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Dolor neuropático - Artículos - IntraMed It will be apparent that the present invention provides an efficient power generator unit with improved hydrodynamic, generator, bearing and blade design features resulting in a highly efficient and non-complex (from the perspective of manufacture, maintenance, and operation) design suitable for shallow river applications as well as deep ocean current locations and is environmentally friendly. Yet a further object according to an embodiment of the invention is to provide a hydro turbine generator including an angular-flux magnetic generator which provides a radial and/or axial bearing function to support at least a portion of a radial and/or an axial 10 bearing load.

In a variation, there is no central hole, which permits a smaller bearing configuration. A further object according to an embodiment of the invention is to provide a hydro 5 turbine generator including a radial-flux magnetic generator which provides at least a radial bearing function to support at least a portion of a radial bearing load. 39 according to an embodiment of the invention. 1 is a plan cross-section view of a unidirectional turbine with diffuser according to the invention. 15 FIG. 27 is a rear elevation view of the diffuser duct with an oblique face in a unidirectional turbine according to the invention. 25 FIG. 17 is a rear elevation view of the diffuser duct with lateral intake hoods and vents in a unidirectional turbine according to the invention. FIG. 19 is an isometric view of the diffuser duct with aft diffusion cut-outs in a 30 unidirectional turbine according to the invention.

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5 FIG. 22 is a rear elevation view of the diffuser duct with aft diffusion cut-outs in a unidirectional turbine according to the invention. FIG. 37 is a side elevation view of the exemplary hydro turbine blade shown in FIG. Dolor muscular generalizado y cansancio . 25 FIG. 46 is a cross-sectional schematic view of a hydro turbine generator with a magnetic generator and bearing, according to an embodiment of the present invention.

FIG. 2 is a cross-sectional view of the diffuser duct curvature in a unidirectional 25 turbine according to the invention. FIG. 24 is an isometric view of the diffuser duct with an oblique face in a 10 unidirectional turbine according to the invention. 30 according to an embodiment of the invention. 15 FIG. 12 is a rear elevation view of the diffuser duct with a circular inlet and an oblong outlet in a unidirectional turbine according to the invention. FIG. 10 is a side elevation view of the diffuser duct with a circular inlet and an oblong outlet in a unidirectional turbine according to the invention. 49 is a cross-sectional view of a hydro turbine hydrodynamic bearing according to an optional embodiment of the present invention. FIG. 48 is a cross-sectional view of a hydro turbine anti-friction bearing according 30 to a further optional embodiment of the invention. Remedios caseros para el dolor en las articulaciones . FIG. 11 is a plan view of the diffuser duct with a circular inlet and an oblong outlet in a unidirectional turbine according to the invention.

5 FIG. 36 is a front view of the exemplary hydro turbine blade shown in FIG. Design characteristics of the 25 duct 40 have been determined and are herein disclosed which exhibit optimal flow and therefore power generation characteristics. The optimal range of the ratio of the cross sectional outlet area to the inlet area (Acutiet/Ain 1 e,) of the duct 40 has been found to be between 1.1 and 2.1, according to a preferred embodiment of the invention. 1, a plan elevation cross-sectional view of the preferred embodiment of the invention is shown. FIG. 33 is a side elevation view of the exemplary hydro turbine blade shown in FIG.

FIG. 13 is an isometric view of the diffuser duct with lateral intake hoods and vents in a unidirectional turbine according to the invention. 34 is a perspective view of a hydro turbine blade with a raked tip section, according to an embodiment of the present invention. FIG. 45 is a rear view of an exemplary hydro turbine blade comprising a rearward biased tip taper, according to an embodiment of the invention. 34 according to an embodiment of the invention. A further object of the present invention according to one embodiment is to provide a slope or flare to the interior surface of the diffuser which improves flow characteristics and therefore perfonnance. More particularly, the present invention relates to hydro turbines adapted for use in unidirectional water flows and having enhanced 15 outer duct arrangements, turbine blade designs, and magnetic generator configurations, and an arrangement for connecting such turbines to an electrical distribution system.

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In particular, underwater hydro turbines have been devised for use in unidirectional and bidirectional water flow applications, such as in river and ocean currents and tidal water flows. The unidirectional turbine generator unit 10 with diffuser duct may be used as a single turbine generator unit 10 or with a plurality of turbine generator units 10, typically deployed in river environments, although the design may be used in other environments such as sub-sea tidal areas, tail-races or in wind energy units. In this embodiment, 5 the hydro turbine generator comprises: a rotor comprising a hub and a plurality of hydro turbine blades extending radially outward from said hub; and a duct characterized by at least one of an inlet and an outlet end of said duct being oblong in elevation; 10 wherein a ratio of a cross-sectional outlet area of said duct to a cross-sectional inlet area of said duct is between 1.1 and 2.1. Other objects according to certain embodiments of the present invention include providing a highly efficient hydro turbine suitable for shallow river applications as well as deep ocean current locations with a relatively simple design which is environmentally 15 friendly.

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