[论文解读] Cheap Artificial AB-Mountains, Extraction of Water and Energy from Atmosphere and Change of Regional Climate
本文提出一种低成本方法,通过使用薄膜气囊在3–5公里高空制造人工充气山峰,以诱导地形雨、提取淡水并利用湿空气上升冷却产生可再生能源。该系统可实现区域气候调控,可持续生产淡水与能源,并通过气压差和缆绳锚固实现潜在的天气控制。
Author suggests and researches a new revolutionary method for changing the climates of entire countries or portions thereof, obtaining huge amounts of cheap water and energy from the atmosphere. In this paper is presented the idea of cheap artificial inflatable mountains, which may cardinally change the climate of a large region or country. Additional benefits: The potential of tapping large amounts of fresh water and energy. The mountains are inflatable semi-cylindrical constructions from thin film (gas bags) having heights of up to 3 - 5 km. They are located perpendicular to the main wind direction. Encountering these artificial mountains, humid air (wind) rises to crest altitude, is cooled and produces rain (or rain clouds). Many natural mountains are sources of rivers, and other forms of water and power production - and artificial mountains may provide these services for entire nations in the future. The film of these gasbags is supported at altitude by small additional atmospheric overpressure and may be connected to the ground by thin cables. The author has shown (in previous works about the AB-Dome) that this closed AB-Dome allows full control of the weather inside the Dome (the day is always fine, the rain is only at night, no strong winds) and influence to given region. This is a realistic and cheap method of economical irrigation, getting energy and virtual weather control on Earth at the current time.
研究动机与目标
- 开发一种成本低廉的大规模区域气候调控方法。
- 利用人工地形从大气湿气中提取淡水并产生可再生能源。
- 在特定区域内实现可控的天气模式,例如保持持续白昼条件和夜间降雨。
- 为面临淡水与能源短缺的干旱或半干旱地区提供可扩展的解决方案。
- 证明人工山峰作为气候工程可持续基础设施的可行性。
提出的方法
- 设计由轻质薄膜制成的充气半圆柱形气囊,在3–5公里高空部署,作为人工山峰。
- 将结构垂直于盛行风向布置,以最大化空气抬升与凝结效果。
- 通过微小的内部正压维持结构完整性,并支撑高空薄膜。
- 通过细而轻便的缆绳将气囊锚定于地面,以确保稳定性和载荷分布。
- 利用地形抬升原理:当潮湿空气流经人工山峰上升时冷却并凝结,形成降水。
- 收集冷凝水,并利用下沉气流的势能发电。
实验结果
研究问题
- RQ1充气式人工山峰能否有效诱导地形降雨并增加区域降水量?
- RQ2此类结构在多大程度上可从大气湿气中提取淡水并产生可再生能源?
- RQ3是否可行通过低成本、可扩展的人工地形实现区域气候调控?
- RQ4能否控制下风区域的天气条件,例如确保白天干燥、夜间降雨?
- RQ5实现高空薄膜气囊稳定长期部署所需的结构与运行参数是什么?
主要发现
- 可使用轻质薄膜材料并辅以极小内部正压,构建高达5公里的人工AB山峰。
- 该系统可通过地形抬升产生显著降雨,模拟自然山脉对大气湿气的影响。
- 水汽冷凝与收集可行,为干旱地区提供可持续的淡水来源。
- 可从上升与下沉气流的动能中提取能量,实现可再生能源发电。
- 该结构具备调控局部天气模式的潜力,例如将降雨引导至特定时间与地点。
- 该方法经济可行且可扩展,为气候工程与资源提取提供低成本解决方案。
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