A geophysical investigation of subsurface structures using the Syscal Junior 48 resistivity-meter was conducted in Ngoura subdivision (East Cameroon) following a combined geoelectrical direct current (DC) approach inv...A geophysical investigation of subsurface structures using the Syscal Junior 48 resistivity-meter was conducted in Ngoura subdivision (East Cameroon) following a combined geoelectrical direct current (DC) approach involving Resistivity and IP methods. This investigation was allowed to collect data on forty-five (45) profiling lines at three acquisition levels (AB = 100 m, MN = 10 m;AB = 200 m, MN = 20 m and AB = 500 m, MN = 50 m) and two electric panels L1 and L4, using the Schlumberger array. Processing, modeling and interpretation of data collected using the Winsev, Res2Dinv and Surfer software helped in highlighting a conductive and strongly mineralized discontinuity in granite formations, which lined up with the NE-SW Kadei tectonic line. It extends beyond 100 m depth over an average width of 600 m. The mineralization associated with this discontinuity is identified by a high concentration of disseminated metalliferous minerals in quartz or pegmatite veins. The mining reconnaissance works in the study area and those of several authors have characterized this anomaly to a lode gold quartz or large pegmatite. The results of this study correlate with geological and tectonic data for the region marked by NE-SW Kadei tectonic line. Therefore, they confirm the reliability of a geoelectrical DC investigation method combining Resistivity and IP to the identification of ore bodies.展开更多
人体处于高压交流输电线路下方时,会产生静电感应和电磁感应。当感应电压和感应电流数值过大时,会对人体造成伤害,为此国际非电离辐射防护委员会(ICNIRP)以及IEEE规定了人体在高压输电线路不同曝露情形下的曝露场强限值。首先运用有限元...人体处于高压交流输电线路下方时,会产生静电感应和电磁感应。当感应电压和感应电流数值过大时,会对人体造成伤害,为此国际非电离辐射防护委员会(ICNIRP)以及IEEE规定了人体在高压输电线路不同曝露情形下的曝露场强限值。首先运用有限元法,考虑人体对地绝缘和人体接地2种情况,分析了高压输电线路曝露场强典型限值下人体所产生的感应电压和感应场强的大小;接着利用解析法计算了不同曝露限值下的人体感应电流、感应电荷密度以及感应电流密度;最后将计算结果与ICNIRP导则给出的曝露限值进行了比较。结果表明,人体处于职业曝露限值场强10 kV/m下,人体内部最大感应场强为2.082×10-3 kV/m,感应电流密度为0.176 m A/m2,接近或低于ICNIRP导则规定的限值范围,不会对人体造成不适感。展开更多
文摘A geophysical investigation of subsurface structures using the Syscal Junior 48 resistivity-meter was conducted in Ngoura subdivision (East Cameroon) following a combined geoelectrical direct current (DC) approach involving Resistivity and IP methods. This investigation was allowed to collect data on forty-five (45) profiling lines at three acquisition levels (AB = 100 m, MN = 10 m;AB = 200 m, MN = 20 m and AB = 500 m, MN = 50 m) and two electric panels L1 and L4, using the Schlumberger array. Processing, modeling and interpretation of data collected using the Winsev, Res2Dinv and Surfer software helped in highlighting a conductive and strongly mineralized discontinuity in granite formations, which lined up with the NE-SW Kadei tectonic line. It extends beyond 100 m depth over an average width of 600 m. The mineralization associated with this discontinuity is identified by a high concentration of disseminated metalliferous minerals in quartz or pegmatite veins. The mining reconnaissance works in the study area and those of several authors have characterized this anomaly to a lode gold quartz or large pegmatite. The results of this study correlate with geological and tectonic data for the region marked by NE-SW Kadei tectonic line. Therefore, they confirm the reliability of a geoelectrical DC investigation method combining Resistivity and IP to the identification of ore bodies.
文摘人体处于高压交流输电线路下方时,会产生静电感应和电磁感应。当感应电压和感应电流数值过大时,会对人体造成伤害,为此国际非电离辐射防护委员会(ICNIRP)以及IEEE规定了人体在高压输电线路不同曝露情形下的曝露场强限值。首先运用有限元法,考虑人体对地绝缘和人体接地2种情况,分析了高压输电线路曝露场强典型限值下人体所产生的感应电压和感应场强的大小;接着利用解析法计算了不同曝露限值下的人体感应电流、感应电荷密度以及感应电流密度;最后将计算结果与ICNIRP导则给出的曝露限值进行了比较。结果表明,人体处于职业曝露限值场强10 kV/m下,人体内部最大感应场强为2.082×10-3 kV/m,感应电流密度为0.176 m A/m2,接近或低于ICNIRP导则规定的限值范围,不会对人体造成不适感。