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Wyszukujesz frazę "drilling tools" wg kryterium: Temat


Wyświetlanie 1-3 z 3
Tytuł:
The problem of liquidation of the open eruption by drilling tools
Autorzy:
Bujok, P.
Fibinger, J.
Klempa, M.
Porzer, M.
Kalus, D.
Rado, R.
Powiązania:
https://bibliotekanauki.pl/articles/298940.pdf
Data publikacji:
2014
Wydawca:
Akademia Górniczo-Hutnicza im. Stanisława Staszica w Krakowie. Wydawnictwo AGH
Tematy:
liquidation of open eruption
drilling tools
drill string
Opis:
Drilling process of deep borehole consists of different drilling operations. Each of them can cause numerous different drilling problems especially when a borehole is performed. While drilling the most dangerous problems can occur once the drilling fluids (oil, gas or water) spontaneously flow out from the drilled formations into the borehole and then to the surface. It can also happen that the pressures in the borehole are not balanced and an influx of fluid into the borehole (a kick) will occur. If no action is taken to stop a kick once it begins, then the fluids will be pushed out of the borehole and will be flowing uncontrollably to surface (blow-out). Blow-out is prevented by closing off the well at the surface with special kind of valves (Blow-out Preventers - BOPs). When pressure control over the well is lost, swift action must be taken to avert the severe consequences. These consequences may include: — endangering of human life, — loss of rig and equipment, — negative influence on the environment, — additional costs of bringing the well under control again, — loss of reservoir production. In the case of kick or blow-out will occur in the practical use are different procedures and methods to control a borehole. These procedures and methods depend on the actual drilling operation scenario. One of them can be a tripping operation when the drill string is pulled out or run back again. In this case the drill string is open either after a break-out or before making up the drill pipes and drill collars. There is a variety of tools that can be used to prevent the formation of fluids rising up inside the drill pipes. One of this tool is a safety valve (rod preventers - BOP) to prevent the blow-out of the drill string. This manuał safety valve should be kept on the rig floor at all times. It needs to be a fuli opening ball-type valve so there is no restriction to flow. This valve is installed onto the top of the drill string if a kick occurs during a trip. However, this solution is quite inconvenient and difficult because involves special heavy tools, e.g. a crane. Drilling process of deep borehole consists of different drilling operations. Each of them can cause numerous different drilling problems especially when a borehole is performed. While drilling the most dangerous problems can occur once the drilling fluids (oil, gas or water) spontaneously flow out from the drilled formations into the borehole and then to the surface. It can also happen that the pressures in the borehole are not balanced and an influx of fluid into the borehole (a kick) will occur. If no action is taken to stop a kick once it begins, then the fluids will be pushed out of the borehole and will be flowing uncontrollably to surface (blow-out). Blow-out is prevented by closing off the well at the surface with special kind of valves (Blow-out Preventers - BOPs). When pressure control over the well is lost, swift action must be taken to avert the severe consequences. These consequences may include: — endangering of human life, — loss of rig and equipment, — negative influence on the environment, — additional costs of bringing the well under control again, — loss of reservoir production. In the case of kick or blow-out will occur in the practical use are different procedures and methods to control a bore¬hole. These procedures and methods depend on the actual drilling operation scenario. One of them can be a tripping operation when the drill string is pulled out or run back again. In this case the drill string is open either after a break-out or before making up the drill pipes and drill collars. There is a variety of tools that can be used to prevent the formation of fluids rising up inside the drill pipes. One of this tool is a safety valve (rod preventers - BOP) to prevent the blow-out of the drill string. This manuał safety valve should be kept on the rig floor at all times. It needs to be a fuli opening ball-type valve so there is no restriction to flow. This valve is installed onto the top of the drill string if a kick occurs during a trip. However, this solution is quite inconvenient and difficult because involves special heavy tools, e.g. a crane. This paper presents a new solution making use of special control equipment for the blowing open drill string. This equipment is based on a hydraulic press (named "Drill Pipę Rescue Press I") which has been developed by HBZS, MND S.A. Hodonin and VSB-Technical University of Ostrava, supported by Faculty of Drilling, Oil and Gas AGH-UST Kraków.
