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WHATCH’EM: A Weather-Driven Energy Balance Model for Determining Water Height and Temperature in Container Habitats for Aedes aegypti

机译:WATCH’EM:一种由天气驱动的能量平衡模型用于确定埃及伊蚊容器栖息地的水高和温度

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摘要

The mosquito virus vector Aedes (Ae.) aegypti exploits a wide range of containers as sites for egg laying and development of the immature life stages, yet the approaches for modeling meteorologically sensitive container water dynamics have been limited. This study introduces the Water Height and Temperature in Container Habitats Energy Model (WHATCH’EM), a state-of-the-science, physically based energy balance model of water height and temperature in containers that may serve as development sites for mosquitoes. The authors employ WHATCH’EM to model container water dynamics in three cities along a climatic gradient in México ranging from sea level, where Ae. aegypti is highly abundant, to ~2100 m, where Ae. aegypti is rarely found. When compared with measurements from a 1-month field experiment in two of these cities during summer 2013, WHATCH’EM realistically simulates the daily mean and range of water temperature for a variety of containers. To examine container dynamics for an entire season, WHATCH’EM is also driven with field-derived meteorological data from May to September 2011 and evaluated for three commonly encountered container types. WHATCH’EM simulates the highly nonlinear manner in which air temperature, humidity, rainfall, clouds, and container characteristics (shape, size, and color) determine water temperature and height. Sunlight exposure, modulated by clouds and shading from nearby objects, plays a first-order role. In general, simulated water temperatures are higher for containers that are larger, darker, and receive more sunlight. WHATCH’EM simulations will be helpful in understanding the limiting meteorological and container-related factors for proliferation of Ae. aegypti and may be useful for informing weather-driven early warning systems for viruses transmitted by Ae. aegypti.
机译:蚊媒埃及伊蚊(Aedes(ae。))利用各种各样的容器作为产卵和不成熟生命阶段发展的场所,但是对气象敏感的容器水动力学建模的方法受到限制。这项研究介绍了容器栖息地能量模型中的水高和温度(WHATCH’EM),这是一种基于物理的,基于科学原理的容器中水高和温度的能量平衡模型,可以用作蚊子的发育场所。作者利用WHATCH’EM对墨西哥三个城市的集装箱水动力学模型进行了建模,这些城市的气候梯度从海平面到Ae。 aegypti高度丰富,至Ae约2100 m。埃及人很少被发现。与2013年夏季在其中两个城市进行的为期1个月的野外实验得出的测量结果相比,WHATCH’EM可以真实地模拟各种容器的每日平均温度和水温范围。为了检查整个季节的集装箱动态,WHATCH’EM还利用2011年5月至2011年9月的野外气象数据驱动,并评估了三种常见的集装箱类型。 WHATCH’EM模拟高度非线性的方式,其中气温,湿度,降雨,云层和容器特征(形状,大小和颜色)决定水温和高度。受云层和附近物体阴影影响的日光照射起着第一级的作用。通常,对于较大,较暗且接受更多阳光的容器,模拟水温较高。 WHATCH的模拟将有助于理解气象和容器相关的限制Ae扩散的因素。 aegypti,对于通知由天气驱动的Ae传播的病毒预警系统可能很有用。埃及。

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