de Grootte van de tesla valt opzich nog wel mee

dit word onze eerste tesla dus ik hoop dat ik een beetje goed heb gerekend enzo..
de primaire maken we verstelbaar met een krokodillenbek ,
zodat we zelf het aantal windingen kunnen kiezen en kijken
hoeveel windingen het beste presteert. momenteel heb ik de primaire op 7.5 windingen gezet , zo kom ik aan 280kHz.
Nieuwe berekeningen:
Secondary Coil Inputs:
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Current Profile = G.PROFILE_LOADED
5 = Radius 1
5 = Radius 2
20 = Height 1
80 = Height 2
1000 = Turns
0.2 = Wire Diameter
----------------------------------------------------
Primary Coil Inputs:
----------------------------------------------------
5 = Radius 1
20.03 = Radius 2
7.5 = Height 1
9.647 = Height 2
7.5151 = Turns
0.8 = Wire Diameter
0.025 = Primary Cap (uF)
10 = Total Lead Length
1 = Lead Diameter
----------------------------------------------------
Top Load Inputs:
----------------------------------------------------
Toroid #1: minor=10, major=40, height=100, topload
----------------------------------------------------
Secondary Outputs:
----------------------------------------------------
279.62 kHz = Secondary Resonant Frequency
90 deg° = Angle of Secondary
60 cm = Length of Winding
16.67 cm = Turns Per Unit
0.029 mm = Space Between Turns (edge to edge)
314.16 m = Length of Wire
6:1 = H/D Aspect Ratio
1.72 ohms = DC Resistance
26142 ohms = Forward Transfer Impedance
25916 ohms = Reactance at Resonance
8.774 kg = Weight of Wire
14.751 mH = Les-Effective Series Inductance
14.243 mH = Lee-Equivalent Energy Inductance
15.153 mH = Ldc-Low Frequency Inductance
21.963 pF = Ces-Effective Shunt Capacitance
20.841 pF = Cee-Equivalent Energy Capacitance
30.884 pF = Cdc-Low Frequency Capacitance
0.0727 mm = Skin Depth
15.758 pF = Topload Effective Capacitance
65.4 ohms = Effective AC Resistance
396 = Q
----------------------------------------------------
Primary Outputs:
----------------------------------------------------
279.62 kHz = Primary Resonant Frequency
0 % = Percent Detuned
8 deg° = Angle of Primary
590.94 cm = Length of Wire
1.22 cm = Average spacing between turns (edge to edge)
0 cm = Primary to Secondary Clearance
12.966 µH = Ldc-Low Frequency Inductance
0.025 µF = Cap size needed with Primary L (reference)
0.06 µH = Lead Length Inductance
16.69 µH = Lm-Mutual Inductance
0.038 k = Coupling Coefficient
26.32 = Number of half cycles for energy transfer at K
47.01 µs = Time for total energy transfer (ideal quench time)
----------------------------------------------------
Rotary Spark Gap Outputs:
----------------------------------------------------
8 = Presentations Per Revolution
533.3 [BPS] = Breaks Per Second
150.8 [kmh] = Rotational Speed
1.88 [ms] = RSG Firing Rate
2.5 [ms] = Time for Capacitor to Fully Charge
3.75 = Time Constant at Gap Conduction
-12.84 [ms] = Electrode Mechanical Dwell Time
97.65 [%] = Percent Cp Charged When Gap Fires
13809 [peak volts] = Effective Cap Voltage
2.38 [joules] = Effective Cap Energy
478284 [peak volts] = Terminal Voltage
1271 [power] = Energy Across Gap
281.4 [cm] = RSG Spark Length (using energy equation)
[Bericht gewijzigd door okido4777 op 13 maart 2007 21:18:25]