應(yīng)力計(jì)算

        2017-07-29 09:05:17柏文文季日臣張彤鋒
        南水北調(diào)與水利科技 2017年4期

        柏文文+季日臣+張彤鋒

        摘要:通過(guò)引進(jìn)公路橋梁規(guī)范中的折線溫差分布函數(shù),推導(dǎo)了折線溫差分布下倒虹吸橫向溫度自約束應(yīng)力和框架約束應(yīng)力計(jì)算公式,利用文章推導(dǎo)的公式,計(jì)算了倒虹吸處于停運(yùn)狀態(tài)時(shí),突遇驟然降溫作用時(shí)的溫度應(yīng)力,計(jì)算表明:倒虹吸內(nèi)表面總應(yīng)力是溫差和壁厚的函數(shù),當(dāng)壁厚不變,溫差減小50%時(shí),其溫度應(yīng)力相應(yīng)的也減小50%,當(dāng)溫差不變,壁厚減小50%時(shí),其溫度應(yīng)力減小17%;采用相同的工程實(shí)例,按照折線溫差分布函數(shù)和指數(shù)溫差分布函數(shù)分別計(jì)算倒虹吸溫度應(yīng)力,發(fā)現(xiàn)前者計(jì)算值偏大,在設(shè)計(jì)時(shí)若按照折線溫差分布模式考慮倒虹吸溫度荷載,能提高倒虹吸抗裂性能。

        關(guān)鍵詞:倒虹吸;自約束應(yīng)力;框架約束應(yīng)力;溫度荷載;抗裂性能

        中圖分類號(hào):TV672.5 文獻(xiàn)標(biāo)志碼:A 文章編號(hào):1672-1683(2017)04-0175-05

        Abstract:Based on the fold line distribution function of temperature difference for highway bridges,we derived the calculation formulas for transverse thermal self-restraint stress and framework-restraint stress of inverted siphons.Using the calculation formulas,we calculated the thermal stress of inverted siphons in winter downtime when cold snap invades.Our calculations showed that the total stress of the inner surface of an inverted siphon is a function of the wall thickness and the temperature difference.When wall thickness is constant and temperature difference decreases by 50%,the thermal stress also decreases by 50%.When the temperature difference is constant and the wall thickness decreases by 50%,the thermal stress decreases by 17%.The thermal stress of inverted siphons calculated by the fold line distribution function of temperature difference was larger than that calculated by the exponential distribution function.If the temperature load of inverted siphons is considered on this basis in design,the crack resistance of inverted siphons can be significantly improved.

        Key words:inverted siphon;self-restraint stress;framework-restraint stress;temperature load;crack resistance

        橋梁、渡槽、涵閘結(jié)構(gòu)的溫度應(yīng)力研究成果較多[1-17],大體積混凝土溫度應(yīng)力方面,朱伯芳院士已取得一系列研究成果[18-19],然則倒虹吸溫度應(yīng)力研究相對(duì)落后,雖有文獻(xiàn)分析倒虹吸在冬季施工期的溫度應(yīng)力[20]和溫度應(yīng)力對(duì)預(yù)應(yīng)力結(jié)構(gòu)的影響[21],然則,已有文獻(xiàn)對(duì)倒虹吸的溫度應(yīng)力計(jì)算關(guān)注較少,筆者通過(guò)引進(jìn)公路橋梁規(guī)范中的溫差分布函數(shù),將對(duì)倒虹吸橫向溫度應(yīng)力計(jì)算公式進(jìn)行推導(dǎo),并對(duì)南水北調(diào)中線工程勒馬河倒虹吸在冬季停運(yùn)狀態(tài)時(shí),驟然降溫作用下,利用文章推導(dǎo)公式進(jìn)行倒虹吸橫向溫度應(yīng)力的計(jì)算。

        1 溫差分布函數(shù)

        對(duì)于渡槽、倒虹吸等混凝土結(jié)構(gòu),由于沒(méi)有溫度應(yīng)力計(jì)算方面的規(guī)范,但考慮到倒虹吸與橋梁結(jié)構(gòu)的共性,材料方面,倒虹吸結(jié)構(gòu)和橋梁結(jié)構(gòu)的材料一般均為鋼筋混凝土材料,其導(dǎo)熱系數(shù)相差不大,導(dǎo)熱規(guī)律具有明顯的相似性;邊界條件方面,橋梁結(jié)構(gòu)內(nèi)外表面均和大氣接觸,為第三類邊界條件,而倒虹吸內(nèi)表面邊界條件視其運(yùn)行情況不同屬于第三類邊界條件(停運(yùn)期)或第一類邊界條件(正常運(yùn)行期),外表面始終屬于第一類邊界條件,而倒虹吸邊界條件的不同最后直接影響邊界溫度,而不會(huì)影響溫差函數(shù)類型,只是溫差值大小不同,綜上所述,筆者認(rèn)為可以借鑒橋梁中的相關(guān)規(guī)范,將橋梁的溫差分布函數(shù)引入到倒虹吸溫度應(yīng)力進(jìn)行計(jì)算當(dāng)中。

