水利学报
水利學報
수리학보
2013年
2期
212-220
,共9页
ESSI-2模型%农药%临沂流域
ESSI-2模型%農藥%臨沂流域
ESSI-2모형%농약%림기류역
distributed non-point pesticide pollution model%pesticide%Linyi watershed
在分布式水文模型ESSI基础上,以日为时间尺度,以DEM栅格单元为基本模拟单元,构建了区域尺度的长时期连续模拟的分布式非点源有毒污染物模型ESSI-2.该模型具有产流、汇流、产沙、汇沙、有毒污染物分解、输移及汇聚等完整的模拟功能.模型中根据降雨特征和下垫面特征之间的动态对比关系动态选取产流方式;同时采用RUSLE模型计算泥沙剥蚀量,并根据产沙量与径流泥沙输移能力的对比计算泥沙输出量.该模型充分描述了农药的降解、吸附、下渗、输移、汇聚等过程,可以对农药的输移过程和时空分布进行模拟分析.最后,以临沂流域为研究区,对模型进行了案例分析.计算结果表明,该模型适用于临沂流域,能够分析其土壤侵蚀及农药输移过程.
在分佈式水文模型ESSI基礎上,以日為時間呎度,以DEM柵格單元為基本模擬單元,構建瞭區域呎度的長時期連續模擬的分佈式非點源有毒汙染物模型ESSI-2.該模型具有產流、彙流、產沙、彙沙、有毒汙染物分解、輸移及彙聚等完整的模擬功能.模型中根據降雨特徵和下墊麵特徵之間的動態對比關繫動態選取產流方式;同時採用RUSLE模型計算泥沙剝蝕量,併根據產沙量與徑流泥沙輸移能力的對比計算泥沙輸齣量.該模型充分描述瞭農藥的降解、吸附、下滲、輸移、彙聚等過程,可以對農藥的輸移過程和時空分佈進行模擬分析.最後,以臨沂流域為研究區,對模型進行瞭案例分析.計算結果錶明,該模型適用于臨沂流域,能夠分析其土壤侵蝕及農藥輸移過程.
재분포식수문모형ESSI기출상,이일위시간척도,이DEM책격단원위기본모의단원,구건료구역척도적장시기련속모의적분포식비점원유독오염물모형ESSI-2.해모형구유산류、회류、산사、회사、유독오염물분해、수이급회취등완정적모의공능.모형중근거강우특정화하점면특정지간적동태대비관계동태선취산류방식;동시채용RUSLE모형계산니사박식량,병근거산사량여경류니사수이능력적대비계산니사수출량.해모형충분묘술료농약적강해、흡부、하삼、수이、회취등과정,가이대농약적수이과정화시공분포진행모의분석.최후,이림기류역위연구구,대모형진행료안례분석.계산결과표명,해모형괄용우림기류역,능구분석기토양침식급농약수이과정.
Based on the distributed hydrologic model ESSI,a distributed non-point pesticide pollution mod?el, ESSI-2, has been developed by adding sediment component and pesticide-leaching component. ESSI-2 model takes each regular grid of the DEM dataset as a simulating unit and daily period as time step. ES?SI-2 model is able to describe the processes of rainfall-runoff, soil erosion, sediment as well as pesti?cide-leaching,and it can be used to estimate the long-term water resources. Dynamic runoff mechanism is used in the model,taking into account the runoff as a dynamic process that depends on weather and sub?surface conditions. RUSLE model is used to calculate the soil detachment and sediment yield depending on the soil detachment and sediment transport capacity. ESSI-2 model describes the processes of degradation of pesticides, pesticide absorption, pesticide infiltration, as well as pesticide-leaching, so that it can be used to simulate pesticide-leaching and research on temporal and spatial distribution of pesticide. We ap?plied our model to Linyi watershed for simulation and validation. The results show that the model is applica?ble in Linyi watershed and can be used to research soil erosion and pesticide-leaching.