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US Patent 10359075 System and method for hydrostatic bearings

Patent 10359075 was granted and assigned to Energy Recovery, Inc. on July, 2019 by the United States Patent and Trademark Office.

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Patent abstractTimelineTable: Further ResourcesReferences
Is a
Patent
Patent

Patent attributes

Patent Applicant
‌
Energy Recovery, Inc.
Current Assignee
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Energy Recovery, Inc.
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
10359075
Patent Inventor Names
Chinmay Vishwas Deshpande9
David Deloyd Anderson9
Date of Patent
July 23, 2019
Patent Application Number
14943318
Date Filed
November 17, 2015
Patent Citations Received
‌
US Patent 11781789 Refrigeration and heat pump systems with pressure exchangers
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US Patent 11397030 Low energy consumption refrigeration system with a rotary pressure exchanger replacing the bulk flow compressor and the high pressure expansion valve
‌
US Patent 11913696 Refrigeration and heat pump systems with pressure exchangers
3
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US Patent 11421918 Refrigeration system with high speed rotary pressure exchanger
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US Patent 11959498 Pressure exchanger inserts
4
‌
US Patent 12085324 Refrigeration and heat pump systems with pressure exchangers
5
‌
US Patent 12007154 Heat pump systems with pressure exchangers
6
‌
US Patent 11692743 Control of refrigeration and heat pump systems that include pressure exchangers
7
...
Patent Primary Examiner
‌
Philip E Stimpert
Patent abstract

A system, includes a hydraulic transfer system configured to exchange pressures between a first fluid and a second fluid, wherein the first fluid has a pressure higher than the second fluid, comprising: a sleeve; a cylindrical rotor disposed within the sleeve in a concentric arrangement and has a first end face and a second end face disposed opposite each other; a first end cover having a first surface that interfaces with the first end face of the cylindrical rotor; a second end cover having a second surface that interfaces with the second end face of the cylindrical rotor; and a hydrostatic bearing system configured to utilize a bearing fluid at a pressure higher than the second fluid to resist axial displacement, radial displacement, or both axial and radial displacement of the cylindrical rotor.

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