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For a current list of mud logging companies, feel free to reference the following page.smcworld.com Most companies are looking for new employees so they can keep up with today’s high levels of demand. In truth, all oil rig jobs are experiencing a boom so be sure to check each career path that’s available. And don’t rule out other higher paying jobs, like Mud Engineer or MWD.youtube.com Disclaimer: The list of mudlogging companies below was created for mudloggers trying to find employers in the U.S. It is meant to be an impartial compilation with updated contact information. Want a high paying job in the oil industry? Become a Mud Engineer.


Since mud engineer jobs are now in demand it is a great time to get into the specialty. Click on the link above and see what it takes to become a top earning Mud Hand in the field. Advanced Reservoir Technologies is a drilling service company that is based out of Addison, TX. They specialize in imaging oil and gas reservoirs for the geotechnical and petroleum industries. To image each reservoir they use Seismic Borehole Technology which is one of the most innovative approaches in the field. Alpha Oil Field Services has been active in mud logging ever since the year 1976. Recently they have expanded their area of operation to include several Texas shale plays, one of which is the Barnett.


They pride themselves on supplying their clients with top quality data by using the latest logging technology to generate accurate reports. Baker Hughes is one of the largest drilling companies in the industry and they are widely respected for their quality logging services. They specialize in providing clients with advanced services and technology to assist in every major part of the dynamic drilling process. Camco Logging Service is a growing company that operates out of La Marque, Texas. Although founded as recently as 1998, their fleet of mudlogging units now totals nine. They focus on creating quality customer relationships to ensure client’s satisfaction and encourage repeat business. Cardinal Surveys is a mid-sized logging company operating out of Odessa, Texas.


They are known to provide some of the best customer support in the field, offering a wide range of services to meet each client’s needs. CL Consultants (a division of Continental Laboratories) has logged over 20 years of experience in the industry. CL Consultants is based in Calgary, Alberta and is one of Canada’s larger drilling service companies. Their specialty is supplying clients with cost effective solutions while meeting the highest standards for both quality and service. Columbine Logging provides a number of geological services for drilling operations located in the majestic Rocky Mountains. They have been in operation since late 1980, serving many of the largest companies in today’s drilling industry.


Crosco Integrated Drilling and Well Services is a Croatian based company that provides top quality well logging. It has been in business since 1952 and has operated in 34 countries all around the world. Crosco also owns the Hungarian Rotary Drilling Company, which is heading a number of new projects near the Mediterranean Sea. Diversified Well Logging is a family owned business that has offered mud logging services since 1958. The average employee at DWL has over 10 years of experience, which is more than most other companies in the industry. Although they are small, they are extremely efficient and attend to each of their clients’ special needs in the field. Empirica has recently grown thanks to its strategic acquisition of The Mudlogging Company.


They have over 35 years of experience in Asia, Africa, and the United States. Empirica operates over 60 mudlogging units in the U.S. Epoch Well Services is one of the world’s fastest growing suppliers of drilling instrumentation systems. They operate mostly in California and Alaska but still handle certain jobs in Texas and the Gulf of Mexico.youtube.com Their specialty software is known as DML (Digital Mudlog), which they state is the best logging program currently available in the market. Geolog Surface Logging has been around since 1982 and it was recently reorganized in 2009. While smaller than some of the larger surface logging companies, Geolog manages to operate in over 25 different countries.


They focus on reducing costs and overall drilling times by quickly identifying new oil and gas reservoirs. Geoservices (another division of industry giant Schlumberger) has more than 5,000 employees operating in over 50 different countries. They are currently engaged in a variety of cutting-edge projects, hoping to corner the deepwater drilling market all around the world. Horizon Well Logging takes prides in supplying its clients with accurate and in-depth data analysis. In fact, their geologists often have a Master’s Degree and close to 20 years of field experience. Since 1992, Horizon has logged over 1600 wells, 99% of which were for satisfied repeat customers.


