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1)  vertical leakage
垂向泄漏
2)  axial leakage
轴向泄漏
1.
According to the structure and principles of the gear motor,and based on fluid dynamics theory,the radial leakage and axial leakage flow rate of a gear motor were derived,and a calculation example was given for the gear motor used in the roof bolter.
根据齿轮式气动马达的结构和工作原理,按照流体力学方法推导了气动齿轮马达的径向泄漏耗气量和轴向泄漏耗气量,对一种锚杆钻机使用的气动齿轮马达进行了泄漏量计算。
2.
According to the structure and principles of the gear motor, and based on fluid dynamics theory, the theoretic flow rate and the radial leakage and the axial leakage flow rate was derived, and a calculation example was given for the gear motor used in the roof bolter , and an experiment was performed that proved the method.
根据气动齿轮马达的结构和工作原理,按照流体力学方法计算了气动齿轮马达的理论耗气量、并计算了齿轮马达径向泄漏的耗气量和轴向泄漏的耗气量。
3.
According to the structure and principles of the Roots supercharger and based on fluid dynamics theory,the radial leakage,axial leakage and breather hole leakage,the leakage model of Roots supercharger was established.
根据罗茨式机械增压器的结构和工作原理,按照流体力学的方法,推导罗茨增压器径向泄漏量、轴向泄漏量和通气孔泄漏量,建立泄漏的数学模型。
3)  radial leakage
径向泄漏
1.
According to the structure and principles of the gear motor,and based on fluid dynamics theory,the radial leakage and axial leakage flow rate of a gear motor were derived,and a calculation example was given for the gear motor used in the roof bolter.
根据齿轮式气动马达的结构和工作原理,按照流体力学方法推导了气动齿轮马达的径向泄漏耗气量和轴向泄漏耗气量,对一种锚杆钻机使用的气动齿轮马达进行了泄漏量计算。
2.
According to the structure and principles of the gear motor, and based on fluid dynamics theory, the theoretic flow rate and the radial leakage and the axial leakage flow rate was derived, and a calculation example was given for the gear motor used in the roof bolter , and an experiment was performed that proved the method.
根据气动齿轮马达的结构和工作原理,按照流体力学方法计算了气动齿轮马达的理论耗气量、并计算了齿轮马达径向泄漏的耗气量和轴向泄漏的耗气量。
3.
According to the structure and principles of the Roots supercharger and based on fluid dynamics theory,the radial leakage,axial leakage and breather hole leakage,the leakage model of Roots supercharger was established.
根据罗茨式机械增压器的结构和工作原理,按照流体力学的方法,推导罗茨增压器径向泄漏量、轴向泄漏量和通气孔泄漏量,建立泄漏的数学模型。
4)  transverse-leakage
横向泄漏
1.
A second-order expansion of transverse-leakage was achieved when the spatial distribution of neutron flux was .
使用坐标变换将任意三角形变换为正三角形,源项和通量的空间分布使用二次正交多项式展开,横向泄漏项的空间二次分布通过使用二元二次多项式近似正三角形节块的通量分布来获得。
5)  One-way-leaker
单向泄漏
6)  outward leakage
向外泄漏
补充资料:垂向分层理论


垂向分层理论
stratification theory of grains in vertical direction

ehuix旧ng feneeng Iilun垂向分层理论(stratifieation theory of grainsin vertieal direetion)对重选过程中矿粒群在介质中作垂向分层运动机理的阐释。在重选设备内堆置或铺置的动态矿粒群称作床层。借助介质的垂直流动、沿斜面流动或作回转运动使床层松散,是粒群发生分层转移的先决条件。分层是指矿物粒群按密度差形成不同的矿物层;颗粒的粒度以及形状对分层也有重要影响。对于分层的发生机理,曾经有过多种见解,但归纳起来不外两类观点。一类是动力学分层学说,认为分层是按个别颗粒在介质中的运动差异发生的(见自由沉降速度差分层学说、干涉沉降速度差分层学说);另一类是静力学分层学说,认为分层是粒群整体的内在不平衡因素引发的(见悬浮体密度差分层学说、位能分层学说和重介质分层学说)。前一类学说强调了流体动力对颗粒运动的影响,而忽略了颗粒间的静力作用;后一类学说的立论观点则忽视了流体动力对分层的影响,而将床层内颗粒或颗粒群间的静力差异视为分层的决定性因素。 (孙玉波)
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