光谱学与光谱分析
光譜學與光譜分析
광보학여광보분석
SPECTROSCOPY AND SPECTRAL ANALYSIS
2015年
6期
1474-1478
,共5页
赵金翠%袁萍%岑建勇%李亚珺%王杰
趙金翠%袁萍%岑建勇%李亞珺%王傑
조금취%원평%잠건용%리아군%왕걸
闪电光谱%电磁功率%通道光亮度%电导率
閃電光譜%電磁功率%通道光亮度%電導率
섬전광보%전자공솔%통도광량도%전도솔
Lightning spectra%Electromagnetic power%Luminance of the channel%Conductivity
利用无狭缝摄谱仪获得的地闪回击光谱,结合同步电场资料,计算了一次闪电放电过程中的通道温度、电导率、回击电流峰值、通道光亮度和电磁功率峰值等参数,均在文献报道的合理范围内。并由此讨论了回击前截止时间、回击通道光亮度及电磁功率峰值之间的相关性,研究了放电通道的电导率、电流和电磁功率之间的变化关系。结果表明:回击前截止时间越长,回击过程中所中和的电荷越多,形成的电流越大,辐射出的电磁能量越大。当通道电导率变大,同时电场变化峰值也增大时,通道内电流变大,回击过程中辐射出的电磁功率也变大。这方面的工作为计算闪电放电过程中产生的光学能量和电磁能量提供一定的参考依据。
利用無狹縫攝譜儀穫得的地閃迴擊光譜,結閤同步電場資料,計算瞭一次閃電放電過程中的通道溫度、電導率、迴擊電流峰值、通道光亮度和電磁功率峰值等參數,均在文獻報道的閤理範圍內。併由此討論瞭迴擊前截止時間、迴擊通道光亮度及電磁功率峰值之間的相關性,研究瞭放電通道的電導率、電流和電磁功率之間的變化關繫。結果錶明:迴擊前截止時間越長,迴擊過程中所中和的電荷越多,形成的電流越大,輻射齣的電磁能量越大。噹通道電導率變大,同時電場變化峰值也增大時,通道內電流變大,迴擊過程中輻射齣的電磁功率也變大。這方麵的工作為計算閃電放電過程中產生的光學能量和電磁能量提供一定的參攷依據。
이용무협봉섭보의획득적지섬회격광보,결합동보전장자료,계산료일차섬전방전과정중적통도온도、전도솔、회격전류봉치、통도광량도화전자공솔봉치등삼수,균재문헌보도적합리범위내。병유차토론료회격전절지시간、회격통도광량도급전자공솔봉치지간적상관성,연구료방전통도적전도솔、전류화전자공솔지간적변화관계。결과표명:회격전절지시간월장,회격과정중소중화적전하월다,형성적전류월대,복사출적전자능량월대。당통도전도솔변대,동시전장변화봉치야증대시,통도내전류변대,회격과정중복사출적전자공솔야변대。저방면적공작위계산섬전방전과정중산생적광학능량화전자능량제공일정적삼고의거。
Combining the spectra of could‐to‐ground lightning discharge processes obtained by a slit‐less spec‐trograph with synchronous electric field information ,the temperature ,the conductivity ,the current peak , electromagnetic power peak and the luminance of the discharge channel are calculated .The values are in a nor‐mal range reported by references .The correlation among cut‐off time before a subsequent return stroke ,the luminance and electromagnetic power peak of the channel is discussed .The change trends of the conductivity , the current peak and electromagnetic power peak are also investigated .The results show when cut‐off time is long ,neutralized charges will grow ,the current will rise and electromagnetic power radiated from the channel will increase .When the conductivity and the peak of the electric field change increase simultaneously ,the cur‐rent in the channel will rise and electromagnetic power radiated from the channel will be greater .This work will provide some references for calculating optical and electromagnetic energy radiated by lightning discharge processes .