![]() ![]() ![]() It isĭifficult to universally predict in which cases there is a need for double precision, The single precision is insufficient and double precision should be used. It has been noted that for some very specific applications/simulations V1.4, nanoFluidX has being delivered in both single (SP) and double Single and Double Precision BinariesSince Test the proper system setting and see if the simulation starts correctly on the Sample configuration files and geometry input files are provided with the binary to References used throughout the nanoFluidX manual. NanoFluidX options available in combination with the WEIGHTED and RIEMANN Solver. Tips, Tricks, and Advice for Best Practice. ![]() Learn material library loading and how to install the nanoFluidX toolbar plugin. nanoFluidX Auxiliary Tools for ParaView.This can be done by adding the -c option. The check_nFX.sh script is able to collect case information for debugging. NanoFluidX prep, shortened as nFX, is an auxiliary executable for nanoFluidX intended to eliminate a number of potential user errors during the pre-processing phase. NFX is a single file portable Python executable that is aimed for helping with monitoring a nanoFluidX simulation during runtime. NanoFluidX companion (also known as, nFX) is a post-processing tool developed to accompany the nanoFluidX solver and allow for an easier execution of certain post-processing tasks. The general purpose of nanoFluidX is to simulate complex multi-phase or free surface flows using multiple GPUs. Apart from the configuration file, which defines all relevant simulation parametersĪnd phase properties, a geometry file is required that defines the initial discretization of the problem with NanoFluidX uses two files to setup a simulation. Sample configuration files and geometry input files are provided with the binary to test the proper system settingĪnd see if the simulation starts correctly on the system. NanoFluidX is a software to simulate single- and multi-phase flows based on the Lagrangian Particle Method "Smoothed Particle Overview of nanoFluidX technical capabilities. ![]()
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