TY - JOUR
T1 - Calculation of electric spark discharge energy and its energy loss
AU - Liu, Qingming
AU - Wang, Jianping
AU - Li, Lei
AU - Zhang, Yunming
AU - Yu, Can
PY - 2014/4
Y1 - 2014/4
N2 - In order to accurately calculate the energy of electric spark discharge under different conditions, we quantified and analyzed the energy loss of spark discharge system. On the basis of comparing three common methods of calculating electrode discharge energy, we systematically investigated the loss rate and change regulations of the capacitance residual energy and loss energy in circuit in different kinds of discharge processes. The results showed that, with the increase of stored energy (from 2 mJ to 2 J), the loss rate of energy caused by capacitance residual energy increased from 1% to 20%, meanwhile the proportion of circuit loss energy in total energy and the loss rate of energy in the whole system reduced from 70% to 5% and from 70% to 20%, respectively. Therefore, directly calculating electric spark discharge energy using capacitance stored energy will end up with errors; instead, integral method should be taken into the calculation. However, when the capacitance stored energy is large, it can be used to calculate the discharge energy directly since the error will be small.
AB - In order to accurately calculate the energy of electric spark discharge under different conditions, we quantified and analyzed the energy loss of spark discharge system. On the basis of comparing three common methods of calculating electrode discharge energy, we systematically investigated the loss rate and change regulations of the capacitance residual energy and loss energy in circuit in different kinds of discharge processes. The results showed that, with the increase of stored energy (from 2 mJ to 2 J), the loss rate of energy caused by capacitance residual energy increased from 1% to 20%, meanwhile the proportion of circuit loss energy in total energy and the loss rate of energy in the whole system reduced from 70% to 5% and from 70% to 20%, respectively. Therefore, directly calculating electric spark discharge energy using capacitance stored energy will end up with errors; instead, integral method should be taken into the calculation. However, when the capacitance stored energy is large, it can be used to calculate the discharge energy directly since the error will be small.
KW - Capacitance residual energy
KW - Circuit loss
KW - Effective discharge energy
KW - Electric spark discharge
KW - Ignition voltage
KW - Rate of energy loss
UR - http://www.scopus.com/inward/record.url?scp=84900481923&partnerID=8YFLogxK
U2 - 10.13336/j.1003-6520.hve.2014.04.044
DO - 10.13336/j.1003-6520.hve.2014.04.044
M3 - Article
AN - SCOPUS:84900481923
SN - 1003-6520
VL - 40
SP - 1255
EP - 1260
JO - Gaodianya Jishu/High Voltage Engineering
JF - Gaodianya Jishu/High Voltage Engineering
IS - 4
ER -