摘要:
A multi-phase lubricant composition useful in a process for lubricating one or more operating components which are exposed to an operating condition change is described. Under a condition at which the lubricants are at least partially miscible, the phases combine to provide a lubricant having a physical property which is modified to be more appropriate for lubricating under the new condition, such as a higher viscosity. Typically the lubricants are at least partially miscible at an elevated temperature and at least partially immiscible at lower temperatures. A density difference between the phases is preferred for ease of separating the phases. The composition is preferably a combination of a hydrocarbon oil and a polyalkylene glycol such as polypropylene glycol.
摘要:
An apparatus for lubricating an operating component of a system in which the operating component is exposed to a range of conditions, such as a range of temperatures which require adjustment of at least one physical property of the lubricant, is described. In one embodiment, the apparatus is useful for lubricating more than one operating component, each operating under a different operating condition. The apparatus utilizes a first lubricant and a second lubricant which are at least partially miscible, under a condition of at least partial miscibility, usually an elevated temperature. Under the condition of at least partial miscibility, the lubricants combine to provide a third lubricant. The third lubricant is dispensed to the operating component in response to a change in at least one operating condition which requires the properties of the third lubricant for efficient lubrication.
摘要:
A hydraulic system employing multi-phase hydraulic fluids in which a first phase hydraulic fluid has its properties modified by the addition of a second phase hydraulic fluid is described. Effective hydraulic actuation is achieved in a single system under extreme conditions, typically high and low temperatures.
摘要:
An apparatus for lubricating an operating component of a system in which the operating component is exposed to a range of conditions, such as a range of temperatures, which require adjustment of at least one physical property of the lubricant is described. In one embodiment, at least a portion of the operating component is located within a lubricant reservoir which contains a first lubricant of low density and high viscosity and a second lubricant of higher density and lower viscosity. During certain operating conditions, the lubricants are at least partially immiscible, usually at lower temperatures, and the first lubricant is appropriate for those operating conditions. A change in at least one operating condition which promotes at least partial miscibility of the lubricants, such as higher temperatures, causes the first and second lubricants to mix, at least partially, and form a third lubricant. The third lubricant has at least one property which differs from that of the first and second lubricants, usually a different viscosity. The third lubricant contacts the operating component and is more appropriate for lubricating under the condition which causes at least partial miscibility. In an alternative embodiment the operating component is not located within the lubricant reservoir and the lubricant is conveyed to the operating component. Processes for lubricating are also described.
摘要:
A method and system are described that may be used for exploration, production and development of hydrocarbons. The method and system may include analyzing a sample for a geochemical signature, wherein the geochemical signature includes a multiply substituted isotopologue signature and/or a position specific isotope signature. Then, the historical temperature, type of alteration and/or extent of alteration may be determined from the signature(s) and used to develop or refine an exploration, development or production strategy.
摘要:
A method and system are provided for exploration, production and development of hydrocarbons. The method involves analyzing a sample for a geochemical signature, which includes a multiply substituted isotopologue signature and/or a position specific isotope signature. Then, historical temperatures are determined based on the signature. The historical temperature is used to define generation timing, which is used to develop or refine an exploration, development, or production strategy.
摘要:
A system and method is provided for enhancing hydrocarbon production. The method and system involve geochemistry analysis and include multiply substituted isotopologue and position specific isotope geochemistry for at least one hydrocarbon compound of interest associated with free gas and sorbed gas. The method and system involve using clumped isotope and position specific isotope signatures to enhance monitoring of well and stimulation performance.
摘要:
A system and method is provided for enhancing hydrocarbon production. The method and system involve geochemistry analysis and include multiply substituted isotopologue and position specific isotope geochemistry. The method and system involve using clumped isotope and position specific isotope signatures to enhance monitoring of well and stimulation performance.
摘要:
A system and method is provided for enhancing hydrocarbon production. The method and system involve geochemistry analysis and include multiply substituted isotopologue and position specific isotope geochemistry for at least one hydrocarbon compound of interest associated with free gas and sorbed gas. The method and system involve using clumped isotope and position specific isotope signatures to enhance monitoring of well and stimulation performance.
摘要:
A method and system are provided for exploration, production and development of hydrocarbons. The method involves analyzing a sample for a geochemical signature, which includes a multiply substituted isotopologue signature and/or a position specific isotope signature. Then, historical temperatures are determined based on the signature. The historical temperature is used to define seal timing, trap timing, migration efficiency and/or charge efficiency, which is used to develop or refine an exploration, development, or production strategy.