分类: Industry Update

KOSUN exclusively manufacture solids control system,drilling mud solids control equipment,Oilfiled Solids Control,oil and gas drilling waste managemen

  • KOSUN Mud Agitator Customized by Qatari Customers Was Already Arranged for Shipment

    The type of mud agitator is designed and produced according to custmers’ requirement with the motor to be 7.5KW and double impeller. The above impeller is inclined blade, for the below is straight blade type. Above impeller will gain mud pressure on work, the straight blade provide thrust, which makes the vane of mud more uniform, and not easy to grit. Mud agitator is the commonly used equipment in drilling solid control system, usually on top of the mud tank (circulating mud tank, feeding tank, medicine tank). Mud agitator is used to prevent drilling fluids solid phase particle from deposition in the tank circulation system, making the circulating drilling fluids performance stable, mixed evenly. The Company’s technical engineers, according to the particularity of the customer site, make the special design on the stirring shaft and blade.

     

    The State of Qatar customers customized KOSUN mud agitator is already arranged shipment

    KOSUN is the professional manufacturer of horizontal and vertical mud agitators. Our products are with reliable quality and good operation performance. Our company is in line with the integrity-based business philosophy, to provide high quality products, professional technical support. We welcome the masses of customers to choose.

    KOSUN is main professional manufacturer of solids control system in China, KOSUN is a vital part of the world hydrocarbon exploration and production industry, as well as one of the top three solids control equipment suppliers in China, which offers its products for CNPC, CNOOC, Gazprom, etc. If you want to know more information about solids control system and oil drilling solids control equipment, you can contact us online.

  • Advantages and Disadvantages of Water- and Oil-based Mud

    READ: Shale gas has a complex composition of minerals. Water easily smells clay minerals. This can hinder normal drilling, result in complicated down hole problems like collapsing wall as well as pollute drilling fluids and impact capacity in later production. Mostly due to this, oil-based mud is required.

    Shale gas has a complex composition of minerals, extending to such common ones as kaolinites, montmorillonites, illites, as well as quartzs, feldspars, mica calcites, dolomites, iron pyrites, apatites, etc. Water easily smells clay minerals. This can hinder normal drilling, result in complicated down hole problems like collapsing wall as well as pollute drilling fluids and impact capacity in later production. Mostly due to this, oil-based mud is required.

    Vertical well can try water-based mud, but it is less economical than horizontal wells for extracting shale gas. Horizontal drilling is always used for shale gas exploration, mostly along the direction of minimum principal stress, which makes shale formation proner to collapse than ever. Oil-based mud is endowed with better capabiliy to stablize the wall than water-based mud.

    1. Water-based mud can swell shale formation, a brittle mineral, collapse boreholes and impact drilling outcome in the drilling operations;

    2. Gases produced among shale cracks whose non-organic part is possbly aqueous wetting phase can be easily displaced by water, offsetting the well loggings.

    3. Water-based mud can easily block the layers of very low permeability and influence the capability.

    4. Oil-based mud can support the shale formation and its oil molecules cannot penetrate into tiny organic and non-organic pores under the capillary pressure.

    Accordingly, it makes great difference to drilling operations with the assistance of the oil-based mud, concocted with certain amount of support agent. And, in horizontal drilling, rotary steering, hole trajectory and well cementing are vital technologies, or an integrated auxiliary technology assembly.

     

  • Oil-based Mud Plays Significant Role in Shale Gas Exploration

    READ: Many unsolved problems in shale gas exploration are mostly attributed to drilling fluids. However, shale’s proneness to hydration swelling, which leads to a string of complex downhole problems like a collapsing wall, has determined oil-based mud to be applied in shale gas exploration.

    Many unsolved problems in shale gas exploration are mostly attributed to drilling fluids, so proper match between mud properties and engineering parameters gives birth to safe well drilling. Shale gas is produced by fracking since it mainly exists among cracks. However, shale’s proneness to hydration swelling, which leads to a string of complex downhole problems like a collapsing wall, has determined oil-based mud to be applied in shale gas exploration.

    Foreign companies apply a special drilling fluids called oil-based mud, especially in horizontal wells. And they have gained mature technologies and experience from years’ practical application of it.

    Foreign oil-based mud’s application in China are still restrained due to high cost, high tariff and high service charge. However, nationwide alternative-energy development for oil-based mud are currently underway. Though it still remains a controversy whether domestic oil-based mud for horizontal drilling project has entered mature stage, it is comparatively stable and costs less.

