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OBSHCHESTVO S OGRANICHENNOJ OTVETSTVENNOSTYU GAZPROM DOBYCHA YAMBURG

Overview
  • Total Patents
    47
  • GoodIP Patent Rank
    32,164
  • Filing trend
    ⇧ 11.0%
About

OBSHCHESTVO S OGRANICHENNOJ OTVETSTVENNOSTYU GAZPROM DOBYCHA YAMBURG has a total of 47 patent applications. It increased the IP activity by 11.0%. Its first patent ever was published in 2015. It filed its patents most often in Russian Federation. Its main competitors in its focus markets civil engineering, mechanical elements and measurement are SHAANXI XINGCHEN PETROLEUM TECH CO LTD, EOG RESOURCES INC and OBSHCHESTVO S OGRANICHENNOJ OTVETSTVENNOSTYU GAZPROM DOBYCHA URENGOJ.

Patent filings in countries

World map showing OBSHCHESTVO S OGRANICHENNOJ OTVETSTVENNOSTYU GAZPROM DOBYCHA YAMBURGs patent filings in countries
# Country Total Patents
#1 Russian Federation 47

Patent filings per year

Chart showing OBSHCHESTVO S OGRANICHENNOJ OTVETSTVENNOSTYU GAZPROM DOBYCHA YAMBURGs patent filings per year from 1900 to 2020

Top inventors

# Name Total Patents
#1 Arabskij Anatolij Kuzmich 40
#2 Gunkin Sergej Ivanovich 33
#3 Talybov Etibar Gurbanali Ogly 32
#4 Arno Oleg Borisovich 30
#5 Turbin Aleksandr Aleksandrovich 21
#6 Ponomarev Vladislav Leonidovich 20
#7 Efimov Andrej Nikolaevich 15
#8 Nikolaev Oleg Aleksandrovich 13
#9 Merkulov Anatolij Vasilevich 13
#10 Zavyalov Sergej Vladimirovich 13

Latest patents

Publication Filing date Title
RU2743711C1 Method for optimizing the process of washing the inhibitor from unstable gas condensate at low-temperature gas separation plants of oil and gas condensate fields of the north of russia
RU2743726C1 Method for optimizing the process of washing the inhibitor from unstable gas condensate at low-temperature gas separation plants of oil-and-gas condensate fields in the north of the russian federation
RU2743870C1 Method for automatic load distribution between low-temperature gas separation lines at gas treatment plants of oil and gas condensate fields of northern russia
RU2743690C1 Method for automatic load distribution between low-temperature gas separation lines with turbo-expander units at gas treatment facilities of northern russia
RU2743869C1 Method for automatic load distribution between low-temperature gas separation lines at gas treatment plants using air cooling units, oil and gas condensate fields of northern russia
RU2735756C1 Method of identifying microbial contamination of an aqueous medium by analyzing enzyme dehydrogenase activity
RU2736136C1 Method of automatic control of gas condensate supply process into main condensate line
RU2712665C1 Method of automatic control of gas drying process at plants for complex gas treatment in conditions of the north
RU2709119C1 Method for optimizing the process of washing the inhibitor from unstable gas condensate at low-temperature gas separation plants
RU2713553C1 Method of increase of condensate output by exploited oil and gas condensate deposit object
RU2722331C1 Method of constructing an isobar map for oil and gas condensate fields
RU2709045C1 Method of automatic control of capacity of low-temperature gas separation unit
RU2709044C1 Method of automatic control of capacity of installation of low-temperature gas separation in conditions of extreme north
RU2709046C1 Method of constructing maps of isobars
RU2709048C1 Method for automatic control of inhibitor feed to prevent hydrate formation at low-temperature gas separation plants operated in extreme north
RU2709047C1 Method of adaptation of hydrodynamic model of productive formation of oil and gas condensate deposit taking into account uncertainty of geological structure
RU2697208C1 Method for automatic maintenance of density of unstable gas condensate supplied to main condensate line, using turboexpander unit, in installations of low-temperature gas separation in areas of extreme north
RU2700310C1 Method for automatic maintenance of density of unstable gas condensate, supplied to main condensate line, at installations of low-temperature gas separation in areas of extreme north
RU2692164C1 Method for automatic maintenance of density of unstable gas condensate supplied to the main condensate line, using the air cooling apparatus, at the units of low-temperature gas separation in areas of the far north
RU2680532C1 Method for automatic support of the temperature mode of technological processes with the use of turboexpander aggregate on the installation of low-temperature gas separation under the far north conditions