Showing posts with label drilling. Show all posts
Showing posts with label drilling. Show all posts

Sunday, August 31, 2014

What steps can individuals, businesses or world leaders take to address the most pressing and often interrelated water and energy challenges?

To answer this question it is necessary to look at the sources which we walk on. From the volume perspective, only 1 % of the Earth is colder than 1000°C and 0.1 % is colder than 100°C. This amount of energy is available continuously 24/7 without any carbon dioxide or other pollution and practically not exhaustible. Heat under the Earth’s surface is still permanently produced in the Earth’s volume by decay of uranium, thorium, etc. For effective geothermal electricity production, there is a need to drill between 8-10 km in hard rock, where the temperatures almost anywhere in the world exceed 300°C, optimal for steam turbines and high enthalpy heat production. 



Research and development in emerging drilling technologies is aimed on effective deep drilling in hard rocks with the price linear with the depth, which is significant advancement in drilling technology. This enables to exploit geothermal energy practically anywhere in the world independent of the local geological situation. The most promising solutions are drilling systems based on thermal treatment on rocks. These systems provide cost effective and high speed drilling optimized for the hard rock environment. The technologies are oriented towards creation of power generation units ranging between 20 MW to 30 MW per unit, where drilling costs are expected to be less than $1M per drilled km. The main aim of the technology is to bring the position of the geothermal energy  in the world energy mix to its real potential as base load energy and real alternative to coal, oil & gas and nuclear, by RADICAL change through cost effective deep drilling.

Change of the strategy and paradigm of energy production: 
  • Substantial contribution of geothermal energy to climate change mitigations. Energy distributed production to geographic localities where energy is needed and not where resources are available. It provides minimum transport losses in contrast to present day grids, high security against the collapse of energy systems and security against terrorist attacks.
  • Affordability for developing nations, because the source of the energy the “fuel” is available anywhere. 
  • Small footprint of geothermal energy production sites not harming the country environment in contrast to wind farms and photovoltaic large area fields.
  • Safety of the processes compared to nuclear energy.

 
The emerging drilling systems are enabling technologies for future development of strategically important application areas as follows:
  • Accessing new reservoirs of oil and gas - In recent decades new deep underground reservoirs that require significant advance in drilling technologies were discovered. One of the main innovations of emerging drilling systems based on thermal approach is the ability to produce continuous casing while drilling. Casing is created synchronously with the drilling process immediately in the drilling bit zone ensuring sealing and mechanical stability of the well all the time also in difficult conditions. This is a key factor in onshore, but even more considerable in offshore drilling with game-changing cost reduction. Moreover it reduces need for Shale Gas extraction and other methods with negative environmental impact. 
  • Deep hidden water reservoirs and possible desalination on continents - Water wells in regions with limited access to drinking water but with rich sources of deep water reservoirs. Another utilization are geothermal wells for power generation aimed at desalination. Main targets areas are Africa, West and central Asia and Australia.
  • Centers of prosperity - Geothermal heat cascade exploitation economy around each geothermal power generation complex, creation of new jobs and local autonomous economies. The cascade consists of hydrogen production, electricity production, lumber drying, direct building heating and cooling, biotechnology reactors, greenhouses, aquaculture, fisheries, wellness, geothermal heat pumps, etc. For development of such prosperity centers, the franchising concept could be applied. 


We believe that to address water and energy challenges it is necessary “to support development of emerging drilling technologies which will provide sustainable and safe energy for the future.”

Tuesday, September 24, 2013

PLASMABIT Interface with surface subsystem

Last month, we started the series of articles describing the PLASMABIT - system for deep drilling in depths 6 kilometers (and deeper) in geothermal energy as well as hydrocarbon industry. Today we are focused on subsystem responsible for interface with surface.