    Today, domestic shale gas exploration mainly takes into account liquid invasion and downhole safety and oil-based mud is designed to protect gas reservoirs so as to reject hydration swelling in mud shale.

    Oil-based mud is more protective in terms of safety, good rejection capability, faster drilling speed, etc. Water-based mud can also be adopted on various drilling designs because of its important head start of being cheap. Therefore, application of oil-based mud in shale gas exploration is key to examine how well domestic technologies are united with efficiency.

     

  • Using Solids Control System in Horizontal Directional Crossing Project

    READ: Horizontal directional crossing are still very young at home and even abroad. However, in recent years, thanks to the substantial development of pipeline directional crossing and large-scale construction of domestic oil & gas pipelines, KOSUN’s solids control equipment have found significant application in directional crossing projects for the stage treatment of directional crossing drilling fluids.

    Horizontal directional crossing are still very young at home and even abroad. However, in recent years, thanks to the substantial development of pipeline directional crossing and large-scale construction of domestic oil & gas pipelines, crossing length and diameter have kept updating the records. Drilling fluids plays an importan role in directional crossing projects for its decisive impact on the projects’ effects.

    Directional crossing projects demand strong drilling fluids performance:

    Drilling fluids, fairly important for directional crossing projects, is a mixture of water, bentonite, additives, etc. with its composition adjustable on actual requirements in the projects. Complex geology and large crossing diameter & length demand strong drilling fluids performance, and, correspondently, different concoction measures to ensure successful crossing.

    1. Drilling fluids should have appropriate viscosity and liquidity and good ability to carry drill cuttings. In this way, it can stay suspended at the bottom of borehole and its liquidity can easily carry cuttings back to the ground.

    2. Drilling fluids should be able to well protect the inner walls and better stabilize the drill hole wall, especially so for those formations of large-hole-diameter and easy-to-collapse.

    3. Drilling fluids should be highly lubricative so as to well smooth drag of pipelines. It is especially effective in longer crossing projects that lubrication grease can reduce friction coefficient and back dragging force of pipelines.

    4. In order to satisfy the requirements in crossing projects, the fluids pressure and flow should be adjusted from formation to formation and from phase to phase.

    KOSUN Solids Control System, whose design, manufacture and production are mainly done by Xi’an KOSUN Machinery Co., Ltd., has found wide application not only in oil drilling and exploration, but also in horizontal directional crossing projects for stage treatment of directional drilling fluids. Its work in the Qiantang River Crossing Project of Hangzhou-Ningbo Gas Pipeline Engineering in China is one of the successes done by KOSUN’s products, whose stability and advanced technologies allowed the project’s completion on schedule and precision of crossing.

     

  • Modern Application of Decanter Centrifuge

    Economic justification for using decanter centrifuges with weighted muds traditionally has been based on the savings realized by recycling the larger barite particles. However, this is not the most important benefit. When centrifuges are not used, the concentration of fines tends to be higher and the mud quality lower. This often leads to an increase in costly hole problems, which can be a much larger economic factor than the savings from the "barite recovery" process. In fact, the finer barite particles are discarded with the overflow, and this can be a significant part of the total barite present. Using the "quick and dirty" barite recovery concept to justify centrifuge rental is a simple, though flawed calculation that has impeded the understanding of the real benefits of using centrifuges with drilling fluids.

    Modern Application of Decanter Centrifuge

    Much current centrifuge application with drilling fluids is not only unproductive, but is counterproductive. One example of misuse is the practice of running two centrifuges in parallel to "recover the barite" with the first and "discard the drilled solids" with the second. The first stage is traditional centrifuging, returning the underflow to the active mud system. Rather than discarding the overflow, it is routed to the second centrifuge running at a higher speed, where the low-gravity solids supposedly are discarded and the "clean" liquid is returned to the mud.

     

    Modern decanter centrifuge use

    This process cannot, does not, and will not work! It is based on two erroneous assumptions:

    1. the first centrifuge is capable of separating barite from low gravity solids; 

    2. the second centrifuge is capable of producing a solids-free liquid for return to the mud.

    Both of these assumptions are incorrect and ignore the physics of sedimentation. Further, the process assumes that the objective of centrifuging weighted fluids is the removal of low-gravity solids. It is not. The objective is the removal of the colloidal and near-colloidal solids that are so detrimental to drilling fluids performance; their specific gravity is barely relevant.

    Centrifugation is accelerated sedimentation using increased gravitational forces and is described by Stokes’ Law. It states that the sedimentation rate is directly proportional to the difference in density between the settling particle and the surrounding liquid, and inversely proportional to the viscosity of the liquid. It is a mathematical means of expressing what we intuitively know to be true: heavier particles settle quicker in lighter, less viscous liquids.

