1) effective impact energy

有效撞击能
2) f effective impact energy

有效撞击能量
1.
Calculation of effective impact energy by vessel\'s berthing and fender design are important contents of wharf engineering design.
船舶靠泊有效撞击能量计算和护舷设计是码头工程设计中的重要内容。
3) impingement effects

撞击效应
1.
Experimental study on plume impingement effects of satellite attitude control thruster nozzle;
卫星姿控发动机喷管羽流撞击效应试验
4) impaction efficiency

撞击效率
1.
The collection efficiency,impaction efficiency and capture efficiency were analyzed,respectively.
本文基于高温一维下行炉,选用锯屑和兖矿原煤作为燃料,通过自动控温采样枪收集积灰,分析积灰的采集效率、撞击效率和捕集效率等宏观效果参数。
5) impact energy

撞击能量
1.
Based on the summarization of the research on impact energy of mooring ships under wave actions and analysis of the main factors influencing the impact energy on wharf induced by mooring ships,this paper points out the adaptability of the existing calculation methods,and proposes some suggestions on the contents and orientation of further research.
归纳和总结国内外有关系泊船舶在波浪作用下对靠船设施的撞击作用的研究,分析影响系泊船舶撞击能量的若干主要因素,指出当前国内外各类撞击能量计算公式的适用性。
2.
The paper describes it is necessary to calculate the impact energy of the vessel against the wharf before proposing the design of fender and measures of the use when renovating the old wharf.
介绍老码头修复时,通过计算船舶对码头的撞击能量,提出护航的设计和使用措施。
3.
It is of key importance to conclude accurately the impact energy exerted by mooring ship under wave actions for the design of terminal and the selection and design of rubber fender.
系泊船舶荷载是外海开敞式码头设计的主要依据之一,从动能定理角度分析,船舶的撞击力与船舶的撞击能量有关,如何准确确定波浪作用下系泊船舶对码头的撞击能量,对于码头设计和护舷的选取至关重要。
6) strike energy

撞击能量
1.
This paper analyzes the characteristics and modes of ferryboats′ berthing,discusses the calculation method of strike energy about large-scale ferryboats,and recommends reasonable calculation mode.
分析轮渡工程渡轮的靠泊特点以及靠泊模式,探讨大型轮渡码头渡轮撞击能量的计算模式,并提出建议的计算模式。
2.
As a considerable ingredient of wharf s secure use, the strike energy against wharf is affected by many factors.
码头撞击能量作为影响码头使用安全的一个重要因素,它受到许多因素的影响。
补充资料:有效阈能
分子式:
CAS号:
性质:系为了简化核反应速率计算而引入的一个模拟物理量,记为E有效。认为所有能量高于E有效的入射粒子同样有效,可诱发核反应,而在该能量之下,不发生核反应。
CAS号:
性质:系为了简化核反应速率计算而引入的一个模拟物理量,记为E有效。认为所有能量高于E有效的入射粒子同样有效,可诱发核反应,而在该能量之下,不发生核反应。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条