College of Mechanical Engineering and Key Laboratory of Air-Driven Equipment Technology of Zhejiang Province, Quzhou University, Quzhou, 324000, China.
College of Mechanical Engineering, Zhejiang University of Technology, Hangzhou, 310023, China.
Sci Rep. 2023 Mar 25;13(1):4913. doi: 10.1038/s41598-023-31899-9.
In order to reveal the influence of starting acceleration on starting process of a pump as turbine system, this paper carries out a numerical calculation of the three-dimensional viscous unsteady flow of pump as turbine circulating piping system under three starting acceleration conditions, and obtains the external and internal flow characteristics of each overflow component during the starting process, and also analyzes the energy loss of each component in the piping system in depth with the help of entropy production method and Q criterion method. The results show that during system start-up, the flow rate and outlet static pressure curves of the pump as turbine are hysteresis relative to the rotational speed, the head curve is similar to a linear rise during slow and medium speed start-up, while it shows a parabolic rise during rapid start-up, the entropy production and vorticity in the impeller domain of the pump as turbine are mainly distributed between the blades, and the distribution decreases during start-up. In addition, the pump similarity law does not apply to the performance prediction during the transient start of the pump as turbine.
为了揭示启动加速度对泵轮作为透平系统启动过程的影响,本文针对三种启动加速度条件下的泵轮作为透平循环管路系统的三维粘性非定常流动进行了数值计算,得到了各过流部件在启动过程中的内外流特性,并借助熵产率方法和 Q 准则方法深入分析了管路系统中各部件的能量损失。结果表明,在系统启动过程中,泵轮作为透平的流量和出口静压曲线相对于转速呈滞后,在低速和中速启动时扬程曲线呈近似线性上升,而在快速启动时呈抛物线上升,泵轮作为透平的熵产率和涡量主要分布在叶片之间,并且在启动过程中分布减小。此外,泵相似定律不适用于泵轮作为透平的瞬态启动过程中的性能预测。