    Used drilling muds weighted with barite contain both barite and drilled solids ranging from less than 1μm to more than 20μm. Assuming that the average specific gravity of barite and low-gravity solids particles are 4.2 and 2.6 respectively, the mass of a barite particle is equal to that of a LGS particle about 50% larger. For example, if most of the barite particles finer than 6µm remain in the overflow, then most of the low-gravity solids particles finer than 9µm will also remain in the overflow. The larger particles – both barite and drilled solids – will be found in the underflow. Thus, we don’t separate barite from low-gravity solids; we separate heavier (larger) particles from lighter (smaller) ones.

    Let’s consider what happens in the series drilling decanter centrifuging process. Assuming that the "barite recovery" unit makes an 8μm cut on barite, and that the second unit makes a 4μm cut, most of the barite larger than 8µm and the low-gravity solids larger than 12µm are returned to the mud at the first stage. At the second stage, the remaining barite larger than 4µm and the low-gravity solids larger than 6µm are discarded, and the finest – most damaging – material is returned to the mud!

    No matter what the two cut points are, the material that is removed falls between them. This fraction includes barite in a perfectly acceptable size range and low-gravity solids that are too large to increase viscosity, and too fine to be very abrasive. All of the finest solids, both barite and cuttings, are returned to the mud system, assuring a progressive decrease in average particle size and decline in mud quality. The decreasing particle size increases the viscosity and the need for dilution, while diminishing wall cake quality and promoting the deterioration of hole conditions.

    Worse yet, the desirably sized barite that is discarded must be replaced by fresh barite, 30% of which can be particles finer than 6µm, and 10%-15% of which can be expected to be colloidal (< 2µm). This further reduces average particle size and accelerates the decline of mud quality.

    The two-stage centrifugation process is expensive and harmful. By increasing the need for dilution, it increases mud cost and drilling waste volume. Even worse, it actually reduces mud quality. This industry wastes millions of dollars each year running centrifuges in parallel in the belief that we are "recovering the barite at the first stage, and discarding the drilled solids at the second.

  • Functions & Applications of Mud Gun

    READ: KOSUN MG Mud Gun mainly jets drilling fluids with high pressure inside mud tanks, in a bid to avert depositing solid phase at each corner of mud tank and pump inlets, and to deliver drilling fluids amongst compartments.

    KOSUN MG Mud Gun mainly jets drilling fluids with high pressure inside mud tanks, in a bid to avert depositing solid phase at each corner of mud tank and pump inlets, and to deliver drilling fluids amongst compartments.

    So far, both domestic and foreign companies have applied rectangular circulating tanks for better installation and more flexible movement, but even the most capable mud agitator won’t be able to reach the difficult corners. For this reason, the tanks outside China are equipped with nozzled low-pressure hydraulic mixing pipelines while, at home, the problem is being tackled with the assistance of mud gun placed on top of tanks.

    Though hydraulic mixing pipelines can reach the corners difficult for mechanical agitators, much interlocked pipelines may also break the convection current generated by agitator, accelerate its power and hampers the cleaning of setting sand. That is why no such pipelines are found in circulating tanks yet.

    As far as the research demonstrates, it works effectively between depths of 1.5~2.7m and its size varies with mud densities, viscosities and nozzle velocities. Mud gun has found limited application since, as an auxiliary device for mechanical agitating equipment, it cannot stop solid phase from suspending. The mobile mud gun installed on top of tanks needs adjusting at any time, which though will not make it easier to reach the difficult corners. Besides, with solid phase already deposited, mud gun will easily clump that and block tricone nozzles or damage drilling pump.

     

  • Functions of Drilling Fluids Shale Shaker

    Functions of Solids Control Equipment-Shale Shaker

    Shale shaker is the first stage separation equipment for oilfield drilling mud cleaning system. It utilizes vibrating motor to generate vibrating strength. The vibrating strength drives the drilling mud to go through the shale shaker. When the drilling mud goes through the shaker screen, clean mud will filter into mud tank. Not allowable bigger solids will pass the screen surface and be discharged.

     

    What are functions of the drilling fluids shale shaker

    Types of Shale Shaker:

    1) Linear motion shale shaker. It is the most common shaker model for oil and gas drilling solids control system;

    2) Balanced elliptical motion shale shaker. It is not recommended for oil and gas drilling since the flow capacity is big. If the mud flow is not equal, the motion of shaker will be changed. And performance will not be good. Mostly, professional users prefer linear motion for wide application.

