MECHANICAL TRACKING SYSTEM
    11.
    发明专利

    公开(公告)号:IN1064DEN2015A

    公开(公告)日:2015-06-26

    申请号:IN1064DEN2015

    申请日:2015-02-10

    Abstract: A mechanical tracking system comprises a first set of linkage arms a second set of linkage arms a pair of shafts connected at first end to one arm of the first set of linkage arms and at a second end to one arms of said second set of the linkage arms wherein each arm of the second set of linkage arms is oriented out of phase with a respective arm of the first set of linkage arms an attachment shaft positioned adjacent to the first set of linkage arms to accommodate a tool and a sensor arrangement configured lo sense the orientation and position of the attachment shaft.

    DEVICE AND METHOD FOR IMPROVING LIQUID REMOVAL FROM GAS, CONDENSATE & OIL WELLS WHEN USING A MULTI-CHANNEL SYSTEM

    公开(公告)号:CA2719445C

    公开(公告)日:2013-10-01

    申请号:CA2719445

    申请日:2010-10-19

    Abstract: The present invention is used in conjunction with a multi-channel system of a production string for deployment in gas, condensate or oil wells. An end-piece is placed at the entrance to such multi--channel system. It includes a semi-enclosed space helping to increase the proportion of gas phase entering the system at its bottom entrance. Increased proportion of gas allows lifting liquids and/or solids from the wellbore with greater efficiency. Examples of using the invention include wellbore water removal for gas wells with liquid loading problems, for solution gas drive or gas cap driven oils wells during their initial "natural flowing phase", or during gas re- injection or gas-lift recovery operations for oil wells. It can also be used for gas-lifting water in water wells.

    COMPOSITION AND METHOD TO PRODUCE AND USE FERMENTED HYDROLYZED PRODUCTS OF METABOLISM

    公开(公告)号:CA2484639A1

    公开(公告)日:2003-12-31

    申请号:CA2484639

    申请日:2003-06-13

    Abstract: A method of producing a hydrolyzed fermented medium containing microorganism s such as bacteria or yeast and the products of their metabolism in high concentration, the method includes providing at least one solid plant produc t reduced to small pieces and mixed with sugar and a biocompatible liquid such as milk for fermentation at a temperature of between 35 and 58 degrees C unt il the acidity of the medium reaches the range of 300 to 900 in Terner degrees. In an alternative embodiment, the medium is prepared by mixing in predetermined amounts of sprouted grains, biocompatible liquid inoculated wi th at least one of a variety of non-pathogenic microorganisms, vegetables, fruits, berries, high protein products, herbs, sugar, and a chemical element such as potassium. The mixture is then fermented at a selected temperature f or a specified length of time to reach high acidity and high concentration of products of bacterial metabolism. A liquid phase is separated from a solid sediment phase and can be used to treat a wide variety of diseases including HIV/AIDS, viral infections, cardiovascular diseases, Alzheimer's and others as well as for other applications.

    Filter and method for purifying liquids containing magnetic particles

    公开(公告)号:AU8025800A

    公开(公告)日:2001-04-30

    申请号:AU8025800

    申请日:2000-10-16

    Abstract: A filter for removal of magnetic particles in which a liquid flows through a first compartment containing magnetic balls tightly packed together so that there is no direct flow path but only around these magnetic balls. Increased mixing of flow coupled with strong intensity of a magnetic field across the flow promotes better attraction and retention of the magnetic particles on the magnetic balls. The second compartment contains commonly known porous materials of known porosity to remove smaller non-magnetic particles. The filter is particularly useful as a fuel or oil filter for an internal combustion engine. In one embodiment, the magnetic portion is made removable and individually replaceable to extend the life of the filter. The filter is capable of removing magnetic particles for an extended period of time without clogging.

    Gas well dewatering method and device

    公开(公告)号:AU4076399A

    公开(公告)日:2000-05-15

    申请号:AU4076399

    申请日:1999-05-12

    Abstract: A method and device for removal of production inhibiting liquid from a gas well, wherein a tubing string is placed inside the well to form a fluid communication path from the liquid accumulation zone near the bottom of the well to the ground surface. The diameter of the tubing string is sufficiently small (preferably between +E,fra 1/16+EE and +E,fra 1/2+EE inch) so as to define a high liquid-to-gas ratio two-phase flow, preferably capillary bubble flow along the tubing string in order to maximize the liquid head and minimize the gas loss in this tubing string, and to reduce or eliminate the additional restriction along the main gas production tubing generally associated with the presence of such tubing string. In some embodiments, the tubing string comprises a plurality of individual tubing channels for increased rate of liquid removal, each channel being of sufficiently small size so as to define a capillary bubble flow.

    A substance with sedative effect
    20.
    发明专利

    公开(公告)号:AU2003220260A8

    公开(公告)日:2003-10-08

    申请号:AU2003220260

    申请日:2003-03-14

    Abstract: A substance with sedative effect comprises a therapeutically effective amount of a gamma-pyrone such as comenic acid in a pharmaceutically acceptable carrier. When administered at a daily dosage of between 0.05 mg to about 10,000 mg of active ingredient per unit dose, the substance can be used to treat various disorders of a nervous system such as pain, insomnia, anxiety, neurosis, depression, as well as withdrawal symptoms experienced by drug addiction patients, especially for patients addicted to opiate-based drugs. The substance can be delivered in a number of ways of systemic administration of a pharmaceutical agent including oral, parenteral, transdermal, and transmucosal administration. One disclosed method of administration involves a subcutaneous implant providing a continuous release of an active ingredient at an effective daily rate over the entire treatment period ranging from 5 to 30 days, and preferably from 13 to 20 days.

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