Źródło:
AGH Drilling, Oil, Gas; 2014, 31, 2; 199-205
2299-4157
2300-7052
Pojawia się w:
AGH Drilling, Oil, Gas
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Utilization of high potential geothermal energy in the Czech Republic
Autorzy:
Klempa, M.
Rado, R.
Bujok, P.
Janeckova, N.
Porzer, M.
Powiązania:
https://bibliotekanauki.pl/articles/299000.pdf
Data publikacji:
2016
Wydawca:
Akademia Górniczo-Hutnicza im. Stanisława Staszica w Krakowie. Wydawnictwo AGH
Tematy:
geothermal energy
enhancing geothermal system
deep geothermal energy
geothermal response test
drilling technology
down-the-hole drill (DTH) drilling technology
drilling tools
wellbore design
Opis:
In the Czech Republic the electrical energy and heat from geothermal energy can be generated with the use of Engineering/Enhancing Geothermal System (EGS). In this case a downhole heat exchanger is performed to a depth at which the temperature of the rock mass is at least 150–160°C or more, preferably about 200°C. Taking into account the geological conditions in the Czech Republic, such temperatures can be ob- served at about 5000–6000 m of depth. The site of a pilot project of geothermal electrical energy production was selected on the basis of the analysis of deep-seated geological structures in the Czech Republic, i.e. area of crust faults in the Ore Mountains Erzgebirge. The selected geological units consist of the Ore Mountains Fault and Central Bohemian Uplands, which are part of the Ohersky Rift Valley. Two deep research wells are planned in that area, with detailed geological, geophysical and geothermal analyses, including laboratory analyses of sampled rocks (cores).
Źródło:
AGH Drilling, Oil, Gas; 2016, 33, 1; 195-203
2299-4157
2300-7052
Pojawia się w:
AGH Drilling, Oil, Gas
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Próba wyznaczenia modelu wiercenia narzędziami PDC na przykładzie wiercenia w wybranych strukturach geologicznych
Attempt at determining a drilling model with PDC tools on the example of drilling in selected geologic structures
Autorzy:
Rado, R.
Lubaś, J.
Powiązania:
https://bibliotekanauki.pl/articles/299967.pdf
Data publikacji:
2007
Wydawca:
Akademia Górniczo-Hutnicza im. Stanisława Staszica w Krakowie. Wydawnictwo AGH
Tematy:
świder PDC
model wiercenia
wiercenie otworów
PDC tools
drilling model
drilling of wells
Opis:
Narzędzia PDC odznaczają się wysokimi postępami wiercenia i osiąganymi przewiertami. Stosowanie tych narzędzi jest efektywne i przyczynia się do zwiększania prędkości wiercenia, a co za tym idzie, obniżenia kosztów wiercenia. Właściwe wyznaczenie optymalnych parametrów technologii wiercenia jest związane z procesem optymalizacji. Aby przeprowadzić taki proces, niezbędne jest zidentyfikowanie matematycznego modelu wiercenia danym narzędziami w odpowiednim interwale geologicznym. Artykuł prezentuje wyznaczenie matematycznego modelu wiercenia narzędziami PDC dla zapadliska przedkarpackiego.
PDC tools have high drilling advancement and footage. These tools are efficient and accelerate the drilling rate, thus lowering the cost of drilling. Proper determining of optimal parameters of drilling technology is related with the optimization process. For doing so, it is necessary to identify a mathematical model of drilling with given tools in a respective geologic interval. The mathematical model of drilling with PDC tools for the Carpathian Foredeep is presented in the paper.
Źródło:
Wiertnictwo, Nafta, Gaz; 2007, 24, 1; 425-433
1507-0042
Pojawia się w:
Wiertnictwo, Nafta, Gaz
Dostawca treści:
Biblioteka Nauki
Artykuł
    Wyświetlanie 1-3 z 3

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