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1)  limit voltage
限压
2)  press limit
压限
1.
Some feature sound effect processing methods such as denoising, press limit, reverberation, speed transmission are introduced.
介绍了如何应用Audition音频编辑软件制作个性手机铃声,具体阐述了手机铃声的降噪、压限、混响、变速等特色音效的处理方法。
3)  high pressure limiter
高压限压器
4)  the least of increase pressure
提压下限
5)  limit pressure
极限压力
1.
Effect of media flow velocity on limit pressure of pipes during in-service welding;
介质流速对在线焊接管道极限压力的影响
2.
Finite element simulation of limit pressure pipeline with cracks using critical crack-tip-opening-angle;
以临界CTOA为参量的含裂纹管道极限压力有限元模拟
3.
Based on the numerical results,the remaining strength factor of the pipe can be obtained and limit pressure can be predicted.
运用有限元法对不同壁厚的管道进行在线焊接时的温度场进行了数值模拟,内部介质流动对焊接温度场的影响通过确定介质与管壁的换热系数来考虑,并根据温度计算结果,获得管道的剩余强度因子,进而获得管道的极限压力。
6)  limited entry fracturing
限流压裂
1.
Based on 3-dimensional hydraulic fracturing model and the similarities between fluid flow in limited entry fracturing process and electricity current flow in circulation circuit,a numerical model was developed to compute the injection reallocation rates in different layers.
基于三维水力裂缝几何模型,根据限流压裂设计中流体流动与循环电路中电流流动的相似性,建立一个计算限流压裂设计中各层注液量分配的数值模型。
2.
Single well zonal earth stress and rock mechanic parameters are calculated for limited entry fracturing in Well Bin670 and for determination of the extreme injection pressure in block Bin660-665.
滨670井、滨660-665区块进行了单井分层地应力及地层岩石力学参数分析计算,用于滨670井限流压裂设计以及滨660-665区块极限注水压力的确定,取得了理想的效果。
3.
In order to solve this problem,a research of limited entry fracturing technology for horizontal wells has been fulfilled,and a successful field experiment of fracturing and associate techniques was done in Well Niuping 10-12,in which 4 perforated intervals were stimulated in large scale,the initial flow rate of the well after fracturing was 7.
针对牛圈湖西山窑油藏低孔、低渗、低压油藏,直井单井产能低的特点,开展水平井限流压裂技术研究。
补充资料:冲击波超压与动压

[解释]:  核爆炸产生的高温、高压火球膨胀,在周围介质中形成连续向外传播的压力脉冲(或冲击波),冲击波阵面传播到空间某点时,超过周围环境大器的压力称超压;空气粒子高速随波阵面运动产生的冲击压力称动压。超压和动压都以帕斯卡(Pa)为主单位。超压随时间的变化取决于爆炸威力、距爆点的距离和爆心周围的介质情况。特定地点的峰值超压一般出现在冲击波阵面到达该点的瞬间,超压在该点的持续时间称为正压作用时间。尔后,该点的压力下降到低于周围压力,称为负压,再逐渐回升到周围压力值。对人员的直接冲击伤,超压为20—29千帕可引器轻度伤;29—59千帕可导致中度伤;59—98千帕可造成重度伤;大于98千帕可造成极重度伤。动压为10—20千帕可造成中度伤;20—39千帕可造成重度伤;大于39千帕可造成极重度伤。动压的推动、抛掷和超压的挤压会造成物体变形和毁坏。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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