This advanced cabling solution for energy and material supply for PLASMABIT rock disintegration system enabling real-time Logging-While-Drilling with on-line connection to downhole drilling activities. The subsystem is based on multi-channel cabling system for:
  • Electrical power supply for PLASMABIT rock disintegration subsystem
  • Electrical power supply for PLASMABIT Movement and anchoring subsystem
  • Demineralized water supply for PLASMABIT rock disintegration system as a plasma media for thermal disintegration
  • Water supply for downhole cooling processes
  • Optical fiber and Power-Line-Communication (PLC) for real-time controlling, measuring, sensing, logging and system information gathering of the drilling process
  • Carrier rope for cable strength, weight and elasticity support
  • Advanced cable guarding and shielding techniques
Interface to coiled tubing solution enables simplification of whole drilling process and logistics. The next article will be dedicated to the Movement and anchoring system.

Wednesday, September 4, 2013

PLASMABIT Rock disintegration subsystem

As we wrote in August, PLASMABIT deep drilling system is composed of several subsystems. The one that stands in the core is the PLASMABIT Rock disintegration subsystem.  


Despite the classical drilling methods, this one uses non-contact drilling process based on innovative approach modified for extreme thermal, physical and pressure conditions. It is not the method based on physical contact between the rock and the drilling platform, but it exploits electric plasma arc. Due to this subsystem, PLASMABIT offers penetration rate comparable to the present-day systems. Rock disintegration sybsystem ensures:
  • Destructive spatial plasma disc impact
  • Full drilling diameter impact
  • Enhanced disintegration force
  • Computer control over impact and speed of disintegration
  • Casing option possibility
  • Enhanced electrode guarding principle
  • Independent energy generators
  • Working reliably for months
  • Extremely resistant cooled electronics
  • Emphasis on failure prevention


Different independent energy generators in the PLASMABIT system ensures energy for efficient rock disintegration process. The subsystem works continuously and reliably for months. Autonomous distributed controlling, monitoring and communication system with low complexity, but extremely resistant and redundant cooled electronics works in extreme harsh environment of 1000 bars and 400 °C (750 °F). All in all, PLASMABIT system, has the ability to drill economically regardless the depth - it means also in deep depths (3-10 km) suitable for Enhanced Geothermal Systems (EGS).

Tuesday, August 27, 2013

We present groundbreaking PLASMABIT system

To this time, we wrote just about geothermal energy in general and we also introduced ourselves. The time has come to start talking about Geothermal Anywhere‘s innovative drilling concept that could find the huge sense when it comes to geothermal energy, but at the same time, PLASMABIT could become the useful solution in hydrocarbon (oil and gas) drilling industry as well.


What is hidden beneath PLASMABIT system term? Proudly we say - this is our technology , this is our innovative approach to deep drilling, this is the end of exponential growth of drilling costs in depths 3 kilometers and deeper.

Summarized, PLASMABIT can be characterized by 6 denominators:
  • 5-times cheaper than any of today‘s drilling methods,
  • 4-times faster in comparison with the other drilling procedures,
  • 3-times larger diameter at the bottom,
  • 2-times deeper than common drilled well,
  • 1 process for casing and drilling
  • 0 tripping and drilling bit replacement 


PLASMABIT is a revolutionary innovative cost-effective system for drilling and casing-while-drilling system (ContiCase system add-on). This comprehensive system consisting of several complementary subsystems each solving a specific task during drilling process:
  • PLASMABIT Rock disintegration system - Non-contact drilling process based on innovative approach modified for extreme thermal, physical and pressure conditions.
  • PLASMABIT Interface with surface subsystem - Advanced cabling solution for energy and material supply for PLASMABIT rock disintegration system enabling real-time Measuring-While-Drilling with online connection to downhole drilling activities. 
  • PLASMABIT Movement and anchoring subsystem - Autonomous movement and anchoring subsystem works in underground extreme conditions of high temperatures and high pressure securing synchronization of the drilling process with surface material supply channels.  
Regarding PLASMABIT, in order to learn more about it, we prepared the set of articles describing each of its components - one by one. Stay with us - we start in September.