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SIMPLORER User Manual V6.0 - FER-a

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<strong>SIMPLORER</strong> 6.0 — <strong>Manual</strong> 309<br />

The flow through an ideal pressure source can be arbitrary. Real pressure sources have always<br />

an internal resistance. If the internal resistance is essential for the simulation target, a<br />

corresponding resistance must be connected in series.<br />

Component Parameters<br />

Description [Unit] Parameter Name Data Type<br />

Pressure Differential [Pa] VALUE real<br />

Component Outputs<br />

Description [Unit] Parameter Name Data Type<br />

Pressure Differential [Pa] P real<br />

Flow Rate [m³/s²] Q real<br />

Component Nodes<br />

Description Node Name Nature Type<br />

Node with high potential (with red point) H1 fluidic<br />

Node with low potential H2 fluidic<br />

Time-Controlled Pressure Source<br />

∆p() t =<br />

f[ time function]<br />

The time controlled pressure sources have the same properties as the linear pressure source<br />

above; the flow rate can be arbitrary and the internal resistance is zero (ideal source). The value<br />

of the pressure differential instead is equivalent to the present value of the selected time<br />

function at each calculation step.<br />

Component Parameters<br />

Description [Unit] Parameter Name Data Type<br />

Amplitude [Pa] AMPL real<br />

Frequency [Hz] (no trapezoidal function parameter) FREQU real<br />

Period [s] TPERIO real<br />

Delay [s] TDELAY real<br />

Phase [deg] PHASE real<br />

Angular Dimension n/a real<br />

Offset OFF real<br />

Periodical; PERIO=1, periodical function, PERIO=0; non-periodical<br />

function<br />

PERIO real<br />

Damping factor [1/s] (only sine function)<br />

DAMPING>0, amplitude is exponentially decreasing<br />

(damped). DAMPING

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