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202 Living Energies For many people, dams or rivers provide the main source of water and certain simple measures can be taken to improve the quality of the water obtained from them. Providing the surrounding soil is porous, a hole of about 1,000-2,000 litres in volume should be dug, about 5-10 metres from the bank of the dam or river. If possible the depth should be equal to the depth of the latter. The tops of such wells should be above the highest water level of the dam or river to prevent flood con- tamination. If the soil is sufficiently permeable, water will percolate through the intervening soil and into the newly excavated well. Depending on the stability and load-bearing capacity of the soil (a structural engineer should be consulted it there is any doubt), a small concrete, perimeter footing should be placed at a safe distance from the rim of the well. When the concrete has cured and set firmly, then a minimum of one course of blocks should be laid to prevent the entry of any surface water. The well should then be totally enclosed and sealed with a well-insulated timber and sheet-metal roof, or a concrete slab, and pro- vided with an access hatch to service the pump and/or suction pipe and foot-valve. The pump should preferably be located out- side the well-space to avoid any possible oil pollution. The reason for the 1,000-2,000 litre storage capacity is that it may only be possi- ble to pump water intermittently, because the rate of replenishment from the main water source will depend on the permeability of the soil. If the soil surrounding a dam or a river is impervious, then it would be necessary to excavate a channel about 600mm wide, to the full depth of the well, between the well and where the water percolates freely, or the main water body. The lower part of this and the bottom of the shaft itself should be filled with clean, quartz sand to a depth of about 600mm and the upper part back-filled with the excavated material and compacted. As the water percolates through either the exist- ing soil or the sand, most suspended matter will be filtered out. Furthermore, because the water reaches the well from the lowest level of the river or dam, it will be obtained at the coolest possible temperature, and less likely to harbour aggressively harmful, pathogenic bacteria, which tend to populate the upper, warmer and more highly-oxygenated strata of the main water body. In the early 1970s I built such a well on my own property at Montville in Queensland which produced an extremely clear, clean, odourless and good tasting water. The people who have since bought the property report that the quality and quantity of water has not changed. It is advisable to have such water tested for quality, purity and any possible contaminants, pesticides, etc., by the compe- tent authorities. River water is generally far richer than tank water (rainwater) in terms of its mineral, salt and trace-element content. In most cases it will be necessary to supplement the min- eral content of rainwater, if this is the only source of drinking water, to prevent the extraction of minerals and salts from the drinker's body. Here the suspension of an artificial-fibre sack (rot-proof) containing the dust of crushed basalt or other igneous rock used for road building (commonly known as 'crusher dust' - see chapter 19) would do much to enhance the quality of the tank water, because it will absorb those elements it requires to become mature. However, before adding any crusher dust to the water, it would be again advisable to test the resulting change in the quality by analysing the difference between two sam- ples of tank water, one with crusher-dust added and one without, as a control. Both samples should then be placed in a cool, dark place and left for at least a week before an analysis of the mineral content and bacterial purity is carried out. This should be done by a suitably qualified specialist. These ideas about water will be regarded by many as controversial, but let us hope they have given you much food for thought and action. Water should never be viewed or treated as an inert and lifeless liquid for, in so doing we debase ourselves, and the rest of life on this planet, ignorance of such magni- tude will demand of us an awesome penalty.PDF Image | Viktor Schauberger Work Explained
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