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Design of an atmospheric water generator: Harvesting water out of thin air

机译:大气喷水器的设计:从薄空气中收获水

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Water scarcity affects 1.2 billion people on a global scale, representing nearly one fifth of the human population. In some regions, current water sources are being depleted faster than they are renewed and the majority of this depletion is being used for irrigation and agricultural purposes. At any given time, the atmosphere contains 3400 trillion gallons of water vapor, which would be enough to cover the entire Earth in 1 inch of water. Herein, we describe the design of an innovative solution to water scarcity in regions with medium to high humidity ??? Atmospheric Water Generators (AWG). This device converts water vapor into liquid water and is designed for agricultural and irrigation purposes in regions where water scarcity exists. More specifically, two AWG concepts were developed by our team, one utilizing Peltier devices and the other a heat exchanger, in order to allow multiple design alternatives to be considered. The Peltier-based concept works by applying current to induce a temperature gradient in order to cool and condense the surrounding air. The heat exchanger concept works by cycling a coolant that is cooled by a lower ground temperature. Both AWG concepts were designed utilizing sustainable engineering principles to minimize energy consumption and cost (particularly when compared to AWGs currently on the market). The designs are estimated to create enough water daily to grow 2 fruit trees (1 gallon a week) at an example test condition of 60% relative humidity and 85??F.
机译:水资源稀缺影响了12亿人在全球范围内,代表人口的近五分之一。在一些地区,目前的水源比更新的速度耗尽,并且这些消耗的大部分被用于灌溉和农业目的。在任何给定的时间,大气层含有3400万亿加仑的水蒸气,这足以覆盖在100英寸的水中的整个地球。在此,我们描述了在中湿度的地区的缺水稀缺的创新解决方案的设计???大气发电机(AWG)。该装置将水蒸气转化为液态水,专为农业和灌溉目的而设计,水资源稀缺存在。更具体地说,我们的团队开发了两个AWG概念,一种利用珀耳帖装置和另一个热交换器,以允许考虑多种设计的替代方案。基于Peltier的概念通过施加电流施加温度梯度,以便冷却和冷凝周围的空气。热交换器概念通过循环通过较低地温度冷却的冷却剂而起作用。两个AWG概念都是利用可持续工程原则设计,以最大限度地减少能源消耗和成本(特别是与目前市场上的AWGS相比)。估计设计估计每天创造足够的水,以在60%相对湿度的示例测试条件下生长2棵果树(每周1加仑),85°F。

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