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复杂环境下大断面矩形顶管隧道管节设计 被引量:1
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作者 马安震 谭海星 +1 位作者 刘洋 关少钰 《隧道与地下工程灾害防治》 2023年第1期81-89,共9页
深圳某大断面矩形顶管隧道以0.8 m近距离侧穿立交匝道桥梁桩基,且以3 m近距离下穿地下综合管廊。依托该隧道项目,系统研究复杂环境下大断面矩形顶管隧道的管节设计,提出一类复杂环境下大断面矩形顶管管节设计思路。分析大断面矩形顶管... 深圳某大断面矩形顶管隧道以0.8 m近距离侧穿立交匝道桥梁桩基,且以3 m近距离下穿地下综合管廊。依托该隧道项目,系统研究复杂环境下大断面矩形顶管隧道的管节设计,提出一类复杂环境下大断面矩形顶管管节设计思路。分析大断面矩形顶管管节构形设计要素,完成项目管节构形设计,进而对管节吊装翻转、施工顶推及正常使用三个工况进行数值计算,确定管节结构尺寸。结合大断面、深覆土及高水压等工程特点,对管节接头、纵向连接和预留孔口等进行针对性设计。经工程调研、对比分析及工程验证发现,本研究所提出的管节设计思路及管节构形设计要素能为复杂环境下大断面矩形顶管隧道设计提供参考。 展开更多
关键词 矩形顶管隧道 复杂环境 大断面 管节设计
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大截面矩形顶管施工在城市地下人行通道中的应用 被引量:28
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作者 熊诚 《建筑施工》 2006年第10期776-778,共3页
针对城市地下通道施工影响地面交通和地下管线的难点,通过不同施工方法比较,论述了大截矩形顶管施工的优势。介绍了大截面矩形顶管机的研制、顶管设计及施工的技术要点,并指出大截面矩形顶管施工未来发展研究的方向。
关键词 城市地下过街人行通道 矩形项管 项管孔 管节设计
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Energy-Saving Design for Hydraulic Tube Bender
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作者 Jyh-Chyang Renn Chin-Yi Cheng Meng-HanLin 《Journal of Energy and Power Engineering》 2014年第3期414-422,共9页
Generally speaking, hydraulic control systems can be divided into two different driving concepts. The first one is the well-known hydraulic valve-controlled system and the second one is the pump-controlled system. The... Generally speaking, hydraulic control systems can be divided into two different driving concepts. The first one is the well-known hydraulic valve-controlled system and the second one is the pump-controlled system. The former possesses the feature of fast dynamic response. However, the poor energy-saving performance is its major fault. On the contrary, the hydraulic pump-controlled system has the significant advantage of energy-saving which meets the current demand in modem machine design. In this paper, the simulation analysis using MatLab/SimuLink and DSHplus software for a newly developed energy-saving hydraulic tube bender is conducted. Instead of the conventional fixed displacement hydraulic pump, the new hydraulic tube bender utilizes an internal gear pump with AC servomotor as its driving power source. In the new energy-saving hydraulic circuit, the use of conventional pressure relief valve and unloading valve are no longer necessary since the demanded flow-rate and pressure output can be precisely obtained by continuously changing the speed of the AC servomotor. In addition, two closed-loop control schemes using fuzzy sliding-mode controller are adopted and compared. To compare the energy-saving control systems, such as load-sensing control system, constant supply pressure control scheme and conventional hydraulic control scheme. Furthermore, the simulation results also show that the newly developed hydraulic tube bender can save up to 43% of energy consumption in a working cycle as compared to the conventional hydraulic tube bender. 展开更多
关键词 Hydraulic energy-saving pump-controlled system fluid power tube bender.
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