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首页> 外文期刊>Journal of hydrometeorology >Incorporating an Urban Irrigation Module into the Noah Land Surface Model Coupled with an Urban Canopy Model
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Incorporating an Urban Irrigation Module into the Noah Land Surface Model Coupled with an Urban Canopy Model

机译:将城市灌溉模块结合到Noah地表模型和城市林冠模型中

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The current research examines the influence of irrigation on urban hydrological cycles through the development of an irrigation scheme within the Noah land surface model (LSM)-Single Layer Urban Canopy Model (SLUCM) system. The model is run at a 30-m resolution for a 2-yr period over a 49 km~2 urban domain in the Los Angeles metropolitan area.Asensitivity analysis indicates significant sensitivity relative to both the amount and timing of irrigation on diurnal and monthly energy budgets, hydrological fluxes, and state variables. Monthly residential water use data and three estimates of outdoor water consumption are used to calibrate the developed irrigation scheme. Model performance is evaluated using a previously developed MODIS-Landsat evapotranspiration (ET) and Landsat land surface temperature (LST) products as well as hourly ET observations through the California Irrigation Management Information System (CIMIS). Results show that the Noah LSM-SLUCM realistically simulates the diurnal and seasonal variations of ET when the irrigation module is incorporated. However, without irrigation, the model produces large biases in ET simulations. The ET errors for the nonirrigation simulations are-56 and-90mmmonth~(-1) for July 2003 and 2004, respectively, while these values decline to-6 and-11mmmonth~(-1) over the same 2 months when the proposed irrigation scheme is adopted. Results show that the irrigation-induced increase in latent heat flux leads to a decrease in LST of about 2℃ in urban parks. The developed modeling framework can be utilized for a number of applications, ranging from outdoor water use estimation to climate change impact assessments.
机译:当前的研究通过在诺亚陆面模型(LSM)-单层城市冠层模型(SLUCM)系统内制定灌溉计划来研究灌溉对城市水文循环的影响。该模型在洛杉矶都会区49 km〜2的城市区域中以30 m分辨率运行了2年,敏感性分析表明,灌溉对昼夜和每月能量的灌溉量和灌溉时间都具有显着的敏感性预算,水文通量和状态变量。每月的住宅用水量数据和三个室外用水量估算值用于校准已开发的灌溉计划。使用先前开发的MODIS-Landsat蒸散量(ET)和Landsat地表温度(LST)产品,以及通过加利福尼亚灌溉管理信息系统(CIMIS)进行的每小时ET观测,来评估模型性能。结果表明,结合灌溉模块后,Noah LSM-SLUCM可以真实地模拟ET的昼夜变化。但是,如果不进行灌溉,该模型会在ET模拟中产生较大的偏差。 2003年7月和2004年非灌溉模拟的ET误差分别为-56和-90mmmonth〜(-1),而在拟议灌溉的相同两个月内,这些值下降到-6和-11mmmonth〜(-1)。方案被采用。结果表明,灌溉引起的潜热通量增加导致城市公园的LST降低约2℃。开发的建模框架可用于许多应用,从室外用水估计到气候变化影响评估。

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