纸质出版:2019
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[1]罗喆,胡彪.基于热力荷载传递原理的能量桩长期响应研究[J].防灾减灾工程学报,2019,39(04):549-555+563.
罗喆, 胡彪. Long-term Response of Energy Pile based on Thermo-mechanical Load-transfer Principle[J]. 2019, 39(4): 549-555+563.
[1]罗喆,胡彪.基于热力荷载传递原理的能量桩长期响应研究[J].防灾减灾工程学报,2019,39(04):549-555+563. DOI: 10.13409/j.cnki.jdpme.2019.04.002.
罗喆, 胡彪. Long-term Response of Energy Pile based on Thermo-mechanical Load-transfer Principle[J]. 2019, 39(4): 549-555+563. DOI: 10.13409/j.cnki.jdpme.2019.04.002.
为研究能量桩的长期工作特性
通过引入Masing准则来建立桩-土荷载传递循环加卸载曲线
进而基于热力荷载传递原理来模拟循环温变荷载作用下能量桩的响应
然后基于现场原位试验
验证模型的可行性
最后研究不同冷热循环方式和桩顶荷载水平对能量桩长期响应的影响。研究结果表明:①循环温变荷载作用会使能量桩桩顶沉降和桩顶轴力不断增大
并最终趋于稳定;②相较于只提供制冷需求的能量桩循环方式
同时提供制冷制热需求的能量桩更容易引起桩顶残余沉降和残余温度应力的持续积累;③相较于桩顶轴力增量
建筑荷载的增大更容易引起桩顶残余沉降的积累。
In order to study the long-term performance of energy piles
Masing rule was applied to build the pile-soil load-transfer cyclic curves under loading and unloading.Based on the thermomechanical load-transfer principle
the pile response under cyclic loads of temperature change was further simulated.Then
the proposed model was validated through a full scale test of energy pile.Finally
the effect of thermal cycle modes and building loads on the long-term response of energy pile was investigated.The results show that:(1)the cyclic thermal loads lead to an increasing settlement as well as a rising axial force at pile top
which eventually stabilize.(2)compared with the cycle mode of energy piles that only provide the refrigeration demand
energy piles that provide both the cooling and heating requirements could result in more residual settlement and larger residual temperature stress at pile top.(3)compared with the axial force increment at the pile top
a larger building load is more likely to cause the accumulation of residual settlement at the top of the pile.
能源桩与周围土体之间荷载传递模型的改进及其桩身承载特性研究 [J]. 郭浩然,乔兰,李远. 岩土力学 . 2018(11)
能量桩单桩工作特性简化分析方法 [J]. 费康,戴迪,洪伟. 岩土力学 . 2019(01)
循环温度作用下砂土地基能量桩的长期工作特性 [J]. 费康,洪伟,钱建,刘汉龙. 防灾减灾工程学报 . 2017(04)
夏季制冷循环下PCC能量桩负摩阻力特性研究 [J]. 黄旭,孔纲强,刘汉龙,彭怀风,郝耀虎. 防灾减灾工程学报 . 2017(04)
温度循环下桩土界面特性及桩侧摩阻力数值模拟 [J]. 赵刚,李驰,斯日古楞. 防灾减灾工程学报 . 2017(04)
多次温度循环对能量桩桩顶位移影响分析 [J]. 孔纲强,王成龙,刘汉龙,吴迪,车平. 岩土力学 . 2017(04)
能量桩工程应用研究进展及PCC能量桩技术开发 [J]. 刘汉龙,孔纲强,吴宏伟. 岩土工程学报 . 2014(01)
Cyclic Load–Transfer Approach for the Analysis of Energy Piles [J] . Melis Sutman,C. Guney Olgun,Lyesse Laloui. Journal of Geotechnical and Geoenvironmental Engi . 2019 (1)
Axial and Radial Thermal Responses of a Field-Scale Energy Pile under Monotonic and Cyclic Temperature Changes [J] . Mohammed Faizal,Abdelmalek Bouazza,Chris Haberfield,John S. McCartney. Journal of Geotechnical and Geoenvironmental Engi . 2018 (10)
Thermally Induced Long-Term Displacement of Thermoactive Piles [J] . Cesar Pasten,J. Carlos Santamarina. Journal of Geotechnical and Geoenvironmental Engineering . 2014
A load transfer approach for studying the cyclic behavior of thermo-active piles [J] . M.E. Suryatriyastuti,H. Mroueh,S. Burlon. Computers and Geotechnics . 2014
Centrifuge Modeling of Soil-Structure Interaction in Energy Foundations [J] . Melissa A. Stewart,John S. McCartney. Journal of Geotechnical and Geoenvironmental Engineering . 2013
Geotechnical Analysis of Heat Exchanger Piles [J] . Christoph Knellwolf,Hervé Peron,Lyesse Laloui. Journal of Geotechnical and Geoenvironmental Engi . 2011 (10)
Experimental and numerical investigations of the behaviour of a heat exchanger pile [J] . LyesseLaloui,MathieuNuth,LaurentVulliet. Int. J. Numer. Anal. Meth. Geomech. . 2006 (8)
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