3.1 Definieer kapasitiewe reaktansie met verwysing na RLC-kringe - NSC Electrical Technology Electronics - Question 3 - 2021 - Paper 1
Question 3
3.1 Definieer kapasitiewe reaktansie met verwysing na RLC-kringe.
3.2 Noem die fasevervantskap tussen die stroom en spanning in 'n suiver induktiewe WS-kring.
3.3 ... show full transcript
Worked Solution & Example Answer:3.1 Definieer kapasitiewe reaktansie met verwysing na RLC-kringe - NSC Electrical Technology Electronics - Question 3 - 2021 - Paper 1
Step 1
Definieer kapasitiewe reaktansie met verwysing na RLC-kringe.
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Kapasitiewe reaktansie is die weerstand wat 'n kapasitor teen die vloei van wisselstroom bied in 'n WS-kring.
Step 2
Noem die fasevervantskap tussen die stroom en spanning in 'n suiver induktiewe WS-kring.
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Daar is 'n 90° faseverskuiwing tussen VL en IL, waar IL ten volle na VL naloop.
Step 3
Bereken die induktansie van die induktor.
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Die induktansie kan bereken word met die formule:
L = rac{X_L}{2 imes ext{pi} imes f} = rac{150}{2 imes ext{pi} imes 60} \\ = 0,39 ext{ H} \\ = 390 ext{ mH}
Step 4
Bereken die impedansie van die kring.
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Die impedansie kan bereken word met die formule:
Z = rac{R}{ ext{cos} \theta} = \sqrt{R^2 + (X_L - X_C)^2} \\ = \sqrt{60^2 + (150 - 120)^2} \\ = \sqrt{60^2 + 30^2} \\ = 67,08 \Omega
Step 5
Bereken die drywingfaktor.
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Die drywingfaktor kan bereken word met die formule:
cosθ=ZR=67,0860=0,89
Step 6
Noem DRIE toestande wat sal ontstaan indien die drywingfaktor in 'n RLC-seriekring eenheidswaarde bereik.
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Die kring sal by resonansie wees.
Die spanning oor die induktor en kapasitor sal gelyk wees.
Deur die afwezigheid van faseverskuiwing sal die maksimum stroom in die kring voorkom.
Step 7
Bepaal die resonansiefrekwensie in FIGUUR 3.4 B.
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Die resonansiefrekwensie kan bepaal word deur na die gegewe waardes van die inductors en kapasitors in FIGUUR 3.4 B te kyk, en aan te neem dat dit by 800 Hz sal wees.
Step 8
Vergelyk die waardes van die induktiewe reaktensie en kapasitiewe reaktansie wanneer die frekwensie van 200 Hz na 1 600 Hz toeneem.
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Die induktiewe reaktansie sal toeneem terwyl die kapasitiewe reaktansie sal afneem wanneer die frekwensie toeneem.
Step 9
Bereken die spanningsval oor die induktor as die frekwensie 600 Hz is.
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Die spanningsval kan bereken word met die formule:
VL=ILimesXL=0,66imes750=495V
Step 10
Bereken die waarde van die kapasitor deur die reaktansiewaarde by 600 Hz te gebruik.
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Die kapasitorwaarde kan bereken word met die volgende formules:
XC=2πfC1.
C=2πfXC1≈198,99×10−9F≈198,99nF.
Step 11
Bereken die totale stroomvloei deur die kringbaan.
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Die totale stroomvloei kan bereken word met die formule:
I=ZVT=20220=11A
Step 12
Bereken die spanningsval oor die induktor.
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Die spanningsval oor die induktor kan bereken word met die formule:
VL=IL×XL≈11A×60Ω=660V
Step 13
Bereken die Q-faktor van die kring.
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Die Q-faktor kan bereken word met die formule:
Q=RXL=2060=3
Step 14
Die fasehoek sal nul wees omdat $X_L$ gelyk is aan $X_C$ en sodanige sal $V_L$ gelyk wees aan $V_C$ en uitfase met mekaar.
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Dit kanselleer mekaar uit en daaruit lei dat die drywingfaktor 1 is.