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Variation of cavity gas pressure in slopes with weak intercalation under seismic load
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作者 WANG Xiao-qun CHEN Zhen-lin +1 位作者 ZHOU Zhou SHEN Man 《Journal of Mountain Science》 SCIE CSCD 2016年第2期352-360,共9页
This study discussed how cavity gas pressure affects the stability of rock mass with fractures under well controlled laboratory experiments.Suddenly-created void space created and the induced gas pressures have been t... This study discussed how cavity gas pressure affects the stability of rock mass with fractures under well controlled laboratory experiments.Suddenly-created void space created and the induced gas pressures have been the focus of active researches because they are associated with fast movement of large-scale landslides.A shaking table experiment was set up to mimic weak-intercalated rock slope under seismic loads.Excessive cavity gas pressure would be produced in weak spots upon a sudden vibration load.The drastically elevated gas pressure is believed to be responsible for the creation of cavities surrounding the tension fracture.With dissipation of the excessive cavity gas pressure,the fractures are in unbounded closed-state.This observation explains that the slope body would be split and loosened under several aftershocks,and with the expanding of the cracks,the slope failure eventually occurred.The research of the mechanism of cavity gas pressure could provide a novel insight into the formation mechanism of landslides under seismic load and has implications for the disaster prevention and control theory for the slope stability evaluation. 展开更多
关键词 LANDSLIDE FRACTURE Deformation Weak intercalation cavity gas pressure
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Study on an novel composite gel material solving serious lost circulations and pressurization sealing 被引量:1
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作者 YE Yan YAN Jie-nian +1 位作者 GUO Jian-hua XIE You-xin 《Journal of Energy and Power Engineering》 2007年第1期68-75,共8页
Lost circulations have presented great challenges to the petroleum industry, causing great expenditures of cash and time to fighting the problem. Probably the most problematic situations are the naturally fractured fo... Lost circulations have presented great challenges to the petroleum industry, causing great expenditures of cash and time to fighting the problem. Probably the most problematic situations are the naturally fractured formations where the operator may face total loss with no mud return in the annular. The voids or large fracture encountered in this case are often far too large to be plugged with conventional Lost Circulation Material. This paper will give a detailed introduction on a novel composite gel material usable to control severe losses and pressurization sealing. The plugging mechanics of this new composite gel material, which is different from conventional lost circulation materials, were elaborated as well. In addition, the properties of the new composite gel material such as thermostability, sealing strength and bearing resistance are characterized with