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Dynamic Response of Foundations during Startup of High-Frequency Tunnel Equipment
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作者 Dawei Ruan Mingwei Hu 《Computer Modeling in Engineering & Sciences》 SCIE EI 2024年第7期821-844,共24页
The specialized equipment utilized in long-line tunnel engineering is evolving towards large-scale,multifunctional,and complex orientations.The vibration caused by the high-frequency units during regular operation is ... The specialized equipment utilized in long-line tunnel engineering is evolving towards large-scale,multifunctional,and complex orientations.The vibration caused by the high-frequency units during regular operation is supported by the foundation of the units,and the magnitude of vibration and the operating frequency fluctuate in different engineering contexts,leading to variations in the dynamic response of the foundation.The high-frequency units yield significantly diverse outcomes under different startup conditions and times,resulting in failure to meet operational requirements,influencing the normal function of the tunnel,and causing harm to the foundation structure,personnel,and property in severe cases.This article formulates a finite element numerical computation model for solid elements using three-dimensional elastic body theory and integrates field measurements to substantiate and ascertain the crucial parameter configurations of the finite element model.By proposing a comprehensive startup timing function for high-frequency dynamic machines under different startup conditions,simulating the frequency andmagnitude variations during the startup process,and suggesting functions for changes in frequency and magnitude,a simulated startup schedule function for high-frequency machines is created through coupling.Taking into account the selection of the transient dynamic analysis step length,the dynamic response results for the lower dynamic foundation during its fundamental frequency crossing process are obtained.The validation checks if the structural magnitude surpasses the safety threshold during the critical phase of unit startup traversing the structural resonance region.The design recommendations for high-frequency units’dynamic foundations are provided,taking into account the startup process of the machine and ensuring the safe operation of the tunnel. 展开更多
关键词 Tunnel equipment high-frequency units startup conditions transient dynamics dynamic response foundation design
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定频滚动转子式压缩机启动阶段管路应力分析
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作者 夏凯 高辉 +2 位作者 康玉勋 门群英 刘煜 《制冷与空调》 2024年第8期44-48,共5页
为解决某空调器室外机启动工况下的管路应力问题,首先通过振动试验分析压缩机的瞬态振动特性,分析问题原因。然后建立管路振动有限元分析模型,以压缩机储液器上盖处的冲击响应谱作为激励,分析管路振动应力,并提出优化方案。结果表明:空... 为解决某空调器室外机启动工况下的管路应力问题,首先通过振动试验分析压缩机的瞬态振动特性,分析问题原因。然后建立管路振动有限元分析模型,以压缩机储液器上盖处的冲击响应谱作为激励,分析管路振动应力,并提出优化方案。结果表明:空调器启动瞬间压缩机最大切向振动加速度为稳定运行阶段的7.9倍,该冲击载荷激发了压缩机的刚体模态和吸气管路模态,进而引发吸气管口应力问题;管路优化方案的最大振动应力仿真值为34.3 MPa,相比原方案仿真值(65.9 MPa)降低47.2%,经试验验证有效。研究结果对采用定频滚动转子式压缩机的空调器启动管路应力分析和优化设计具有参考价值。 展开更多
关键词 空调器 转子式压缩机 定频 管路应力 启动 冲击 振动
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螺杆机中央空调启动失败的应急解决案例探讨
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作者 唐智文 《通信电源技术》 2021年第13期186-188,共3页
冬天出现寒潮气温过低时,会发生螺杆机中央空调启动失败的故障,无法向通信机房供冷,导致机房温度过高,严重时使通信设备过热宕机。改造现有常规运行模式,增加了应急启动模式。通过制定实施冬季低气温下螺杆机中央空调启动失败时的应急... 冬天出现寒潮气温过低时,会发生螺杆机中央空调启动失败的故障,无法向通信机房供冷,导致机房温度过高,严重时使通信设备过热宕机。改造现有常规运行模式,增加了应急启动模式。通过制定实施冬季低气温下螺杆机中央空调启动失败时的应急启动技术方案,解决了冬季低气温下,螺杆机中央空调启动失败的问题,让中央空调成功启动,持续为通信机房供冷,避免了机房高温下通信设备宕机。 展开更多
关键词 螺杆机中央空调 启动失败 应急解决方案 应急启动模式
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