Click the link above and read another HubPage that details the average mudlogger salary. Entry level pay rates are continuing to climb, so it is a great time to get started in the field. If you would like your company to be added to this list, leave a comment at the bottom of the page. This hub will be updated about four times per year to refresh each company’s contact information. NorAm Wellsite Services is a fast growing company that specializes in mudlogging and geological consulting. It was founded in 1995 by 5 central partners that accumulated over 125 years of combined field experience.


Petro Log International provides some of the best logging services available and has been in operation since 1958. They are often a top choice of operators in the industry and have serviced over 8,000 wells both on land and offshore. It really is a great time to get started in a new mudlogging career. They now have 22 mudlogging units in the Gulf of Mexico alone, and are working toward deploying even more. Stratagraph specializes in supplying their clients with complete mud logging and pressure detection services. They were established in 1961, and have grown into one of the most successful independent mudlogging companies in the industry.


Weatherford is one of the largest mud logging companies in the world with over 1,500 skilled employees. Their modular approach lets them offer a range of special services so that they can provide effective solutions for each of their clients. For a comparable listing of drilling fluids companies, try clicking on the link below. Many Mud Loggers have become first rate Mud Engineers after getting trained to enter the field. History of BusinessFamous Department Stores : Jenners of Edinburgh in Scotland. Sign in or sign up and post using a HubPages Network account. 0 of 8192 characters usedPost CommentNo HTML is allowed in comments, but URLs will be hyperlinked. Comments are not for promoting your articles or other sites.


A photovoltaic system offers a way to generate clean, quiet, and reliable energy. The acronym PV is a combination of two words; ‘photo’ and ‘voltaic’. The word photo represents light, and the meaning of voltaic is ‘producing electricity’. The whole word explains that it is a device that produces electricity from light. In a grid-connected PV system the electricity generated from the sunlight is directly transferred to the electricity utility grid. The size of grid-connected system may vary from residential with the capacity of 2-10 Kwp to a solar power station having the capacity of 10s of Gwp. The DC power developed from the PV array must be converted to AC so it can be transfered to the electric grid.


To do so, a grid-controlled inverter is used in this system. When you are using this type of PV system it is essential to ensure that the system will not feed electricity to the electric grid if it is down for repair. Therefore saftey control systems are also required. In the diagram to the right is a simple explanation of the workings of a grid connected system. The electricity generated from the PV array is transferred to the primary component of the system, a power conditioner unit or inverter. This component converts the DC power developed in PV array to AC power for household usage. The AC power is transferred to the distribution panel. This is the most important component for all types of PV systems.


It consists of photovoltaic cells. When the sunlight hits one the silicon wafers in it generate electricity. The energy of sunlight excites the free electrons of the silicon and releases them from their bonds to generate electricity. The next component used in the process is inverter. This is used for converting DC power to AC to use in households and to feed in electric grid. This inverter also synchronizes and improves electricity quality so that it can be freely fed to the grid. The distribution panel is a component to divide the electric power to the AC loads and electric grid. This is nothing but the electric devices that require AC power to work.


The AC power from the distribution panel is then supplied to the household electric devices for the further use of electricity. The electricity that exceeds the demand is transferred to the electric grid so that it can be used in other areas. If the PV system may not develop the required amount of electricity then this component is also used for fulfilling the demand from other external electric source. This system doesn’t have any connection to the electricity mains like a grid-connected system. It is used in very small devices like watches and calculators up to machines as large and complex as spacecraft. It uses a battery (or bank of batteries depending on the size of the system) to store the DC power generated from the PV array. This PV system doesn’t use a distribution panel; however, it has a charge controller to control the flow of electricity.


The DC power generated from the PV array is transferred to the charge controller. This component distributes the electricity to DC loads such as ventilation fans, water pumps and small circulation pumps. The electricity that exceeds the demand is transferred to the battery. The battery stores the electricity, and sends it to the inverter whenever requires. The inverter is then converts the DC power to AC power and distributes it to the AC load. Most of the components of this system are similar to the grid-connected system such as PV array, inverter, AC load. Three other components are included in it, which are charge controller, DC load, and Battery.


