光谱学与光谱分析
光譜學與光譜分析
광보학여광보분석
SPECTROSCOPY AND SPECTRAL ANALYSIS
2015年
8期
2252-2256
,共5页
韦民红%童敏明%李素文%肖建于
韋民紅%童敏明%李素文%肖建于
위민홍%동민명%리소문%초건우
多轴差分吸收光谱%断层扫描%代数重建算法%烟羽
多軸差分吸收光譜%斷層掃描%代數重建算法%煙羽
다축차분흡수광보%단층소묘%대수중건산법%연우
MAX-DOAS%Tomography%ART%Smoke plume
为了实现烟羽二维空间分布的精确重建,建立了被动多轴差分吸收光谱断层扫描系统,实现了多台被动多轴差分吸收光谱系统对废气烟羽空间分布的测量。首先,介绍了多轴差分吸收光谱系统及其反演气体浓度的机理。接着,使用代数迭代算法对不同的重建模型,采用不同的扫描光路进行了重建模拟,并设计了重建程序。然后,对数值模拟仿真结果进行了分析比较。最后,搭建了多轴差分吸收光扫描系统平台,进行了外场试验。数值模拟的结果显示:M AX‐DOAS层析技术能精确的重建出烟羽模型的二维空间分布,四光源光路的重建误差约是双光源光路重建误差的三分之一,四光源重建时间约是双光源重建时间的四分之一,且双峰模型的重建误差大于单峰模型的重建误差。外场试验的结果显示:重建图像的积分数据与多轴差分吸收光谱测得的投影数据是一致的,说明重建出的烟羽空间分布符合实际情况。研究表明,数值模拟的结果与外场试验的结果具有一致性。
為瞭實現煙羽二維空間分佈的精確重建,建立瞭被動多軸差分吸收光譜斷層掃描繫統,實現瞭多檯被動多軸差分吸收光譜繫統對廢氣煙羽空間分佈的測量。首先,介紹瞭多軸差分吸收光譜繫統及其反縯氣體濃度的機理。接著,使用代數迭代算法對不同的重建模型,採用不同的掃描光路進行瞭重建模擬,併設計瞭重建程序。然後,對數值模擬倣真結果進行瞭分析比較。最後,搭建瞭多軸差分吸收光掃描繫統平檯,進行瞭外場試驗。數值模擬的結果顯示:M AX‐DOAS層析技術能精確的重建齣煙羽模型的二維空間分佈,四光源光路的重建誤差約是雙光源光路重建誤差的三分之一,四光源重建時間約是雙光源重建時間的四分之一,且雙峰模型的重建誤差大于單峰模型的重建誤差。外場試驗的結果顯示:重建圖像的積分數據與多軸差分吸收光譜測得的投影數據是一緻的,說明重建齣的煙羽空間分佈符閤實際情況。研究錶明,數值模擬的結果與外場試驗的結果具有一緻性。
위료실현연우이유공간분포적정학중건,건립료피동다축차분흡수광보단층소묘계통,실현료다태피동다축차분흡수광보계통대폐기연우공간분포적측량。수선,개소료다축차분흡수광보계통급기반연기체농도적궤리。접착,사용대수질대산법대불동적중건모형,채용불동적소묘광로진행료중건모의,병설계료중건정서。연후,대수치모의방진결과진행료분석비교。최후,탑건료다축차분흡수광소묘계통평태,진행료외장시험。수치모의적결과현시:M AX‐DOAS층석기술능정학적중건출연우모형적이유공간분포,사광원광로적중건오차약시쌍광원광로중건오차적삼분지일,사광원중건시간약시쌍광원중건시간적사분지일,차쌍봉모형적중건오차대우단봉모형적중건오차。외장시험적결과현시:중건도상적적분수거여다축차분흡수광보측득적투영수거시일치적,설명중건출적연우공간분포부합실제정황。연구표명,수치모의적결과여외장시험적결과구유일치성。
In order to achieve precisely two‐dimensional spatial distribution reconstruction of smoke plume ,passive MAX‐DOAS tomography is established ,the measurement of the spatial distribution of the exhaust plume is implemented by more passive multi‐axis differential absorption spectrum system .First ,the multi‐axis differential absorption spectrum system and its mecha‐nism of inverse gas concentration are introduced in the paper .Then ,algebra iterative algorithm is adopted to extract the informa‐tion of the trace gas concentration in reconstruction simulation with different models and different scanning optical path ,and the reconstruction program is designed .Then ,the numerical simulation results are compared .Finally ,a platform of multi‐axis dif‐ferential absorption optical tomography system is set up ,a field campaign was carried out .The numerical simulation results show that the MAX‐DOAS tomography can accurately reconstruct two‐dimensional spatial distribution of plume model ,the re‐construction error of MAX‐DOAS tomography with four light sources is about a third of the reconstruction error with double light sources ,moreover ,the reconstruction time is about a quarter of the reconstruction time of double light sources ,and the re‐construction error of the twin peaks model is greater than that of the one peak model .Field test results show that the integral da‐ta of reconstruction image is consistent with the measured projection data of multi‐axis differential absorption spectrum ,the spa‐tial distribution reconstruction of plume is in line with the actual situation .Studies have shown that the result of numerical simu‐lation and field test results have consistency .