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1)  wave energy dissipation
波能耗散
1.
Through this model the wave energy dissipation, dispersion relation and velocity distribution instide and outside wave boundary layer can be calculated.
本文对波浪在非均匀流动中传播时的波能耗散或波高衰减进行了研究。
2)  energy loss from wave breaking
波浪破碎能量耗散
1.
Based on the experiments, the energy loss from wave breaking ε_ ed , the bubble plume penetration depth z_b, the rate of air entrainment Q(z), and the turbulent kinetic energy dissipation rate ε_T(z) are estimated in this study.
基于实验观测,导出了波浪破碎能量耗散εed、气泡云卷入深度zb、气体卷入速率Q(z)和湍流动能耗散率εT(z)的表达式,在此基础上建立了一种简单、实用的气泡粒径谱参数化模式N(a,z),揭示了波浪破碎气泡云卷入过程能量耗散、气泡破碎临界Hinze特征尺度和气泡粒径谱在不同海况下的变化。
3)  dissipative filtering
耗散滤波
1.
Fuzzy dissipative filtering for nonlinear systems with stochastic delay
随机时延非线性系统的模糊耗散滤波
2.
This paper deals with the robust dissipative filtering for a class of linear uncertain time-delay systems.
研究一类线性不确定时滞系统的鲁棒耗散滤波器设计问题。
3.
Robust dissipative filtering for a class of linear uncertain neutral delay systems is proposed.
研究一类线性不确定中立型时滞系统的鲁棒耗散滤波器设计问题,所研究的中立型时滞系统中所含的不确定性假设是未知且范数有界的。
4)  dissipation due to wave breaking
破波耗散
1.
The present paper proposes a finite element numerical model for coastal ocean waves with effects of refraction diffraction dissipation due to wave breaking.
建立了近岸波浪折射-绕射-破波耗散的有限元数值模式。
5)  energy consumption
能量耗散
1.
The thermodynamics theory and the principle of least energy consumption were applied to studying the energy consumption and damage evolution of short-fibre composites under repeated low velocity impact.
运用热力学理论和最小耗能原理,研究了反复低速冲击下短纤维复合材料的能量耗散与损伤演变,给出了冲击循环下材料耗散能表达式,建立了与复合材料割线模量降低率相关的损伤变量表达式和损伤演变方程。
2.
According to the fractal theory,a fractal model for consuming energy on rock fragmentation is provided through energy consumption analysis of rock fragmentation in rotary drilling.
通过旋转钻井中破碎岩石的能耗分析,应用分形岩石力学理论,从钻井过程中钻头破碎岩屑的粒度分布、能量耗散等角度,建立旋转钻井中钻头破碎岩石所需能量的分形描述模型,详细分析影响钻头破碎岩石能耗的因素。
6)  dissipated energy
耗散能
1.
Based on the test, this paper analyzes and researches on the basic principles, influencing factors, controlling factors and internal mechanism of the dissipated energy theory prediction approach, and based on the analyzing results, probes into the comprehensive controlling parameters of the fatigue life of asphalt mixture.
在实验的基础上,对耗散能理论预测方法的基本原理、影响因素、控制因素以及内部机理进行了分析和研究,并根据分析结果探讨了沥青混合料疲劳寿命的综合控制参数。
2.
Dissipated energy theories have been applied to the study of fatigue performance of asphalt mixture.
耗散能原理在沥青混合料疲劳特性的研究中已获得应用,本文通过实验验证了沥青混合料累积耗散能与疲劳寿命之间的唯一对应关系,并根据Schapery相关法则对混合料疲劳特性问题中的粘弹性及非线性因素进行了分析。
3.
It is based on the low loading frequency that the thermal fatigue of the material is simulated, the dissipated energy theory is used to analyze the thermal fatigue of bituminous mixture, and the analysis of damage mechanics is carried on.
加载频率对沥青混合料的疲劳寿命影响较大,根据低加载频率的疲劳试验来模拟材料的温度疲劳, 运用耗散能相关理论来分析沥青混合料的温度疲劳损伤,并进行损伤力学的分析。
补充资料:010耗散
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性质:见010损失。

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