The charge controller is very important in this type of PV system. It is used to avoid any damage in battery during excessive charging and discharging. This component includes the devices that require DC current to operate. In this system, the electricity developed from the PV array can also be used directly to such electric devices. There are some off-grid homes that run entirely on DC power without the need for an AC inverter. Batteries are used in this system to store electrical energy during the day to be able to supply it when it is required (for example; in lighting at night). The battery system enables the PV array to work at its maximum power point, and to supply electricity at stable voltage.


A hybrid system uses some other electricity sources such as diesel generator, biogas, wind power, etc. with PV array. The use of other power sources is usually just to compensate for excessive electrical demands during peak periods of the day. The PV system is being used worldwide due to its unique merits and advantages over other conventional power generation systems. It can be designed for various operational requirements. It can be used for your house and also as a distributed power generator. However, the components in a PV system require an initial investement in pricey PV cells thus limiting the use of this technology in poor areas where it could be of the most use.


PLC SCADA is attaining popularity soon and its growth now is tremendous. I hope within few years it will reach to peak, so students prepare yourself with PLC automation training. Students who are in Chennai has great scope to learn PLC SCADA training in Chennai because here you have different PLC SCADA training centers that train you and also place you with good job. So once you are trained well in PLC SCADA, then your career shines well. Let us see the benefit of learning PLC SCADA training so that you can know about its uses and applications. Industries need proper application systems to control and monitor instruments and most of you may know well about PLC and it is a programmable logic controller. It consists of programmable micro controller and it is programmed using a specialized computer language and the user can program in several languages.


Generally the program is written and it is downloaded to PLC through cable connection, then the program gets stored in non volatile memory. They are designed for real time use and it can withstand harsh environments and it contains a variety of input and output ports with sensor units. These sensor units can control output actuators like motor starters, displays, lights and valves. It is a centralized system and can be performed well by remote terminal units or by programmable logic controllers. Data acquisition and data management is what SCADA is concerned about and the data acquisition begins at PLC level.


As a PLC SCADA engineer, you are going to monitor the servers and software that allow for communication with the field equipment. SCADA is even used in hospitals for researching obscure diseases and for correlating data. Chennai is well-known for PLC Chennai because, here there are many PLC SCADA training centers available and the only issue is you need to search the best one. Once if you learn PLC SCADA training in Chennai, you have bright future in foreign countries as well. So students who are studying or those who have completed their degree can learn PLC automation training. Make use of the best centers and have a bright future with good salary and designation. Check the profile of the students who are selected in automation industries and try to know their training centers so that you can join there and have a scope for career development.


In March of 1989, a huge storm wracked the Sun’s surface. A few hours later, the plasma and electrons thrown out from that storm reached Earth. The HydroQuebec Power Grid in Quebec, Canada, being near the Earth’s north magnetic pole, received a huge blast from this solar storm.youtube.com The geomagnetically induced currents generated in the grid by the storm’s plasma and electrons that reached Earth literally burned it out. The power grid went down. It was down for nine hours. But HydroQuebec was not the only power company to feel the effects of this solar storm. New Jersey Public Service Electric and Gas had two of its main transformers blown out. All this damage was caused by a Coronal Mass Ejection(CME) of plasma, electrons and radiation from the Sun’s Corona.


Our electric power grids are particularly susceptible to such damage from CMEs because the CMEs can induce extremely high currents in them and burn them out. What is the Corona? The Sun’s corona is a strange layer of the Sun. We can see it only during eclipses, or with special instruments such as spectroheliographs. It surrounds the solar sphere probably for a million miles out into space. It is pure plasma—very hot ionized gas. In fact, the Corona is hotter than it should be in theory. This seems to defy the laws of physics. As you move away from the Sun the temperature should drop.


Something has to be heating the Corona. It was not until the deployment of the SOlar and Heliospheric Observatory (SOHO), and the more recent Transition Region and Coronal Explorer (TRACE) that we got a clue as what this mechanism might be. It seems the surface of the Sun is covered with small, short term magnetic fields that appear and disappear over an average period of 40 hours. As these fields move across the Sun, they come in contact with each other. Because fields can’t intersect, they are rearranged and reconnected, and this heats the Corona. Researchers do not have absolute proof yet this is the answer, but it is a big step in understanding the Corona.