        依據(jù)公路鋼筋混凝土及預(yù)應(yīng)力鋼筋混凝土橋涵設(shè)計(jì)規(guī)范 (JTG D62-2004)的規(guī)定,預(yù)應(yīng)力混凝土連續(xù)梁橋的溫差分布如圖1所示,圖中,h為梁高,T1、T2溫差值,根據(jù)鋪裝類別的不同,取值有所不同,a1=0.1 m, a2=0.3 m [12],負(fù)溫差為正溫差乘以-0.5[23]。

        對(duì)倒虹吸結(jié)構(gòu),按照彈性理論,在忽略管內(nèi)水流在流經(jīng)倒虹吸管時(shí)的水溫變化,其溫差分布沿倒虹吸長(zhǎng)度方向是均勻分布的,則該溫度應(yīng)力問(wèn)題簡(jiǎn)化為平面應(yīng)變問(wèn)題,再忽略倒角處復(fù)雜的熱傳導(dǎo)狀態(tài),倒虹吸溫差分布如圖2所示。

        2 倒虹吸橫向溫度應(yīng)力

        根據(jù)前述的折線溫差分布函數(shù),推導(dǎo)倒虹吸橫向溫度應(yīng)力計(jì)算公式。倒虹橫向吸溫度應(yīng)力計(jì)算分為自約束應(yīng)力和框架約束應(yīng)力,總應(yīng)力是自約束應(yīng)力和框架約束應(yīng)力之和[24]。

        (2)按照折線溫差分布函數(shù)計(jì)算的倒虹吸溫度應(yīng)力,比指數(shù)溫差分布函數(shù)計(jì)算的倒虹吸溫度應(yīng)力大[25],在設(shè)計(jì)時(shí),若按折線溫差計(jì)算結(jié)果考慮倒虹吸溫度應(yīng)力,能提高倒虹吸抗裂性能。

        (3)溫度應(yīng)力在距離板表面0.1 m范圍內(nèi),應(yīng)力變化幅度最大,這與指數(shù)溫差函數(shù)計(jì)算的變化趨勢(shì)[15]一致。

        (4)對(duì)比計(jì)算公式計(jì)算結(jié)果和ANSYS計(jì)算結(jié)果,發(fā)現(xiàn)兩種計(jì)算方法的計(jì)算結(jié)果相接近,為此筆者認(rèn)為此計(jì)算公式具有其合理性。

        4 結(jié)語(yǔ)

        (1)文章通過(guò)引入公路橋梁中的溫差分布函數(shù),通過(guò)一系列假定,導(dǎo)出了倒虹吸橫向溫度應(yīng)力計(jì)算公式,計(jì)算公式簡(jiǎn)單明確,具有一定的實(shí)用價(jià)值。

        (2)實(shí)例計(jì)算表明,倒虹吸在冬季停運(yùn)期,突遇驟然降溫時(shí),會(huì)在倒虹吸內(nèi)表面產(chǎn)生較大的溫度拉應(yīng)力,這應(yīng)當(dāng)在倒虹吸后期運(yùn)行過(guò)程中引起重視。

        參考文獻(xiàn)(References):

        [1] 李輝,劉建軍.新疆北疆寒區(qū)渡槽溫度應(yīng)力的分析[J].石河子大學(xué)學(xué)報(bào):自然科學(xué)版,2009(5):642-645.(LI Hui,LIU Jian-jun.The thermal stresses influence of aqueduct structure in cold area of North Xinjiang[J].Journal of Shihezi University:NaturalScience,2009(5):642-645.(in Chinese))DOI:10.13880/j.cnki.65-1174/n.2009.05.008

        [2] 陳武,張東,李雙洋,等.引洮工程封閉渡槽輸水期間熱力耦合分析[J].水利水運(yùn)工程學(xué)報(bào),2012(3):20-25.(CHEN Wu,ZHANG Dong,LI Shuang-yang,et al.Coupled thermo-mechanical analysis of a closed aqueduct of the Gansu Tao Diversion Project during operation[J].Hydro-Science and Engineering,2012(3):20-25.(in Chinese))DOI:10.16198/j.cnki.1009-640x.2012.03.012

        [3] 張世寶,馬軍,司建強(qiáng),等.大型涵洞式渡槽施工期溫度場(chǎng)仿真分析[J].水利水電技術(shù),2012(4):79-82.(ZHANG Shi-bao,MA Jun,SI Jian-qiang,et al.Simulative analysis on temperature field of large culvert aqueduct during construction[J].Water Resources and Hydropower Engineering,2012(4):79-82.(in Chinese))DOI:10.13928/j.cnki.wrahe.2012.04.022

