光谱学与光谱分析
光譜學與光譜分析
광보학여광보분석
SPECTROSCOPY AND SPECTRAL ANALYSIS
2013年
12期
3298-3302
,共5页
徐鹏%顾晓鹤%孟鲁闽%邱贺%王慧芳
徐鵬%顧曉鶴%孟魯閩%邱賀%王慧芳
서붕%고효학%맹로민%구하%왕혜방
水稻%洪涝胁迫%光谱分析%红边特征%叶面积指数
水稻%洪澇脅迫%光譜分析%紅邊特徵%葉麵積指數
수도%홍로협박%광보분석%홍변특정%협면적지수
Rice%Flood and waterlogging stress%Spectral analysis%Red edge characteristic%Leaf area index
通过水稻淹水实验模拟洪涝胁迫状态,分析不同生育期、不同洪涝胁迫强度下的水稻叶面积指数变化及其冠层高光谱响应规律,建立洪涝胁迫下水稻叶面积指数(LAI)的估测模型。结果表明,分蘖期、拔节期、抽穗期水稻L A I均随淹水深度的增加而降低;水稻冠层680~760 nm光谱的一阶微分具有“双峰”现象,主峰位于724~737 nm ,701和718 nm有次峰出现,并随淹水深度的增加出现“三峰”;冠层红边位置在各个生育期出现“蓝移”,红边幅值、红边面积在分蘖期、拔节期、灌浆期均呈现“蓝移”,在抽穗期出现“红移”;生育前期水稻LAI与光谱特征参量存在显著相关,生育后期相关性不显著;最后以 Dλ737/Dλ718光谱参量建立了水稻生育前期的LAI估测模型。表明在洪涝胁迫下,水稻LAI的变化幅度直接反映胁迫强度的大小,估测模型LAI=3.138(Dλ737/Dλ718)-0.806可用于估测洪涝胁迫不同强度下的水稻叶面积指数。
通過水稻淹水實驗模擬洪澇脅迫狀態,分析不同生育期、不同洪澇脅迫彊度下的水稻葉麵積指數變化及其冠層高光譜響應規律,建立洪澇脅迫下水稻葉麵積指數(LAI)的估測模型。結果錶明,分蘗期、拔節期、抽穗期水稻L A I均隨淹水深度的增加而降低;水稻冠層680~760 nm光譜的一階微分具有“雙峰”現象,主峰位于724~737 nm ,701和718 nm有次峰齣現,併隨淹水深度的增加齣現“三峰”;冠層紅邊位置在各箇生育期齣現“藍移”,紅邊幅值、紅邊麵積在分蘗期、拔節期、灌漿期均呈現“藍移”,在抽穗期齣現“紅移”;生育前期水稻LAI與光譜特徵參量存在顯著相關,生育後期相關性不顯著;最後以 Dλ737/Dλ718光譜參量建立瞭水稻生育前期的LAI估測模型。錶明在洪澇脅迫下,水稻LAI的變化幅度直接反映脅迫彊度的大小,估測模型LAI=3.138(Dλ737/Dλ718)-0.806可用于估測洪澇脅迫不同彊度下的水稻葉麵積指數。
통과수도엄수실험모의홍로협박상태,분석불동생육기、불동홍로협박강도하적수도협면적지수변화급기관층고광보향응규률,건립홍로협박하수도협면적지수(LAI)적고측모형。결과표명,분얼기、발절기、추수기수도L A I균수엄수심도적증가이강저;수도관층680~760 nm광보적일계미분구유“쌍봉”현상,주봉위우724~737 nm ,701화718 nm유차봉출현,병수엄수심도적증가출현“삼봉”;관층홍변위치재각개생육기출현“람이”,홍변폭치、홍변면적재분얼기、발절기、관장기균정현“람이”,재추수기출현“홍이”;생육전기수도LAI여광보특정삼량존재현저상관,생육후기상관성불현저;최후이 Dλ737/Dλ718광보삼량건립료수도생육전기적LAI고측모형。표명재홍로협박하,수도LAI적변화폭도직접반영협박강도적대소,고측모형LAI=3.138(Dλ737/Dλ718)-0.806가용우고측홍로협박불동강도하적수도협면적지수。
In order to provide the foundational theoretical support for flood loss estimation of rice with RS ,the change of leaf ar-ea index (LAI) and canopy spectral response during four developmental stages and three waterlogging depths were studied ,and the LAI estimation model was established with spectra characteristics parameter using regression analysis method .The results show that LAI value decreases as water depth increases in tillering ,jointing and heading stages ,and LAI value under complete submergence decreased by 36.36% than CK in jointing stages .“Double-Peak”presented in the canopy first derivative spectra of 680~760 nm where the red edge parameters existed ,and the main peak is located in the 724~737 nm with 701 and 718 nm ex-hibiting secondary peak .With water depth increasing ,“Triple-Peak” emerges especially .The red edge position moves to long-wavelength direction in each developmental stage .Blue shift of red edge amplitude and red edge area was detected in tillering , jointing and filling stages ,while red shift appeared in heading stage .The relationship between spectra characteristics parameters and LAI were investigated during 4 growth stages ,results were not consistently significant at any wavelengths ,and the leaf area indices were significantly correlative to the spectra parameters before heading stage ,so the spectra parameters before heading stage can be used to estimate the leaf area indices ,and a regression model based on parameter Dλ737/Dλ718 was recommended . Therefore the variation range of LAI for rice could response to the stress intensity directly ,and the regression model LAI=3.138(Dλ737/Dλ718 )-0.806 can precisely estimate the leaf area index under flooding and waterlogging stress .