| atmdens | Functions to calculate ICAO standard atmospheric properties: temperature, density, and pressure. |
| atmosprops | Functions to calculate ICAO standard atmospheric properties: temperature, density, and pressure. |
| atmos_table | Tabulates into a tibble some properties of the standard atmosphere: temperature, density, and pressure. |
| atmpres | Functions to calculate ICAO standard atmospheric properties: temperature, density, and pressure. |
| atmtemp | Functions to calculate ICAO standard atmospheric properties: temperature, density, and pressure. |
| colebrook | Calculates the Darcy-Weisbach Friction Factor f |
| darcyweisbach | Solves the Darcy-Weisbach Equation for the either head loss (hf), flow rate (Q), diameter (D), or roughness height (ks). |
| dens | Functions to calculate water properties: density, specific weight, dynamic and kinematic viscosity, saturation vapor pressure, surface tension, and bulk modulus. |
| direct_step | Uses the direct step method to find the distance between two known depths in a trapezoidal channel |
| dvisc | Functions to calculate water properties: density, specific weight, dynamic and kinematic viscosity, saturation vapor pressure, surface tension, and bulk modulus. |
| Ev | Functions to calculate water properties: density, specific weight, dynamic and kinematic viscosity, saturation vapor pressure, surface tension, and bulk modulus. |
| hardycross | Applies the Hardy-Cross method to solve for pipe flows in a network. |
| kvisc | Functions to calculate water properties: density, specific weight, dynamic and kinematic viscosity, saturation vapor pressure, surface tension, and bulk modulus. |
| manningc | Solves the Manning Equation for gravity flow in a circular pipe |
| manningt | Solves the Manning Equation for water flow in an open channel |
| moody | Creates a Moody diagram with optional manually added points |
| operpoint | Uses input pump and system curves to find the operating point for a pump and create a plot. |
| pumpcurve | Fits a polynomial curve to three or more points from a pump characteristic curve to be used in solving for an operating point of the pump in a piping system. |
| reynolds_number | Calculates the Darcy-Weisbach Friction Factor f |
| sequent_depth | Solves the Momentum Equation for sequent (or conjugate) depth in a trapezoidal channel |
| specwt | Functions to calculate water properties: density, specific weight, dynamic and kinematic viscosity, saturation vapor pressure, surface tension, and bulk modulus. |
| spec_energy_trap | Creates a specific energy diagram for a trapezoidal channel |
| surf_tension | Functions to calculate water properties: density, specific weight, dynamic and kinematic viscosity, saturation vapor pressure, surface tension, and bulk modulus. |
| svp | Functions to calculate water properties: density, specific weight, dynamic and kinematic viscosity, saturation vapor pressure, surface tension, and bulk modulus. |
| systemcurve | Creates a system curve for a piping system using the static head and a coefficient. |
| velocity | Calculates the Darcy-Weisbach Friction Factor f |
| waterprops | Functions to calculate water properties: density, specific weight, dynamic and kinematic viscosity, saturation vapor pressure, surface tension, and bulk modulus. |
| water_table | Tabulates into a tibble the basic water properties: density, dynamic and kinematic viscosity, saturation vapor pressure, surface tension, and bulk modulus. |
| xc_circle | Creates a cross-section plot for a partially filled pipe |
| xc_trap | Creates a cross-section plot for an open channel |