        [4] 劉平,羅連生.渡槽溫度荷載理論分析與計(jì)算[J].山西建筑,2013,(22):181-183.(LIU Ping,LUO Lian-sheng.Theoretical analysis and calculation under aqueduct temperature load[J].Shanxi Architecture,2013,(22):181-183.(in Chinese))DOI:10.13719/j.cnki.cn14-1279/tu.2013.22.072

        [5] 李曉克,張曉燕,張學(xué)朋,等.預(yù)應(yīng)力混凝土渡槽溫度影響及設(shè)計(jì)研究[J].長(zhǎng)江科學(xué)院院報(bào),2012(1):44-48.(LI Xiao-ke,ZHANG Xiao-yan,ZHANG Xue-peng,et al.Temperature effect on prestressed concrete drainage aqueductand its design considerations[J].Journal of Yangtze River Scientific Research Institute,2012(1):44-48.(in Chinese))

        [6] 嚴(yán)瑾.橋梁混凝土裂縫與溫度應(yīng)力關(guān)系規(guī)律研究[J].中外建筑,2015(7):198-200.(YAN Jin.Regularity research of the relationship between bridge concrete cracks and temperature stress[J].Chinese and Overseas Architecture,2015(7):198-200.(in Chinese))

        [7] 肖維,焦隆華.基于高溫瀝青攤鋪溫度場(chǎng)的鋼筋混凝土連續(xù)箱梁橋有限元研究[J].公路工程,2014(6):302-304,329.(XIAO Wei,JIAO Long-hua.FEA study on rc continuous box girders based on thermal filed of asphalt paving[J].Highway Engineering,2014(6):302-304,329.(in Chinese))

        [8] 周勇政,朱爾玉,李學(xué)民,等 高速鐵路簡(jiǎn)支箱梁的溫差控制[J].北京交通大學(xué)學(xué)報(bào),2014(1):88-93.(ZHOU Yong-zheng,ZHU Er-yu,LI Xue-min,et al.Temperature difference control for simply supported box girder of high-speed railway[J].Journal of Beijing Jiaotong University,2014(1):88-93.(in Chinese))

        [9] 劉振宇,陳寶春.鋼管混凝土桁拱熱脫粘及溫度應(yīng)力分析[J].公路交通科技,2011(7):67-72.(LIU Zhen-yu,CHEN Bao-chun.Analysis on thermal debonding and stress of CFST truss arch[J].Journal of Highway and Transportation Research and Development,2011(7):67-72.(in Chinese))

        [10] 彭友松,強(qiáng)士中.公路混凝土箱梁三維溫度應(yīng)力計(jì)算方法[J].交通運(yùn)輸工程學(xué)報(bào),2007(1):63-67.(PENG You-song,QIANG Shi-zhong.3-D thermal stress computation method of highway concrete box-girder[J].Journal of Traffic and Transportation Engineering,2007(1):63-67.(in Chinese))

        [11] 季日臣,嚴(yán)娟,蘇小鳳.混凝土箱形渡槽日照高溫下結(jié)構(gòu)安全研究[J].南水北調(diào)與水利科技,2013 (6):90-92,109.(JI Ri-chen,YAN Juan,SU Xiao-feng.Structural safety research of concrete box aqueduct under solar radiayion with high temperature[J].South-to-North Water Transfers and Water Science & Technology,2013 (6):90-92,109.(in Chinese))

        [12] 季日臣,夏修身,陳堯隆,等.驟然降溫作用下混凝土箱形渡槽橫向溫度應(yīng)力分析[J].水利水電技術(shù),2007,38(1):50-52.(JI Ri-chen,XIA Xiu-shen,CHEN Yao-long,et al.Analysis on transverse thermal stress of concrete box aqueduct under sudden drop in temperature[J].Water resources and hydropower engineering,2007,38(1):50-52.(in Chinese))DOI:10.13928/j.cnki.wrahe.2007.01.010

        [13] 嚴(yán)娟,季日臣,馬虎迎.箱形渡槽越冬期間表面保溫能力計(jì)算[J].水利水運(yùn)工程學(xué)報(bào),2013(6):88-91.(YAN Juan,JI Ri-chen,MA Hu-ying.Calculation of superficial insulation capacity for box aqueduct during the winter[J].Hydro-science and engineering.2013(6):88-91.(in Chinese))DOI:10.16198/j.cnki.1009-640x.2013.06.014

        [14] 王長(zhǎng)德,馮曉波,朱以文,等.水工渡槽的溫度應(yīng)力問(wèn)題[J].武漢水利電力大學(xué)學(xué)報(bào),1998,31(5):7-11.(WANG Chang-de,F(xiàn)ENG Xiao-bi,ZHU Yi-wen,et al.Research on thermal stress of aqueduct[J].Wuhan Univ.of Hdr.& Elec.Eng.1998,31(5):7-11.(in Chinese))

