1)  Synthetic jet~+
自耦合射流+
2)  synthetic jet
自耦合射流
1.
Experimental investigation of the characteristics of synthetic jet with different orifice aspect ratio and frequency;
不同出口型与驱动频率的活塞型自耦合射流+研究
2.
Experimental study and numerical simulation were used to study the flow characteristics of a synthetic jet.
采用实验和数值模拟相结合的方法对自耦合射流+的流动特性进行了研究。
3.
The characteristics of the flowfields of a synthetic jet actuator are experimentally investigated with the slot-nozzle driven by the piezoelectric membrane.
为了研究压电驱动狭缝喷口自耦合射流+的流动特性,采用PIV、热线风速仪测试手段,对自耦合射流+激发器在不同激励因素下的流场和速度场分布进行了实验和分析。
3)  coupled synthetic jets
多股自耦合射流
1.
Numerical study on the flow and heat transfer characteristics of coupled synthetic jets;
多股自耦合射流+相干流动和换热特性数值研究
4)  synthetic jet
自耦合射流激发器
1.
To investigate the characteristics of the velocity of a synthetic jet driven by the piezoelectric actuator at different voltages and frequencies,an experiment by using a hot-wire anemometer is carried out.
利用热线风速仪对压电驱动自耦合射流+激发器在不同的电压和激励频率下所形成的射流速度分布进行了测试。
5)  Self-couple
自耦
1.
Self-couple Boost DC/DC Conversion;
自耦式Boost DC/DC变换
6)  self-coupled compensated
自耦补偿
1.
A novel self-coupled compensated and shielding harmonic converter transformer is proposed,its structure has advantage of self-coupled function of transformer and originates moving the reactive compensation equipment to the inner windings,which will greatly decrease the voltage scale of reactive compensation equipment.
针对城轨交通供电系统的传统换流站产生的谐波和无功功率由变压器绕组注入交流网侧,既增大变压器制造成本,又产生噪音问题,提出了一种具有内部三角形绕组的自耦补偿与谐波屏蔽换流变压器,它将传统无功补偿装置移至绕组内部且公共绕组的等效短路阻抗为零阻抗设计,使二次侧各种谐波源无法进入高压网络,有效抑制了供电系统中的谐波成分,从而具备自耦补偿和谐波屏蔽功能。
2.
The new converter transformer is provided with self-coupled compensated and shielding harmonic by displacing the compensated equipment to the inner windings for shielding the harmonic in both sides of the converter transformer windings efficiently.
提出了一种新型换流变压器的设计方案,将无功补偿装置移至换流变压器绕组内部,使其自身具备了自耦补偿和谐波屏蔽的功能,有效地对换流变压器的原副边绕组进行滤波,从而克服了无功功率和谐波给变压器带来的绕组和铁心中增大附加发热和噪音与振动问题,大大降低了换流变压器的负载损耗。
参考词条
补充资料:自旋-自旋耦合
分子式:
CAS号:

性质:自旋所产生的磁矩之间发生的相互作用。在核磁共振中,其精细结构就来自于核自旋之间的相互作用。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。