首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >CFD ANALYSIS OF STEAM TURBINES WITH THE IAPWS STANDARD ON THE SPLINE-BASED TABLE LOOK-UP METHOD (SBTL) FOR THE FAST CALCULATION OF REAL FLUID PROPERTIES
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CFD ANALYSIS OF STEAM TURBINES WITH THE IAPWS STANDARD ON THE SPLINE-BASED TABLE LOOK-UP METHOD (SBTL) FOR THE FAST CALCULATION OF REAL FLUID PROPERTIES

机译:基于样条的表格查找方法(SBTL)的汽轮机与IAPWS标准的CFD分析,用于快速计算真实流体特性

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Accurate simulations of non-stationary processes in steam turbines by means of Computational Fluid Dynamics (CFD) require precise and extremely fast algorithms for computing real fluid properties. To fulfill these requirements, the International Association for the Properties of Water and Steam (IAPWS) issues the "Guideline on the Fast Calculation of Steam and Water Properties with the Spline-Based Table Look-Up Method (SBTL)" as an international standard. Through the use of this method, spline functions for the independent variables specific volume and specific internal energy (v,u) are generated for water and steam based on the industrial formulation IAPWS-IF97. With these spline functions, thermodynamic and transport properties can be computed. The desired backward functions of the variables pressure and specific volume (p,v), and specific internal energy and specific entropy (u,s) are numerically consistent with the spline functions from (v,u). The properties calculated from these SBTL functions are in agreement with those of IAPWS- IF97 within a maximum relative deviation of 10 to 100 ppm depending on the property and the range of thermodynamic states spanned under the given conditions (range of state). Consequently, the differences between the results of process simulations using the SBTL method and those obtained through the use of IAPWS-IF97 are negligible. Moreover, the computations from the (v,u) spline functions are more than 200 times faster than the iterative calculations with IAPWS-IF97. In order to demonstrate the efficiency and applicability of the SBTL method, the SBTL functions have been implemented into the CFD software TRACE, developed by the German Aerospace Center (DLR). As a result, the computing times required for the simulations of steam flow in a turbine cascade considering real fluid behavior are reduced by a factor of 6-10 in comparison to the calculations based on IAPWS-IF97. Furthermore, computing times are increased by a factor of 1.4 only with respect to CFD calculations where steam is considered to be an ideal gas, through the use of the SBTL method.
机译:通过计算流体动力学(CFD)精确地模拟汽轮机中的非平稳过程需要精确且极其快速的算法来计算实际流体特性。为了满足这些要求,国际水和蒸汽特性协会(IAPWS)发布了“基于样条的表格查找方法(SBTL)快速计算蒸汽和水特性的指南”作为国际标准。通过使用此方法,根据工业配方IAPWS-IF97为水和蒸汽生成了用于自变量比容和比内能(v,u)的样条函数。利用这些样条函数,可以计算热力学和传输特性。变量压力和比体积(p,v)以及比内能和比熵(u,s)的所需后向函数在数值上与(v,u)中的样条函数一致。根据给定条件(状态范围)下的性质和热力学状态范围,从这些SBTL函数计算出的性质与IAPWS-IF97的性质在10至100 ppm的最大相对偏差范围内一致。因此,使用SBTL方法的过程模拟结果与通过使用IAPWS-IF97获得的结果之间的差异可以忽略不计。而且,(v,u)样条函数的计算比使用IAPWS-IF97的迭代计算快200倍以上。为了证明SBTL方法的效率和适用性,SBTL功能已在德国航空航天中心(DLR)开发的CFD软件TRACE中实现。结果,与基于IAPWS-IF97的计算相比,考虑实际流体行为的涡轮机级联中的蒸汽流模拟所需的计算时间减少了6-10倍。此外,通过使用SBTL方法,仅对于将蒸汽视为理想气体的CFD计算而言,计算时间仅增加了1.4倍。

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