    Separation Size of Solids Control Equipment – Shale Shaker

    The separation size of shale shaker depends on shaker screen size. We call it API size or mesh size. The API defers from API 20 to API 325 per API RP13 standard.

    Through changing different API size shaker screen, the shale shaker can separate solids size min. above 40μm (at API 325 shaker screen)

    If you do not need to separate so fine solids, you can choose more fine shaker screen, like 800μm.

    The common screen API size for shale shaker is API60, API80, API100, API140, API160. Customer can choose the suitable size per drilling mud condition.

     

     functions of the drilling fluids shale shaker

    AWD Angle Adjustment System for KOSUN Shale Shaker

    KOSUN AWD angle adjustment system for shale shaker is a patented design. It is synchronized change for both sides. You can adjust from any side, the angle change is the same for both sides.

    KOSUN has options for AWD angle adjustment: Left side of the drilling shale shaker is a small motor for automatic control. And there is control for the small motor on shale shaker control panel. Right side of the shaker utilizes tools for angle adjustment. KOSUN will offer tools together with the shaker. Customer can choose any way to change the angle.

  • Choose Proper Solids Control System on Full Understanding of Oil-based Drilling Fluids

    READ: Oil-based drilling fluids is mainly composed of oil as the continuous phase. KOSUN produces complete set of solids control equipment and drilling fluids solids control system as well as such major products as drilling mud shale shaker, high-efficiency mud cleaner, degasser, decanter centrifuge.

    Oil-based drilling fluids is mainly composed of oil as the continuous phase. It has found wide application in various drilling platforms with its resistance against elevated temperature and calcium salt corrosion, strong sidewall stabilization, good lubricating effects and little damage of oil & gas formation. Water, as an unuseful composition, does not account for more than 10% in oil-based drilling fluids. However, it normally takes up 10%~60% in water-in-oil drilling fluids, as an essential part evenly dispersed in diesel.

    Constituents of Oil-based Drilling Fluids:

    Oil base, water phase, weighting materials, emulsifiers, wetting agents, oleophylic colloid and lime.

    1. In comparison, oil-based drilling fluids has a head start over water-based drilling fluids by its resistance against elevated temperature and calcium salt corrosion, strong sidewall stabilization, good lubricating effects, little damage of oil & gas formation, etc.

    2. It now plays significant role in skilled high-temperature deep well drilling, high-angle directional drilling, horizontal drilling and many other difficult formations, and has found wide application as borehole lubricants, perforated well completion fluids, workover fluids, coring fluids, etc.

    3. It costs more to prepare oil-based mud than water-based mud. Besides, it usually is more damaging to the ecological environment in vinicity of drilling fields.

    4. Since Mid 1970s, low-gel water-in-oil emulsifying drilling fluids has been used in a larger scale to accelerate drilling speed.

    5. Since early 1980s, for purposes of protecting environment and fulfilling offshore drilling needs, low-toxicity water-in-oil emulsifying driling mud which is mineral-oil-based has been progressively rolles out.

    KOSUN produces complete set of solids control equipment and drilling fluids solids control system as well as such major products as drilling mud shale shaker, high-efficiency mud cleaner, degasser, decanter centrifuge, desander, desilter, jet mud mixer, centrifugal pump, shear pump, slurry pump, mud agitator, mud gun, mud tank, etc., which are widely used in such industries as oil drilling, horizontal directional crossing, river dredge, trenchless engineering, etc.

     

  • Why Do People Attach Increasing Importance on Solids Control Equipment?

    READ: The latest development of drilling technology increases its demands on the performance of drilling fluids. It has been proved that it takes a complete set of suitable solids control equipment to improve that via contolling the solid content in drilling fluids, which guarantees the good performance of drilling fluids for a long time.

    In terms of functions, drilling fluids can be categorized into such two groups as useful solids, which contain barite, chemical agents, bentonites, etc. and harmful solids, for instance, drill cuttings, coarse bentonites, silt, etc. Drilling solids control is defined as the technology used to fulfill the demands on the performance of drilling fluids by removing the harmful solids and keeping the useful solids.

    The latest development of drilling technology increases its demands on the performance of drilling fluids. It has been proved that it takes a complete set of suitable solids control equipment to improve that via contolling the solid content in drilling fluids, which guarantees the good performance of drilling fluids for a long time.