What is a Coronal Mass Ejection? A Coronal Mass Ejection (CME) is a sudden and massive expulsion of plasma from the Corona. It is caused when magnetic storms sweep through the chromosphere and photosphere. These storms transmit their magnetic energy into the Corona and literally blow huge masses of it into space. If the Earth is in the right place, the CME will wash over this planet like a tsunami. It isn’t just power grids that fall prey to these blasts from space. On June 4, 1989, in the midst of a huge solar storm, a gas pipeline in Russia exploded, destroying part of the Trans Siberian Railroad and killing 500 people. The geomagnetic, solar storm caused by the CME had set up currents in the pipeline that ignited the gas.


And then there are our satellites. They are particularly prone to damage by CMEs, because the high energy electrons can knock out circuits, and scramble guidance and control systems. A number of satellites have been disabled over the years by CMEs. Weather and communication satellites have been disabled often. The astronauts on the ISS are not immune to danger either. Besides plasma and electrons, CMEs send dangerous radiation our way. The ISS has shielded compartments they can retreat to for safety—if they have sufficient warning. Airlines divert flights from the poles during CMEs because the geomagnetic disruption, and the possible disruption of navigation satellites, which can affect navigation. The radiation could also be a danger to passengers and crew.youtube.com CMEs are not the only danger our Sun sends our way. There are also solar flares.


Even though the instrumental amplifier is typically equal to a standard op-amp, the electronic instrumentation amp is always inside, composed of 3 op-amps. 2R / Rgain). We can modify the differential gain of the instrumentation amplifier merely by altering the value of one resistor: Rgain. The ideal common mode gain of an instrumentation amplifier is zero. Common mode gain is sourced by mismatches in the values of the uniformly numbered resistors and by the mismatch in common mode gains of the two input op-amps. Finding very intimately matched resistors is an important difficulty in fabricating these circuits, as is optimizing the common mode performance of the input op-amps. Instrumental amplifiers can be built with op-amps and precision resistors, but are also obtainable in integrated circuits from numerous makers (including national semiconductor, linear technology, analog devices and integrated products).


An IC instrumentation amplifier usually holds intimately matched laser trimmed resistors and therefore suggests tremendous common mode rejection. Instrumentation amplifiers can also be planned utilizing "indirect current feedback architecture" which enlarge the operating variety of these amplifiers to the negative power supply rail and in several cases the positive power supply rail. This can be predominantly helpful in single supply systems, where the negative power rail is merely the ground (GND). Feedback free instrumentation amplifier is the high input impedance differential amplifier designed without the external feedback network. This allows reduction in the number of amplifiers, reduced noise (no thermal noise is brought on by the feedback resistors) and increased bandwidth (no frequency compensation is needed).


The presentation of a monolithic instrumentation amplifier utilized as an interface for a four electrode bio-impedance measurement is observed with a commercially obtainable impedance meter supported on an auto balancing bridge. The errors due to particularities in the input stage of the impedance meter, when utilized without a front end, were numerous orders of magnitude higher than the measured quantity. Instrumentation amplifier must eliminate large interference signal which is common the two wires (a common mode signal) and amplify the tiny difference (differential) signal. The instrumentation amplifier is useful to be able to alter the gain of the amplifier circuit without having to change more than one resistor value, as is essential with the preceding design of differential amplifier.


Lawn Sprinklers covers a wide range of products that are designed and manufactured for the special requirement of lawns. Spay heads for installation in lawns are pop-up types, These heads are installed flush with the turf.youtube.com Lawn sprinklers enhance the appearance of your lawn and garden. Plants with the same watering needs should be placed together. Don't put your drought-tolerant plants next to plants that need a lot of water. Plant nutrients, in the form of fertilizer, is also tied up and held in the thatch.instrumentationtools.com Drip irrigation, when used correctly, prevents drought stress but is not designed to correct drought stress like sprinkler irrigation, which wets all the soil. Drip irrigation is the most expensive and least-used type, but offers the best results in delivering water to plant roots with minimal losses.


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