高电压技术
高電壓技術
고전압기술
HIGH VOLTAGE ENGINEERING
2012年
2期
414-420
,共7页
魏敏敏%曹保江%任志超%邱璆%吴广宁
魏敏敏%曹保江%任誌超%邱璆%吳廣寧
위민민%조보강%임지초%구구%오엄저
直流接地极%地形结构%镜像法%行波法%电流密度%散流特性
直流接地極%地形結構%鏡像法%行波法%電流密度%散流特性
직류접지겁%지형결구%경상법%행파법%전류밀도%산류특성
DC grounding electrode%terrain structure%image method%traveling wave method%current density%divergence character
直流接地极注入电流会对周边电力设施产生不利影响,而地形结构是特高压直流地电流散流特性的重要影响因素。为此,根据接地极极址的不同情况,分别建立了水平双层及复合分层的地形结构。首先,由镜像法和行波法消除了土层间的界面效应,进而推导出一种求解地中电流密度的简易算式,形式简单,易于大规模编程计算。其次,通过软件建模仿真,验证了提出的算式的准确性及可行性。最后,依托工程案例,研究了地形结构及参数对直流地电流散流特性的影响规律。提出的算式可用于特高压直流地电场的计算,对于深层土壤电阻率的测量、交流系统及埋地设施的选址均有一定的指导意义。
直流接地極註入電流會對週邊電力設施產生不利影響,而地形結構是特高壓直流地電流散流特性的重要影響因素。為此,根據接地極極阯的不同情況,分彆建立瞭水平雙層及複閤分層的地形結構。首先,由鏡像法和行波法消除瞭土層間的界麵效應,進而推導齣一種求解地中電流密度的簡易算式,形式簡單,易于大規模編程計算。其次,通過軟件建模倣真,驗證瞭提齣的算式的準確性及可行性。最後,依託工程案例,研究瞭地形結構及參數對直流地電流散流特性的影響規律。提齣的算式可用于特高壓直流地電場的計算,對于深層土壤電阻率的測量、交流繫統及埋地設施的選阯均有一定的指導意義。
직류접지겁주입전류회대주변전력설시산생불리영향,이지형결구시특고압직류지전류산류특성적중요영향인소。위차,근거접지겁겁지적불동정황,분별건립료수평쌍층급복합분층적지형결구。수선,유경상법화행파법소제료토층간적계면효응,진이추도출일충구해지중전류밀도적간역산식,형식간단,역우대규모편정계산。기차,통과연건건모방진,험증료제출적산식적준학성급가행성。최후,의탁공정안례,연구료지형결구급삼수대직류지전류산류특성적영향규률。제출적산식가용우특고압직류지전장적계산,대우심층토양전조솔적측량、교류계통급매지설시적선지균유일정적지도의의。
Current from the DC grounding electrode has a negative effect on nearby electric power facilities,and the terrain structure is a predominate factor affecting the current distribution of the grounding current.We established a complicated soil structure and a horizontal 2-layer terrain structure according to the actual DC transmission grounding situation.First,the influence produced by boundary surface was eliminated by an image method and a traveling wave method in order to homogenize the terrain structures;then,an easy-to-use formula for calculating the current density was presented which was simple and good for large-scale programming calculation;thirdly,the correctness and feasibility of the formula were verified by the software simulation;finally,the relation between divergence characteristics of HVDC grounding current and terrain structure were proposed according to project cases.The obtained formula can be used for calculating the grounding electric field of HVDC system,guiding the measurement of depths soil resistivity,and directing the selection of AC system site and buried establishment location.