diff --git a/python_scripts/README.md b/python_scripts/README.md index 251d5de6cccf0291d4f5ea72b1807aed18b63cae..969bf8e9c546075e64003def2b316a6cb0b60c0c 100644 --- a/python_scripts/README.md +++ b/python_scripts/README.md @@ -2,7 +2,11 @@ ## Introduction -This framework incorporates wind velocity measurements from multiple-point scanning lidars into three-dimensional wind turbulence time series serving as input to wind turbine load simulations. +This framework incorporates wind velocity measurements from multiple-point scanning lidars into three-dimensional wind turbulence time series serving as input to wind turbine load simulations. The constrained simulation framework is abbreviated as CS. + +Step1: Generate output wind field measured by the lidar using VICONDAR (e.g., "uval_av_sens_dist_Sh20_SD01_V06_TI08_s1000_circ7p_vol30.mat") +Step2: Run the function "from_vicondar_to_cs_files.py", which creates a file (e.g., "cs_seed1000_av_circ7p_vol30") that containes inputs for the CS framework, which are processed from the VICONDAR output's file (e.g., "uval_av_sens_dist_Sh20_SD01_V06_TI08_s1000_circ7p_vol30.mat") +Step3: Run "cs_seed1000_av_circ7p_vol30" file will generate a turbulence field with lidar-based wind velocity measurements incorporated. ## Citing