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Dynamic modeling and simulation of an integral bipropellant propulsion double-valve combined test system

机译:整体式双推进器双阀组合测试系统的动力学建模与仿真

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摘要

For the pressure reducing regulator and check valve double-valve combined test system in an integral bipropellant propulsion system, a system model is established with modular models of various typical components. The simulation research is conducted on the whole working process of an experiment of 9 MPa working condition from startup to rated working condition and finally to shutdown. Comparison of simulation results with test data shows: five working conditions including standby, startup, rated pressurization, shutdown and halt and nine stages of the combined test system are comprehensively disclosed; valve-spool opening and closing details of the regulator and two check valves are accurately revealed; the simulation also clarifies two phenomena which test data are unable to clarify, one is the critical opening state in which the check valve spools slightly open and close alternately in their own fully closed positions, the other is the obvious effects of flow-field temperature drop and temperature rise in pipeline network with helium gas flowing. Moreover, simulation results with consideration of component wall heat transfer are closer to the test data than those under the adiabatic-wall condition, and more able to reveal the dynamic characteristics of the system in various working stages.
机译:对于整体式双推进剂推进系统中的减压调节器和止回阀双阀组合测试系统,建立了具有各种典型组件的模块化模型的系统模型。在从启动到额定工作条件再到停机的9 MPa工作条件实验的整个工作过程中进行了仿真研究。仿真结果与测试数据的比较表明:全面披露了待机,启动,额定增压,停机和停机五个工作状态以及组合测试系统的九个阶段;准确显示调节器和两个止回阀的阀芯开闭细节;仿真还澄清了测试数据无法澄清的两种现象,一种是临界打开状态,在这种状态下,止回阀阀芯在自己的完全关闭位置上略微打开和关闭,另一种是流场温度下降的明显影响随着氦气的流动,管网温度升高。此外,考虑到构件壁传热的模拟结果比绝热壁条件下的模拟结果更接近测试数据,并且能够揭示系统在各个工作阶段的动态特性。

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