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    • 1. 发明申请
    • FLUID PROPERTY REGULATOR
    • WO2008154103A3
    • 2008-12-18
    • PCT/US2008/063345
    • 2008-05-09
    • CANNON, David John
    • CANNON, David John
    • F03B13/00G05D7/00A01G15/00
    • A self-sufficient material property profile regulation method and system, for adjusting fluid property profiles such as in an ocean of multiple property layers, is described. Using this Fluid Property Regulator, the property profiles of a non-enclosed material, including property profiles related to material density, chemical characteristics and space-time position, are affected due to motion of the material relative to a body in the flow stream. The state of other matter with which the initial material then makes direct or indirect contact is also affected. For example, in the case of a liquid such as an ocean current, the temperature, salinity, nutrient content and other properties may be destratified (i.e. layers being combined) as the system lifts large quantities of deep water and combines this material with surface water in the downstream far-field region of the system. The resulting regulation of such ocean water property profiles may then also indirectly affect the properties of the atmosphere above the ocean so that the system can be said to affect planetary properties both oceanic and atmospheric. Rather than merely discharging a pumped material, such as cold water that might quickly re-submerge, the system regulates lasting property profiles. The new Fluid Property Regulator system described in this invention regulates material properties to produce desired outcomes such as increased food and energy production as well as to prevent undesirable outcomes such as hurricanes, elevated planetary temperatures, decreased planetary ice sheet size, raised sea level and glacial freshwater incursions that can halt important major currents.
    • 2. 发明申请
    • FLUID PROPERTY REGULATOR
    • 流体物业监管机构
    • WO2008154103A2
    • 2008-12-18
    • PCT/US2008063345
    • 2008-05-09
    • CANNON DAVID JOHN
    • CANNON DAVID JOHN
    • F03B13/00A01G15/00G05D7/00
    • A01G15/00F03G7/05Y02E10/34
    • A self-sufficient material property profile regulation method and system, for adjusting fluid property profiles such as in an ocean of multiple property layers, is described. Using this Fluid Property Regulator, the property profiles of a non-enclosed material, including property profiles related to material density, chemical characteristics and space-time position, are affected due to motion of the material relative to a body in the flow stream. The state of other matter with which the initial material then makes direct or indirect contact is also affected. For example, in the case of a liquid such as an ocean current, the temperature, salinity, nutrient content and other properties may be destratified (i.e. layers being combined) as the system lifts large quantities of deep water and combines this material with surface water in the downstream far-field region of the system. The resulting regulation of such ocean water property profiles may then also indirectly affect the properties of the atmosphere above the ocean so that the system can be said to affect planetary properties both oceanic and atmospheric. Rather than merely discharging a pumped material, such as cold water that might quickly re-submerge, the system regulates lasting property profiles. The new Fluid Property Regulator system described in this invention regulates material properties to produce desired outcomes such as increased food and energy production as well as to prevent undesirable outcomes such as hurricanes, elevated planetary temperatures, decreased planetary ice sheet size, raised sea level and glacial freshwater incursions that can halt important major currents.
    • 描述了用于调节诸如在多个属性层的海洋中的流体特性曲线的自足的材料特性曲线调节方法和系统。 使用该流体特性调节器,由于材料相对于流体中的物体的运动,非封闭材料的性质特征(包括与材料密度,化学特性和时空位置有关的特性曲线)受到影响。 初始材料随之进行直接或间接接触的其他物质的状态也受到影响。 例如,在诸如海洋电流的液体的情况下,随着系统升高大量深水并将该材料与地表水结合,温度,盐度,营养成分和其它性质可能被破坏(即,组合的层) 在系统的下游远场区域。 因此,对海洋水质特征的调控也可能间接地影响海洋以上大气层的性质,从而使该系统能够影响海洋和大气的行星性质。 不仅仅是排出可能快速重新浸没的抽水材料,例如冷水,系统调节持久的性能特征。 本发明中描述的新的流体性质调节器系统调节材料性质以产生期望的结果,例如增加的食物和能量产生以及防止不期望的结果,例如飓风,升高的行星温度,降低的行星冰盖尺寸,升高的海平面和冰川 淡水入侵可以阻止重要的大流域。