Loading
/custom-emojis/emojis/contour-map.png
Templates
📚
Articles & Resources
📖
Guides & Support
🌵
CalcTree
Loading
/custom-emojis/emojis/calculator.png
Seismic Spectrum Calculator to EC8 - Lenny
Bust Common Myths About Java Programming
Loading
/custom-emojis/emojis/calculator.png
Tensile Strength and Capacity Control of the W-Shape Sections According to AISC 360-16
Loading
/custom-emojis/emojis/calculator.png
Concrete Cylinder Strength Vs Cube Strength
Loading
/custom-emojis/emojis/calculator.png
Earthquake Design Action Calculation
Sıvılaşma Verileri Tablosu
Loading
/custom-emojis/emojis/rc-beam.png
Concrete Column Designer to AS3600
EM Wave Propagation Calculator
section properties with units
Forward Kinematics of Robotic Arm with 6 Degrees of Freedom
İKSA YAPILARI PROJELENDİRME HİZMET BEDELİ (2024)
GEOTEKNİK RAPOR (EK-B) ASGARİ HİZMET BEDELİ (2024)
ZEMİN İYİLEŞTİRME/DERİN TEMEL PROJELENDİRME ASGARİ HİZMET BEDELİ (2024) (İMO)
İKSA YAPILARI PROJELENDİRME HİZMET BEDELİ (2023)
🚀
Projectile motion
Loading
/custom-emojis/emojis/bending-moment.png
Dezi et. al (2010)
🤾
Projectile motion
Heat Engine Calculator's banner
/custom-emojis/emojis/calculator.png

Heat Engine Calculator

This calculator evaluates various ratios and the efficiency of Heat Engines.

Inputs



Q(1)
:300.00J



Q(2)
:400.00J



T(1)
:350.00K



T(2)
:450.00K


Output



W
:-100.00


W=Q1Q2W=Q_1-Q_2


η (%)
:-28.57


η =(1T2T1)×100=(1t2+273t1+273)×100 \eta\ =(1-\frac{T_2}{T_1})\times100=(1-\frac{t_2+273}{t_1+273})\times100

The following are the variables for the equations.

Heat Engine

In using the calculators and inputting values above, refer to Figure 1 and the different states of the Heat Engine.
Figure 1: Diagram of Heat Engines


Related Content

If you liked this, check out our other articles and resources!
  1. Check out our library of templates here.
  1. Diesel Cycle
  2. Duel Combustion Cycle
  3. Brayton Cycles
  4. Power Cycles
  5. Introduction to Thermodynamics
  6. Importance of Mechanical Engineering Calculation Templates