    All of the drilling operators wish to own premium drilling fluids since it can enhance drilling facilities and allow them to drill fast and safely. Mere chemical treatment cannot ensure a stable performance of drilling fluids, though at a considerable cost. It will also take effective mechanical treatment equipment to control its solids content ( in fact, water usually works together with mechanical treatment for better effects ). Thus, mechanical solids control is both an essential process in mud performance maintenance and a constituent of normal drilling technology.

    In drilling fluids, the solid particles exerting greatest influence on its performance and mechanical drilling speed are mostly more than 15μm in diameter. They account for 70% of all solid phase. It is popular pursuit that effective mechanical equipment can remove them at any time.

    It is an important measure to apply solids control equipment in optimization of well drilling. And it is necessary for scientific drilling to well control the solid content in the mud. Proper solids control can protect oil/gas bed, decrease drilling torque and friction, reduce the pressure wave of annulus pumping, prevent sticking caused by differential pressure, increase drilling speed, extend service life of drilling bit, minimize abrasion on equipment and tubes, prolong the lifespan of wear parts in drilling fluids circulating system, stabilize the boreholes, improve casing conditions, lessen environmental pollution, lower the expenses on drilling fluids, etc. Statistics show that 1% decrease of solid content ( that is, to reduce drilling fluids density by 0.01 ) in the mud will result in the increase in soft soil mechanical drilling by 8% or so. Accordingly, it will bring remarkable benefits if solids control is well performed.

    In a word, people become increasingly aware of the significance of solids control equipment since it has directly influenced the safe, excellent and efficient drilling as well as protection of oil/gas bed.

     

  • A Brief History of Drilling Fluids Solids Control

    Anyone having a broad familiarity with oil & gas drilling knows that drilling fluids is quite indispensable in oil drilling. It is mainly used to help the drilling of boreholes. There are three main categories of drilling fluids: water-based drilling fluids, oil-based drilling fluids and gaseous drilling fluids.

    Drilling fluids is truly functional in drilling industry since it is able to remove cuttings from wells, suspend and release cuttings, control formation pressures, seal permeable formations, maintain wellbore stability, cool, lubricate and support the bit and drilling assembly, minimize formation damage, etc.

    However, due to the precious materials used in drilling fluids, once it is deserted, it is fairly hard and expensive to produce and concoct another. What is more, drilling fluids is not automatically recyclable since the solid phase, cuttings and gases will penetrate and change its performance from many aspects, for example, the active clay included in cuttings will exert greater negative influence on its viscosity, thus causing difficulties in drilling and forming filter cake.

    Many oilfields and companies injected water or other chemical fluids to dilute drilling fluids for maintaining certain density and visocity. Later, mud bits were discovered as more effective and less costly. They were required for holding an excess volume of drilling mud at the surface, which allows time for settling of the finer rock cuttings and for the release of entrained gas bubbles not mechanically separated. With the development of scientific technology and raise of mud treatment standards worldwide, nowadays mud circulating system also includes various solids control equipment such as shale shaker, hydraulic cones, centrifuges, degassers and so on.

    This addition has largely improved mud treating effects, reduced the considerable cost on drilling fluids and borehole maintenance, and kept drilling workers and environment from fatal damages.

    Shale shaker is the first grade equipment for solids control system. It is quite useful for separation of solid phase above 75 μm in diameter. Then, it sends the mud into the next grade—desander for more delicate separation of solid phase between 45-74 μm in diameter. Treated mud will flow into desilter, the third grade equipment for further treatment where the 15-44 μm cuttings will be taken away. In the fourth grade, low-speed and high-speed centrifuge respectively remove tiny particles like barites and infinitesmal substances that is 2-5 μm in diameter. If the drilling mud is entrained by gases, degasser can be installed between shale shaker and desander.

    After drilling mud goes through all the processes, they can be very well recycled and re-applied in oil drilling.

     

    Key words:

    KOSUN: Established in 1992 and headquartered in Xi’an China, Xi’an KOSUN Machinery Co., Ltd. (KOSUN) is among the first group of manufacturers of oil drilling high-frequence shale shakers, is a specialized centrifuge producer, the pioneer in the field of solids control in China, as well as an expert in drilling waste treatment. Its business scope mainly covers China mainland, Commonwealth of Independent States, North Africa and U.S.A..

    Solids control equipment: Its performance and quality play an important role in solids control technology. Drilling solids control system mainly contains such three parts as drilling fluids circulating tank, drilling fluids purification equipment and electric control equipment, among which the drilling fluids purification equipment includes shale shaker, desander, desilter, degasser, centrifuge, centrifugal pump, agitator, mixer, etc. Cuttings recovery and waste fluids treatment equipment can also be coupled for the environmental sensitive areas.