# Temperature Rise Calculator

> Simulate real-world heating using convection, radiation &amp; conduction losses.

Canonical page: [https://chrome-stats.com/d/com.cp.temprisecalc](https://chrome-stats.com/d/com.cp.temprisecalc)

## Overview

- **ID:** `com.cp.temprisecalc`
- **Platform:** Android
- **Type:** Android app
- **Status:** Available
- **Publisher:** robotic\_durian
- **Category:** TOOLS
- **Downloads:** 33
- **Version:** 1.1
- **Last updated:** 2026-01-04
- **First published:** 2025-12-30
- **Publisher country:** US
- **Size:** 9.97 MB
- **Data as of:** 2026-09-09
- **Store listing:** [Google Play Store](https://play.google.com/store/apps/details?id=com.cp.temprisecalc)
- **Privacy policy:** [https://sites.google.com/view/robotic-durian-trc/home](https://sites.google.com/view/robotic-durian-trc/home)

## Description

This app simulates the temperature rise of a real physical object heated from within, using first-principles thermodynamics and models how heat flows into an object from an internal power source and how heat is lost to the environment through:<br><br>• Convection to surrounding air<br>• Thermal radiation<br>• Conduction to a supporting surface<br><br>The system is treated as a lumped thermal mass, making it ideal for compact objects such as aluminum plates, enclosures, or electronic assemblies.<br><br>What the app does<br><br>• Solves the governing heat-balance differential equation<br>• Displays temperature vs. time graph <br>• Computes the steady-state temperature (T∞)<br>• Estimates the thermal time constant (τ)<br>• Exports temperature data to CSV for further analysis<br>• Exports temperature vs time graph to PNG<br><br>The temperature response, naturally, follows a first-order behavior.<br><br>Adjustable parameters:<br><br>• Heater power<br>• Object mass and material properties<br>• Surface area<br>• Convective heat transfer coefficient<br>• Emissivity<br>• Conduction path length<br>• Ambient and contact temperatures<br><br>Who this app is for:<br><br>• Engineers and designers<br>• Students learning heat transfer<br>• Makers and experimenters<br>• Anyone validating thermal behavior against real measurements<br><br>This app focuses on physical correctness, not curve-fitting — making it suitable for both education and practical engineering intuition.<br><br>Notes:<br><br>• Assumes uniform internal temperature (lumped-parameter model)<br>• Best suited for small to medium-sized objects<br>• Results are intended for analysis and insight, not safety-critical design!

## Rankings

- #2,398,024 — Overall

## Permissions and access

### Permissions

- `com.android.vending.CHECK_LICENSE`
- `com.cp.temprisecalc.DYNAMIC_RECEIVER_NOT_EXPORTED_PERMISSION`

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Source: [Chrome-Stats](https://chrome-stats.com/d/com.cp.temprisecalc)
