Density Upstream of Shock Wave using Continuity Equation Solution

STEP 0: Pre-Calculation Summary
Formula Used
Density Ahead of Normal Shock = (Density Behind Normal Shock*Velocity Downstream of Shock)/Velocity Upstream of Shock
ρ1 = (ρ2*V2)/V1
This formula uses 4 Variables
Variables Used
Density Ahead of Normal Shock - (Measured in Kilogram per Cubic Meter) - Density Ahead of Normal Shock refers to the density of a fluid before encountering a normal shock wave.
Density Behind Normal Shock - (Measured in Kilogram per Cubic Meter) - Density Behind Normal Shock represents the density of a fluid after passing through a normal shock wave.
Velocity Downstream of Shock - (Measured in Meter per Second) - Velocity Downstream of Shock is the velocity of flow behind the shock wave.
Velocity Upstream of Shock - (Measured in Meter per Second) - Velocity Upstream of Shock is the velocity of flow ahead of the shock wave.
STEP 1: Convert Input(s) to Base Unit
Density Behind Normal Shock: 5.5 Kilogram per Cubic Meter --> 5.5 Kilogram per Cubic Meter No Conversion Required
Velocity Downstream of Shock: 79.351 Meter per Second --> 79.351 Meter per Second No Conversion Required
Velocity Upstream of Shock: 80.134 Meter per Second --> 80.134 Meter per Second No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
ρ1 = (ρ2*V2)/V1 --> (5.5*79.351)/80.134
Evaluating ... ...
ρ1 = 5.446258766566
STEP 3: Convert Result to Output's Unit
5.446258766566 Kilogram per Cubic Meter --> No Conversion Required
FINAL ANSWER
5.446258766566 5.446259 Kilogram per Cubic Meter <-- Density Ahead of Normal Shock
(Calculation completed in 00.004 seconds)

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Upstream Shock Waves Calculators

Density ahead of Normal Shock using Normal Shock Momentum Equation
​ LaTeX ​ Go Density Ahead of Normal Shock = (Static pressure Behind Normal shock+Density Behind Normal Shock*Velocity Downstream of Shock^2-Static Pressure Ahead of Normal Shock)/(Velocity Upstream of Shock^2)
Static Pressure ahead of Normal Shock using Normal Shock Momentum Equation
​ LaTeX ​ Go Static Pressure Ahead of Normal Shock = Static pressure Behind Normal shock+Density Behind Normal Shock*Velocity Downstream of Shock^2-Density Ahead of Normal Shock*Velocity Upstream of Shock^2
Velocity ahead of Normal Shock from Normal Shock Energy Equation
​ LaTeX ​ Go Velocity Upstream of Shock = sqrt(2*(Enthalpy Behind Normal Shock+(Velocity Downstream of Shock^2)/2-Enthalpy Ahead of Normal Shock))
Enthalpy ahead of Normal Shock from Normal Shock Energy Equation
​ LaTeX ​ Go Enthalpy Ahead of Normal Shock = Enthalpy Behind Normal Shock+(Velocity Downstream of Shock^2-Velocity Upstream of Shock^2)/2

Density Upstream of Shock Wave using Continuity Equation Formula

​LaTeX ​Go
Density Ahead of Normal Shock = (Density Behind Normal Shock*Velocity Downstream of Shock)/Velocity Upstream of Shock
ρ1 = (ρ2*V2)/V1

What are qualitative changes across the shock waves?

Shock waves are very thin regions in a supersonic flow across which the pressure, density, temperature, and entropy increase, the Mach number, flow velocity, and total pressure decreases, and the total enthalpy stays the same.

How to Calculate Density Upstream of Shock Wave using Continuity Equation?

Density Upstream of Shock Wave using Continuity Equation calculator uses Density Ahead of Normal Shock = (Density Behind Normal Shock*Velocity Downstream of Shock)/Velocity Upstream of Shock to calculate the Density Ahead of Normal Shock, Density Upstream of Shock Wave using Continuity Equation formula is defined as a relationship that describes how the density of a fluid changes when it flows through a shock wave, ensuring mass conservation in compressible flow scenarios. Density Ahead of Normal Shock is denoted by ρ1 symbol.

How to calculate Density Upstream of Shock Wave using Continuity Equation using this online calculator? To use this online calculator for Density Upstream of Shock Wave using Continuity Equation, enter Density Behind Normal Shock 2), Velocity Downstream of Shock (V2) & Velocity Upstream of Shock (V1) and hit the calculate button. Here is how the Density Upstream of Shock Wave using Continuity Equation calculation can be explained with given input values -> 3.009866 = (5.5*79.351)/80.134.

FAQ

What is Density Upstream of Shock Wave using Continuity Equation?
Density Upstream of Shock Wave using Continuity Equation formula is defined as a relationship that describes how the density of a fluid changes when it flows through a shock wave, ensuring mass conservation in compressible flow scenarios and is represented as ρ1 = (ρ2*V2)/V1 or Density Ahead of Normal Shock = (Density Behind Normal Shock*Velocity Downstream of Shock)/Velocity Upstream of Shock. Density Behind Normal Shock represents the density of a fluid after passing through a normal shock wave, Velocity Downstream of Shock is the velocity of flow behind the shock wave & Velocity Upstream of Shock is the velocity of flow ahead of the shock wave.
How to calculate Density Upstream of Shock Wave using Continuity Equation?
Density Upstream of Shock Wave using Continuity Equation formula is defined as a relationship that describes how the density of a fluid changes when it flows through a shock wave, ensuring mass conservation in compressible flow scenarios is calculated using Density Ahead of Normal Shock = (Density Behind Normal Shock*Velocity Downstream of Shock)/Velocity Upstream of Shock. To calculate Density Upstream of Shock Wave using Continuity Equation, you need Density Behind Normal Shock 2), Velocity Downstream of Shock (V2) & Velocity Upstream of Shock (V1). With our tool, you need to enter the respective value for Density Behind Normal Shock, Velocity Downstream of Shock & Velocity Upstream of Shock and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Density Ahead of Normal Shock?
In this formula, Density Ahead of Normal Shock uses Density Behind Normal Shock, Velocity Downstream of Shock & Velocity Upstream of Shock. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Density Ahead of Normal Shock = (Static pressure Behind Normal shock+Density Behind Normal Shock*Velocity Downstream of Shock^2-Static Pressure Ahead of Normal Shock)/(Velocity Upstream of Shock^2)
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