specific experimental devices. The experimental results proved that the breakdown pressure of the new plugging reached more than 20MPa, and the maximum degraded temperature can be exceed 130℃. The field application at 4 wells in Puguang gas field, SINOPEC, demonstrated that the new composite gel material solved the serious loss in Ordovician carbonate fractured formation successfully and guaranteed the following completion cement operation smoothly. The composite gel sealing slurries, which was easily prepared on site, gives remarkable properties regarding pumping through drill pipes, adjustment of setting time and excellent sealing strength of the lost zone sealing, additionally, the whole pressurization sealing process was complicated within only ten hours. The on-site results show that the plugging ratio of the new composite gel was reached 100%, and the success rate of sealing operation kept above 80%.Thus the new LCM can guarantee safe drilling jobs and save operation cost more effectively. 展开更多
关键词 Lost circulation Material (LCM) composite gel sealing strength breakdown pressure pressurized sealing Puguang gas field
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炉水循环泵马达腔冷却水温度升高的原因分析及预防措施
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作者 赵现华 张国伟 《锅炉制造》 2012年第6期58-59,62,共3页
根据某电厂提出我公司超临界660MW锅炉的启动循环泵马达腔冷却水温度升高的问题,给出了炉水循环泵的结构及产生问题的原因分析。
关键词 锅炉 循环泵 热屏蔽 马达腔 高压冷却器
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锁斗循环泵的改进
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作者 孙韬 《科技创新与应用》 2018年第23期123-124,127,共3页
锁斗循环泵普遍存在叶轮、导叶、耐磨板等易损件寿命短,机封泄露,检修频繁等问题;一种新的叶轮设计方案可以减小液体流速,有效减少叶轮,导叶和耐磨板等过流部件的磨损,提高叶轮等零件寿命,增强机组可靠性对整个气化装置的可靠运行具有... 锁斗循环泵普遍存在叶轮、导叶、耐磨板等易损件寿命短,机封泄露,检修频繁等问题;一种新的叶轮设计方案可以减小液体流速,有效减少叶轮,导叶和耐磨板等过流部件的磨损,提高叶轮等零件寿命,增强机组可靠性对整个气化装置的可靠运行具有重要意义。 展开更多
关键词 锁斗循环泵 背叶片 轴向力 密封腔压力
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口腔负压对淋巴循环影响的实验研究 被引量:1
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作者 何玉祥 吴丽萍 +6 位作者 肖琼 房云海 刘艳丽 魏璐婉 甄诚 初海平 刘执玉 《山东大学学报(医学版)》 CAS 北大核心 2009年第7期21-23,共3页
目的探讨口腔负压对淋巴动力学的影响,探寻影响淋巴循环的新方法。方法在兔的口腔建立负压,分别在四肢及耳的固定部位注射定量染料,测量染料到达固定观察部位的时间,并与未建立口腔负压的对照组对比,观察口腔负压对淋巴动力学的影响。... 目的探讨口腔负压对淋巴动力学的影响,探寻影响淋巴循环的新方法。方法在兔的口腔建立负压,分别在四肢及耳的固定部位注射定量染料,测量染料到达固定观察部位的时间,并与未建立口腔负压的对照组对比,观察口腔负压对淋巴动力学的影响。结果实验组在建立口腔负压后,注射染料到达固定测量部位的时间明显缩短。结论在口腔建立负压,能够影响淋巴动力学,促进淋巴的回流。 展开更多
关键词 口腔负压 淋巴循环
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空腔旋转流压强与影响因素 被引量:3
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作者 孙亚琴 牛争鸣 曹双利 《水动力学研究与进展(A辑)》 CSCD 北大核心 2019年第1期106-114,共9页
该文通过模型试验与理论分析,探讨了泄水道水平空腔旋转流压强的产生机理与构成,在对影响因素相互关系分析的基础上,研究了壁面压强与空腔气体压强的变化规律。所得主要结论为:起旋器孔口的动水压强p_1、壁面压强p_w和空腔气体压强p_0... 该文通过模型试验与理论分析,探讨了泄水道水平空腔旋转流压强的产生机理与构成,在对影响因素相互关系分析的基础上,研究了壁面压强与空腔气体压强的变化规律。所得主要结论为:起旋器孔口的动水压强p_1、壁面压强p_w和空腔气体压强p_0均可表示为起旋器孔口的水流弗劳德数Fr_q、通气孔通气量弗劳德数fr_Ф和相对下游水深h/D的函数关系,且流态不同时影响变量也不同;p_0的变化是由通气孔的通气量始终等于空腔旋转流携气量的动态平衡关系决定的,由该关系可得到fr_Ф与Fr_q之间为线性关系;随相对通气孔直径D_0/D的增大,相对气体压强p_0/ρgH增大并趋向于零,临界值约在D_0/D=0.2,h/D对p_0/ρgH的影响是相对的;由于空腔旋转流的气水界面具有"橡皮筋"特性,离心力导致壁面压强并向上游传递,因此,p_1/ρgH与(p_w-p_0)/ρgH之间为线性关系;随Fr_q^2的增大,p_1/ρgH线性减小,p_w/ρgH线性增大;在抽吸旋转流流态下,旋流洞内离心力压强与壁面压强的比值大于1,不同的旋流洞断面比值不同。 展开更多
关键词 空腔旋转流 模型试验 理论分析 壁面压强 空腔气体压强
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