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7篇 您的检索式:作者名="Boneham"
    题名 作者 年代 出处 被引量
1Epithelial Responses to Rubbing-Related Mechanical Forces显示文摘Charles W McMonnies Ahmed Alharbi Gavin C Boneham 2010Cornea2010,,11:1
2Epithelial responses to rubbing-related mechanical forces 显示文摘MeMonnies Alharbi A Boneham G C 2010Cornea2010,29,11:1
3Steroid inhibition of limbal blood andlymphatic vascular cell growth 显示文摘Boneham GC Collin HB 1995Curr Eye Res1995,14,1:1
4Trace element control in vacuum induction and consumable-electrode melted Ni superalloys显示文摘 BONEHAM M 1984Metals Technology1984,11,:1
5Comparison of topcon op- tical coherence tomography and ultrasound paehymetry显示文摘Northey LC Gifford P Boneham GC 2012Op- tom Vis Sci2012,89,12:1
6Trace element control in vacuum induction and consumable-electrode melted Ni superalloys 显示文摘Durber G L R Boneham M 1984Met Technol1984,11,10:1
7Evaluating rock mass disturbance within open-pit excavations using seismic methods:A case study from the Hinkley Point C nuclear power station显示文摘Understanding rock strength is essential when undertaking major excavation projects,as accurate assessments ensure both safe and cost-effective engineered slopes.Balancing the cost-safety trade-off becomes more imperative during the construction of critical infrastructure such as nuclear power stations,where key components are built within relatively deep excavations.Designing these engineered slopes is reliant on rock strength models,which are generally parameterised using estimates of rock properties(e.g.unconfined compressive strength,rock disturbance)measured prior to the commencement of works.However,the physical process of excavation weakens the remaining rock mass.Therefore,the model also requires an adjustment for the anticipated rock disturbance.In practice,this parameter is difficult to quantify and as a result it is often poorly constrained.This can have a significant impact on the final design and cost of excavation.We present results from passive and active seismic surveys,which image the extent and degree of disturbance within recently excavated slopes at the construction site of Hinkley Point C nuclear power station.Results from active seismic surveys indicate that the disturbance is primarily confined to 0.5 m from the excavated face.In conjunction,passive monitoring is used to detected seismic events corresponding to fracturing on the cm-scale and event locations are in agreement with 0.5 m of disturbance into the rock face.This suggests rock disturbance at this site is relatively low and occurred during and immediately after the excavation.A ratio of seismic velocities recorded before and after excavations are used to determine the disturbance parameter required for the Hoek eBrown rock failure criterion,and we assess that rock disturbance is low with the magnitude of the disturbance diminishing more quickly than expected into the excavated slope.Seismic methods provide a low-cost and quick method to assess excavation related rock mass disturbance,which can lead to cost reductions in large excavation projects.Antony Butcher Anna L.Stork James P.Verdon J-Michael Kendall Katrin Plenkers Finlay Booth Marcus Boneham Adrian Koe 2021Journal of Rock Mechanics and Geotechnical Engineering2021,13,3:0
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