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CONTINUOUS-FLOW SOLAR ULTRAVIOLET DISINFECTION SYSTEM FOR DRINKING WATER

机译:连续流太阳能紫外线消毒系统

摘要

Potable drinking water is a scarce resource in many parts of developing countries, especially rural areas. Due to limited financial means of these countries, low cost point-of-use systems are thought to be appropriate technology to treat water. Systems using solar ultraviolet (UV) radiation could be successful since many vulnerable countries are located where solar radiation is intense and abundant throughout the year. The goal of this disclosure is to develop a simple and low cost point-of-use solar UV reactor to disinfect water. In this disclosure wavelength-dependent microbial dose-response behavior was investigated using surrogates to pathogenic microbes. A solar radiation prediction method based on the SMARTS model was used to predict solar UV intensity as function of geographic location and time. A numerical modeling procedure using the discrete ordinate (DO) model and CFD software (FLUENT) was used to simulate UV dose (distribution) delivery to microorganisms. Then, the dose distribution was combined with the dose response behavior using a segregated flow model to predict microbial inactivation by the reactor. A prototype was produced and tested to validate the numerical modeling procedure. The inactivation results from the prototype were in agreement with numerical inactivation prediction. The modeling procedure permits parameters such as reactor dimensions and material properties to be varied to meet a treatment goal.
机译:在发展中国家的许多地区,特别是农村地区,饮用水是一种稀缺资源。由于这些国家的财政手段有限,低成本的使用点系统被认为是处理水的适当技术。使用太阳紫外线(UV)辐射的系统可能会成功,因为许多易受伤害的国家/地区都位于全年太阳辐射密集且丰富的地方。本公开的目的是开发一种简单且低成本的使用点的太阳能紫外线反应器来对水进行消毒。在本公开中,使用对病原微生物的替代物研究了波长依赖性微生物的剂量反应行为。使用基于SMARTS模型的太阳辐射预测方法来预测太阳紫外线强度与地理位置和时间的关系。使用离散纵坐标(DO)模型和CFD软件(FLUENT)进行的数值建模程序用于模拟向微生物的紫外线剂量(分布)传递。然后,使用分离的流模型将剂量分布与剂量响应行为结合起来,以预测反应器对微生物的灭活作用。生产了原型并进行了测试,以验证数值建模程序。原型的失活结果与数值失活预测相符。建模过程允许改变诸如反应器尺寸和材料性质的参数以满足治疗目标。

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