fluid torque converter 液力变矩器 ; 液力变扭器
fluid link converter 液体连结转换器
fluid pulse converter 射流脉冲转换器
torque-converter fluid 液力变扭器用液
FLC Fluid Link Converter 液体连结转换器
Fluid Torque Converter Coupler 液体扭矩变换接合器
converter fluid 液力变扭器用液
automatic torque converter fluid 自动变矩器传动液
A computational fluid dynamics model was used to simulate the flow field of catalytic converter, and which was compared with the experimental results as to demonstrate the model validation.
通过采用计算流体力学数学模型对催化转化器内流场的数值模拟,并与实验结果进行比较,验证了模型的准确性。
The more evenly distributed the fluid entering the carrier of catalytic converter in the exhaust pipe, the better results of catalysis and transformation can be got.
进入排气管催化转换器载体的流体分布越均匀,催化转换的效果越好,催化转换器扩张角是影响进入催化转换器载体流体分布是否均匀的关键因素。
A two-dimension model for the flow field in catalytic converter was established, and the steady state flow was simulated with the computational fluid dynamics (CFD) code.
利用计算流体动力学(CFD)软件,建立了催化转化器流场的二维模型,对催化转化器的稳态流动进行了数值模拟。
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