        [15] 張?jiān)?,李?橋梁結(jié)構(gòu)日照溫差二次力及溫度應(yīng)力計(jì)算方法的研究[J].中國(guó)公路學(xué),2004,17(1):49-52.(ZHANG Yuan-hai,LI Qiao.Study of the method for calculation of the thermal stress and secondary force of bridge structure by solar radiation[J].China Journal of Highway and Transport,2004,17(1):49-52.(in Chinese))

        [16] 毛松鶴.混凝土箱形輸水橋日照溫度場(chǎng)及溫度應(yīng)力研究[J].山西建筑,2012(33):190-191.(MAO Song-he.The solar radiation temperature field and thermal stresses research of concrete box water bridge[J].Shanxi Architecture,2012(33):190-191.(in Chinese))DOI:10.13719/j.cnki.cn14-1279/tu.2012.33.058

        [17] 王同生,于子忠.涵閘混凝土的溫度應(yīng)力與溫度控制[M].北京:中國(guó)環(huán)境科學(xué)出版社,2010.(WANG Tong-sheng,YU Zi-zhong.The thermal stress and temperature control of culvert concrete[M].Beijing:China Environmental Science Press,2010.(in Chinese))

        [18] 朱伯芳,吳龍珅,李玥,等.混凝土壩施工期壩塊越冬溫度應(yīng)力及表面保溫計(jì)算方法[J].水利水電技術(shù),2007,38(8):34-37.(ZHU Bo-fang,WU Long-sheng,LI Yue,et al.The thermal stress and superficial thermal insulation of concrete dam under construction in winter in temperature control of cold regions[J].Water Resources and Hydropower Engineering,2007,38(8):34-37.(in Chinese))

        [19] 朱伯芳.大體積混凝土溫度應(yīng)力與溫度控制[M].北京:中國(guó)水利水電出版社,1998.(ZHU Bo-fang.Thermal stress and temperature control of mass concrete[M].Beijing:China WaterPower Press,1998.(in Chinese))

        [20] 楊俊成,郭磊,何定,等.倒虹吸混凝土冬季施工期溫控防裂研究[J].混凝土,2010 (12):111-113.(YANG Jun-cheng,GUO Lei,LIU Yan-ping,et al.Study on concrete′s temperature control measures for the inverted siphon project in winter[J].concrete,2010 (12):111-113.(in Chinese))

        [21] 張龍飛,姚賢華,岳超然,等.溫度變化對(duì)大型預(yù)應(yīng)力混凝土倒虹吸結(jié)構(gòu)受力的影響[J].南水北調(diào)與水利科技,2013,11(4):196-199.(ZHANG Long-fei,YAO Xian-hua,YUE Chao-ran,et al.Infulence of temperature change on behaviors large prestressed concrete inverted siphon[J].South-to-North Water Transfers and Water Science & Technology.2013,11(4):196-199.(in Chinese))

        [22] 張?jiān)#顔?預(yù)應(yīng)力混凝土連續(xù)箱梁橋的溫度應(yīng)力分析[J].土木工程學(xué)報(bào),2006(3):98-102.(ZHANG Yuan-hai,LI Qiao.Analysis of thermal stress for prestressed concrete continuous box-girder bridges[J].China Civil Engineering Journal,2006,39(3):98-102.(in Chinese))DOI:10.15951/j.tmgcxb.2006.03.015

        [23] 聶玉東.寒區(qū)大跨徑混凝土箱梁橋溫度場(chǎng)及溫度效應(yīng)分析[D].哈爾濱:哈爾濱工業(yè)大學(xué),2013.(NIE Yu-dong.Analysis of temperature field and temperature effect for long span concrete box girder bridges in cold[d].Harbin: Harbin Institute of Technology,2013.(in Chinese))

        [24] 劉興法.混凝土結(jié)構(gòu)的溫度應(yīng)力分析[M].北京:人民交通出版社,1991:94-100.(LIU Xing-fa.Thermal stress analysis of concrete structure[M].Beijing:China Communication Press,1991:94-100.(in Chinese))

        [25] 柏文文,季日臣,徐志強(qiáng).冬季停運(yùn)期倒虹吸橫向溫度應(yīng)力簡(jiǎn)化計(jì)算[J].南水北調(diào)與水利科技,2015,13(3):601-605.(BAI Wen-wen,JI Ri-chen,XU Zhi-qiang.Simplified calculation of transverse thermal stress of inverted siphon in winter downtime[J].South-to-North Water Transfers and Water Science & Technology.2015,13(3):601-605.(in Chinese))DOI:10.13476/j.cnki.nsbdqk.2015.03.045

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