The tutorial specified the manufacture of indoor simulation experiment’s equipment of ultrasonic draining and extracting gas and the process of simulation experiment also . The experiment validate the feasibility and practicability of ultrasonic draining and extracting gas technics, at the same time, probed into the relation of water atomization quantity and the parameter of height, the speed of current, transverter s power, transverter"s work time, etc, and validated the relation of transverter frequency and needed speed of current elementarily.
论文还叙述了室内超声排水采气模拟实验装置的研制及模拟实验的过程,验证了超声排水采气工艺的可行性和实用性,同时探讨了雾化量与雾化高度、气体流速、换能器功率、换能器工作时间等参数的关系,初步验证了换能器频率与所需气流速度的关系。
参考来源 - 超声排水采气研究·2,447,543篇论文数据,部分数据来源于NoteExpress
The content of impurities in water - is greater than that in gas - atomization.
气雾化粉末触媒氧等杂质含量远低于水雾化。
The atomization characteristics of different eddy pressure nozzles were investigated using FAM laser particle size analyzer with water as working fluid in different pressure conditions.
利用FAM激光粒度测量仪,以水为工质对不同结构旋涡压力喷嘴在不同压力条件下的雾化特性进行了实验研究。
Simulation of turbulence atomization jet in the air-water two phase flow field was performed.
对水在空气中湍动雾化射流的气液两相流场进行了数值模拟。
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