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抓好空压机的技术改造和节能工作
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作者 仇慧林 《山西能源与节能》 2002年第2期27-28,共2页
空压机的技术改造 ,是煤矿节能的重要措施之一。文中介绍了对立式双缸和 L型空压机技术改造中采用工程塑料 ,加强管理等措施 。
关键词 变压机 技术改造 管理 节能
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浅谈泵站电气设备安全运行的管理和养护 被引量:2
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作者 魏域林 《广西农业机械化》 2020年第2期68-69,共2页
为实现环境保护优化、电力资源供应到位、农业生产稳定推进,就必须解决好泵站电气设备安全运行问题。本文阐述了泵站电气自动化设备的运行管理与养护策略。
关键词 泵站电气设备 运行管理养护策略 变压机
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Support design method for deep soft-rock tunnels in non-hydrostatic high in-situ stress field
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作者 ZHENG Ke-yue SHI Cheng-hua +3 位作者 ZHAO Qian-jin LEI Ming-feng JIA Chao-jun PENG Zhu 《Journal of Central South University》 SCIE EI CAS 2024年第7期2431-2445,共15页
Due to the long-term plate tectonic movements in southwestern China,the in-situ stress field in deep formations is complex.When passing through deep soft-rock mass under non-hydrostatic high in-situ stress field,tunne... Due to the long-term plate tectonic movements in southwestern China,the in-situ stress field in deep formations is complex.When passing through deep soft-rock mass under non-hydrostatic high in-situ stress field,tunnels will suffer serious asymmetric deformation.There is no available support design method for tunnels under such a situation in existing studies to clarify the support time and support stiffness.This study first analyzed the mechanical behavior of tunnels in non-hydrostatic in-situ stress field and derived the theoretical equations of the ground squeezing curve(GSC)and ground loosening curve(GLC).Then,based on the convergence confinement theory,the support design method of deep soft-rock tunnels under non-hydrostatic high in-situ stress field was established considering both squeezing and loosening pressures.In addition,this method can provide the clear support time and support stiffness of the second layer of initial support.The proposed design method was applied to the Wanhe tunnel of the China-Laos railway in China.Monitoring data indicated that the optimal support scheme had a good effect on controlling the tunnel deformation in non-hydrostatic high in-situ stress field.Field applications showed that the secondary lining could be constructed properly. 展开更多
关键词 non-hydrostatic stress field high in-situ stress deep soft-rock tunnel squeezing pressure loosening pressure support design method
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