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RWUAV Perf Calculator on Windows Pc

Developed By: NFRWTools

License: Free

Rating: 5,0/5 - 1 votes

Last Updated: December 27, 2023

Download on Windows PC

Compatible with Windows 10/11 PC & Laptop

App Details

Version Drone Perf Calculator 1.10R
Size 1 MB
Release Date April 14, 18
Category Tools Apps

What's New:
Improved Turbine Engine model [see more]

Description from Developer:
RWUAV Perf Calculator is a professional tool for the most significant Performance and Required Power calculation of Rotary Wing aircraft of any configuration and size: Multirotors... [read more]

App preview ([see all 11 screenshots])

App preview

About this app

On this page you can download RWUAV Perf Calculator and install on Windows PC. RWUAV Perf Calculator is free Tools app, developed by NFRWTools. Latest version of RWUAV Perf Calculator is Drone Perf Calculator 1.10R, was released on 2018-04-14 (updated on 2023-12-27). Estimated number of the downloads is more than 1,000. Overall rating of RWUAV Perf Calculator is 5,0. Generally most of the top apps on Android Store have rating of 4+. This app had been rated by 1 users, 1 users had rated it 5*, 1 users had rated it 1*.

How to install RWUAV Perf Calculator on Windows?

Instruction on how to install RWUAV Perf Calculator on Windows 10 Windows 11 PC & Laptop

In this post, I am going to show you how to install RWUAV Perf Calculator on Windows PC by using Android App Player such as BlueStacks, LDPlayer, Nox, KOPlayer, ...

Before you start, you will need to download the APK/XAPK installer file, you can find download button on top of this page. Save it to easy-to-find location.

[Note] You can also download older versions of this app on bottom of this page.

Below you will find a detailed step-by-step guide, but I want to give you a fast overview of how it works. All you need is an emulator that will emulate an Android device on your Windows PC and then you can install applications and use it - you see you're playing it on Android, but this runs not on a smartphone or tablet, it runs on a PC.

If this doesn't work on your PC, or you cannot install, comment here and we will help you!

Step By Step Guide To Install RWUAV Perf Calculator using BlueStacks

  1. Download and Install BlueStacks at: https://www.bluestacks.com. The installation procedure is quite simple. After successful installation, open the Bluestacks emulator. It may take some time to load the Bluestacks app initially. Once it is opened, you should be able to see the Home screen of Bluestacks.
  2. Open the APK/XAPK file: Double-click the APK/XAPK file to launch BlueStacks and install the application. If your APK/XAPK file doesn't automatically open BlueStacks, right-click on it and select Open with... Browse to the BlueStacks. You can also drag-and-drop the APK/XAPK file onto the BlueStacks home screen
  3. Once installed, click "RWUAV Perf Calculator" icon on the home screen to start using, it'll work like a charm :D

[Note 1] For better performance and compatibility, choose BlueStacks 5 Nougat 64-bit read more

[Note 2] about Bluetooth: At the moment, support for Bluetooth is not available on BlueStacks. Hence, apps that require control of Bluetooth may not work on BlueStacks.

How to install RWUAV Perf Calculator on Windows PC using NoxPlayer

  1. Download & Install NoxPlayer at: https://www.bignox.com. The installation is easy to carry out.
  2. Drag the APK/XAPK file to the NoxPlayer interface and drop it to install
  3. The installation process will take place quickly. After successful installation, you can find "RWUAV Perf Calculator" on the home screen of NoxPlayer, just click to open it.

Discussion

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Download older versions

Other versions available: Drone Perf Calculator 1.10R.

Download RWUAV Perf Calculator Drone Perf Calculator 1.10R on Windows PC – 1 MB

RWUAV Perf Calculator is a professional tool for the most significant Performance and Required Power calculation of Rotary Wing aircraft of any configuration and size: Multirotors or Conventional, Main rotor and Tail rotor, architectures.
Based on a sophisticated Energy Method, including corrections for compressibility and rotor stall phenomena, it allows to predict the power required to fly, as a function of weight and speed, for a defined altitude and temperature combination.
At the same time, based on the available power, the most important performance are predicted:
- Maximum Weight to hover at the defined altitude and temperature
- Maximum Speed at the defined weight, altitude and temperature
- Minimum Power Consumption Speed for Max Endurance (Vbe) a the given weight, temperature and altitude
- Maximum Rate of Climb at given weight, altitude and temperature
- Max Hover altitude at th egiven weight and temperature
Available power calculation module comes with generic math models for Turbine, Piston or Electrical engines; a simple extrapolation formula allows to adapt the delivered power to the external conditions of altitude and temperature.
A sophisticated physical model for the Main Rotor(s) drag coefficient is provided, to correctly predict the Profile Power as a function of speed and atmospheric conditions.
Drag of the fuselage can be made function of the Forward Flight speed, when data are available, to improve forward flight performance calculation.
The most important iteractional aerodynamic phenomena can be easily modeled as a function of speed, like:
- Effects of Main Rotor wake on fuselage (Down Load)
- Effects of Fin on Tail rotor (Blockage Factor)
- Rotors Thrust generation efficiency (Ki)
- Tip Loss for Main Rotor
- Complete equations for Induced Velocity calculation in all flight regimes
- Prediction of rotor average Lift Coefficient for more precise power evaluation
- Out or In Ground effect (OGE/IGE) calculations, with different models
Input data are saved at each run and Aircraft models are stored in commented text files for simple retrieving and possible editing.
Drop Down lists provide access with a single click to all the possible execution options, for a simple preparation of the analysis and of the input files.
Two complete example file are embedded in the code and can be generated, retrieved and edited as baseline for other models.
Default values for the most important parameters are suggested for less expert Users.
Improved Turbine Engine model