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低净空连续梁转体施工钢壳合龙技术 被引量:2
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作者 王春堂 《高速铁路技术》 2018年第S02期122-126,共5页
新建青连铁路牟家村特大桥采用转体连续梁跨越兖石铁路,跨中梁底与接触网承力索净空仅0.34 m,原设计采用吊架法进行转体合龙,超低净空环境下合龙难度大、风险高。施工中通过优化设计,采用钢板平接、栓钉吊挂工艺对常规钢壳合龙技术进行... 新建青连铁路牟家村特大桥采用转体连续梁跨越兖石铁路,跨中梁底与接触网承力索净空仅0.34 m,原设计采用吊架法进行转体合龙,超低净空环境下合龙难度大、风险高。施工中通过优化设计,采用钢板平接、栓钉吊挂工艺对常规钢壳合龙技术进行改良,规避了常规钢壳合龙施工中钢壳结构侵占混凝土空间及切断结构钢筋带来的工艺缺陷;同时通过控制转体精度、合理降低接触网高度等技术措施,成功解决了营运线超低净空环境下转体桥跨中合龙施工难题。 展开更多
关键词 桥梁转体 超低净空 钢壳合龙 钢壳 平接设计 栓钉吊挂
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Investigation on a vertical radial flow adsorber designed by a novel parallel connection method 被引量:10
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作者 Zhengshu Dai Meng Yu +2 位作者 Daozhe Rui Xuejun Zhang Yang Zhao 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2018年第3期484-493,共10页
Due to the increasing global demand for industrial gas, the development of large-scale cryogenic air separation systems has attracted considerable attention in recent years. Increasing the height of the adsorption bed... Due to the increasing global demand for industrial gas, the development of large-scale cryogenic air separation systems has attracted considerable attention in recent years. Increasing the height of the adsorption bed in a vertical radial flow adsorber used in cryogenic air separation systems may efficiently increase the treatment capacity of the air in the adsorber. However, uniformity of the flow distribution of the air inside the adsorber would be deteriorated using the height-increasing method. In order to reduce the non-uniformity of the flow distribution caused by the excessive height of adsorption bed in a vertical radial flow adsorber, a novel parallel connection method is proposed in the present work. The experimental apparatus is designed and constructed; the Computational Fluid Dynamics(CFD) technique is used to develop a CFD-based model, which is used to analyze the flow distribution, the static pressure drop and the radial velocity in the newly designed adsorber. In addition, the geometric parameters of annular flow channels and the adsorption bed thickness of the upper unit in the parallelconnected vertical radial flow adsorber are optimized, so that the upper and lower adsorption units could be penetrated by air simultaneously. Comparisons are made between the height-increasing method and the parallel connection method with the same adsorber height. It is shown that using the parallel connection method could reduce the difference between the maximum and minimum radial static pressure drop by 86.2% and improve the uniformity by 80% compared with those of using the height-increasing method. The optimal thickness ratio of the upper and lower adsorption units is obtained as 0.966, in which case the upper and lower adsorption units could be penetrated by air simultaneously, so that the adsorbents in adsorption space could be used more efficiently. 展开更多
关键词 Air separation Purification Vertical radial flow adsorber Flow distribution Optimization
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