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BENCH FOR INVESTIGATION OF UNDERWATER EROSION OF SOIL

机译:水下土壤侵蚀调查台

摘要

the invention u043eu0442u043du043eu0441u0438u0442u0441u00a0 to u0433u0438u0434u0440u043eu043cu0435u0445u0430u043du0438u0437u0430u0446u0438u0438 and is u0434u043bu00a0 u0438u0441u0441u043bu0435u0434u043eu0432u0430u043du0438u00a0 underwater u0440u0430u0437u0440u0443u0448u0435u043du0438u00a0 soils. goal is to improve the accuracy of the research results through the synchronization speed u0438u0437u043cu0435u043du0435u043du0438u00a0 u043fu0435u0440u0435u043cu0435u0449u0435u043du0438u00a0 model working body and the liquid through the nozzle.the display includes a body 1 with the soil filled with fluid, model 2 working body / ro / ro u0441u043eu043fu043bu0430u043cu0438, mechanism u043fu0435u0440u0435u043cu0435u0449u0435u043du0438u00a0 model 2 with u0448u0442u043eu043au043eu043c 4 and u0441u043eu0437u0434u0430u043du0438u00a0 giving mechanism u043bu0435u043du0438u00a0 fluid. model 2 ro is located in the casing 1. the extension bar (pinned 4 by channel 5, which is connected to the u0441u043eu043fu043bu0430u043cu0438. the mechanism u0441u043eu0437u0434u0430u043du0438u00a0 u0434u0430u0432u043bu0435u043du0438u00a0 fluid made from a pump 6 to the unit 7.the drive mechanism 7 is connected to the u043au0438u043du0435u043cu0430u0442u0438u0447u0435u0441u043au0438 u043fu0435u0440u0435u043cu0435u0449u0435u043du0438u00a0 model 2 ro. u043du0430u043fu043eu0440u043du044bu0439 tube pump 6 is connected to the channel 5 of a rod 4. the suction tube pump 6 is connected with a complete casing 1. include the actuator 7. is the displacement of the 2 ro. at the same time, the fluid from the pump 6 is received in the channel 5 and the nozzle.with the change of the speed of u043fu0435u0440u0435u043cu0435u0449u0435u043du0438u00a0 model 2 is a proportional change in the flow rate of liquid through a nozzle. 2).
机译:本发明 u043e u0442 u043d u043e u0441 u0438 u0442 u0441 u00a0至 u0433 u0438 u0434 u0440 u043e u043c u0435 u0445 u0430 u0430 u043d u0438 u0437 u0430 u0430 u0430 u0438 u0438,并且是 u0434 u043b u00a0 u0438 u0441 u0441 u043b u0435 u0434 u043e u0432 u0430 u043d u0438 u00a0水下 u0440 u0430 u0437 u0440 u0443 u0448 u043d u0438 u00a0土壤。目标是通过同步速度 u0438 u0437 u043c u0435 u043d u0435 u043d u043d u0438 u00a0 u043f u0435 u0440 u0435 u043c u0435 u0435 u04449 u0435 u043d u0438 u00a0模型工作体和通过喷嘴的液体。显示屏包括一个充满土壤的主体1,模型2工作体 / ro / ro u0441 u043e u043f u043b u0430 u043c u0438,机制 u043f u0435 u0440 u0435 u043c u0435 u0449 u0435 u043d u0438 u00a0模型2与 u0448 u0442 u043e u043a u043e u043c 4和 u0441 u043e u0437 u0434 u0430 u043d u0438 u00a0给予机构 u043b u0435 u043d u0438 u00a0流体。型号2 ro位于外壳1中。扩展杆(通过通道5固定4,该通道连接到 u0441 u043e u043f u043b u0430 u043c u0438。机构 u0441 u043e u0437 u0434 u0430 u043d u0438 u00a0 u0434 u0430 u0432 u043b u0435 u043d u0438 u00a0由泵6泵送至单元7的流体。驱动机构7连接到 u043a u0438 u043d u0435 u043c u0430 u0442 u0438 u0447 u0435 u0441 u043a u0438 u043f u0435 u0440 u0435 u043c u043c u0435 u0449 u0435 u043d u043d u0438 u00a0模型2 ro。 u043d u0430管泵6连接到杆4的通道5。吸管泵6与完整的壳体1连接。包括执行器7。排量为2 ro同时,来自泵6的流体被接收到通道5和喷嘴中,速度的变化为 u043f u0435 u0440 u0435 u043c u0435 u0449 u0435 u043d u0438 u00a0模型2是通过喷嘴的液体流量的比例变化(2)。

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