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Mud Logging Unit

Product

Overview

A mud logging unit is the formation evaluation station that sits beside a drilling rig and reads the well as it is being drilled. Everything that comes back up the borehole, the drilling mud, the gas dissolved in it, and the rock cuttings carried in it, passes the unit, which measures it, describes it, and ties it to depth. The result is the mud log, a continuous record showing what rock the bit is in, where hydrocarbons appear, and how the well is behaving. It is the first look at a formation, available hours or days before wireline logs, and it doubles as a safety watch that warns of dangerous gas and of the pressure changes that precede a blowout.

The unit is a self-contained cabin packed with cooperating systems. The Logging Cabin houses and protects the crew, the Gas Detection System system reads hydrocarbons in the mud, the Cuttings Analysis bench describes the rock, the Rig Sensor Suite suite watches the rig, the Data Acquisition system gathers it all, the Geologist Workstation builds the log, and the Power and Utilities system keeps it running.

The cabin

Because the unit works on a rig floor where flammable gas can be present, the Logging Cabin is built for the hazard. Its insulated Cabin Shell sits on a Transport Skid so a crane moves it between wells, and a Pressurization Unit blower holds the inside above ambient pressure so flammable gas cannot leak in around the electronics. A Cabin HVAC unit keeps the instruments and crew cool in desert heat or arctic cold, and Work Desk desks give the mud logger and the data engineer their workstations. The cabin is the safe island from which the crew watches a process that is itself hazardous.

Gas detection

The most closely watched output is gas. A Gas Trap agitator at the flowline strips dissolved and entrained gas from the returning mud, and a Sample Gas Pump draws it through a heated Sample Gas Line into the cabin. There a Total Gas Detector detector reads total combustible gas continuously while a Gas Chromatograph separates the individual hydrocarbons from methane through pentane, whose ratios fingerprint whether the formation holds gas, oil, or water. Because gas read at surface lagged behind the bit by the time the mud took to circulate up, the system computes that lag from pump strokes so each reading is placed at the depth it came from. Two H2S Detector detectors watch for toxic hydrogen sulfide, a life-safety function as much as an evaluation one.

Cuttings analysis

While the gas system reads fluids, the Cuttings Analysis bench reads the solid rock. Samples are caught at set depth intervals at the shale shakers and brought to the unit, where the Wash Bench and a Wet Sieve Shaker wash and sieve them clean of mud. The mud logger then studies each sample under a Binocular Microscope to identify the lithology, porosity, and any oil staining, checks for hydrocarbons under the UV Fluorescence Box ultraviolet box where oil shows fluoresce, and measures carbonate content with a Calcimeter. A Drying Oven dries the washed cuttings for description and storage. Together these tests turn a bag of wet chips into a lithological description that fills the center of the mud log.

Rig sensors

The mud log only makes sense if everything is tied to depth and to the state of the rig, which is the job of the Rig Sensor Suite suite. A Depth Sensor on the drawworks tracks bit depth and rate of penetration, Pump Stroke Counter counters on the mud pumps give flow and the all-important lag time, and Pit Level Sensor level sensors watch the mud pits so a gain warns of a kick or a loss warns of lost circulation. A Flow Paddle paddle, a Hookload Sensor hookload sensor, a Torque Sensor, and Pressure Sensor standpipe sensors round out the picture. These channels are both evaluation data and the early warning that lets the crew shut the well in before a kick becomes a blowout.

Acquisition and the log

All of these signals converge on the Data Acquisition system. Sensor lines from the hazardous rig zone pass through Safety Barrier intrinsic safety barriers and into IO Module modules on the Acquisition Chassis, where the Microcontroller and the Acquisition Computer digitize and time-align every channel against both depth and clock. From there the Geologist Workstation takes over: the Workstation PC runs the logging software, the geologist interprets the streams on LCD Panel screens, the Log Printer prints the depth-scaled log, and a Satellite Link link streams it to the operator's office. A Rig-Floor Repeater repeats gas and drilling data to the driller.

Power and use

A rig's power can dip and surge, so the Power and Utilities system conditions it: a UPS carries the acquisition through dropouts, Power Supply units feed the instruments, a Power Distribution panel splits the load, and a Carrier Gas Cylinder cylinder supplies the chromatograph. Mud logging units work on nearly every oil and gas well, staffed around the clock by a mud logger and a data engineer. They give the operator the earliest read on the formation and a continuous safety watch, and their log is correlated later with wireline and the cores recovered by a Diamond Core Drill Rig to build the full picture of the well.

Mud Logging Unit parts and their functions

7 top-level parts · 69 parts in total · full bill of materials below
Mud Logging Unit parts diagram: 1 logging cabin, 2 gas detection system, 3 cuttings analysis, 4 rig sensor suite, 5 data acquisition, 6 geologist workstation, 7 power and utilities. 69 parts in 7 top-level items.
Mud Logging Unit parts diagram. Numbers match the table below; each box is one top-level part or assembly with what it contains.
#PartQtyWhat it does
1 Logging Cabin 6 parts 1× Logging cabin
2 Gas Detection System 6 parts 1× Gas detection system
3 Cuttings Analysis 6 parts 1× Cuttings analysis
4 Rig Sensor Suite 7 parts 1× Rig sensor suite
5 Data Acquisition 7 parts 1× Data acquisition
6 Geologist Workstation 6 parts 1× Geologist workstation
7 Power and Utilities 5 parts 1× Power and utilities

3D model

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Build & assembly graph

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Bill of materials for Mud Logging Unit

7 top-level lines · 50 rows shown · 69 parts total · indented to 3 levels
# Item / sub-assembly Part no. Qty/assy Ext. qty Parts Type
1 Logging Cabin 6 parts mud-logging-unit-cabin 1× 1 12 assembly
1.1 Cabin Shell mud-logging-unit-cabin-shell 1× 1 · part
1.2 Transport Skid mud-logging-unit-skid 1× 1 · part
1.3 Cabin HVAC mud-logging-unit-hvac 1× 1 · part
1.4 Pressurization Unit mud-logging-unit-pressurization 1× 1 · part
1.5 Work Desk mud-logging-unit-desk 2× 2 · part
1.6 Sheet Metal Panel sheet-panel 6× 6 · part
2 Gas Detection System 6 parts mud-logging-unit-gas 1× 1 7 assembly
2.1 Gas Trap mud-logging-unit-gas-trap 1× 1 · part
2.2 Gas Chromatograph mud-logging-unit-chromatograph 1× 1 · part
2.3 Total Gas Detector mud-logging-unit-total-gas 1× 1 · part
2.4 H2S Detector mud-logging-unit-h2s-sensor 2× 2 · part
2.5 Sample Gas Pump mud-logging-unit-sample-pump 1× 1 · part
2.6 Sample Gas Line mud-logging-unit-gas-line 1× 1 · part
3 Cuttings Analysis 6 parts mud-logging-unit-cuttings 1× 1 6 assembly
3.1 Wash Bench mud-logging-unit-sample-bench 1× 1 · part
3.2 Binocular Microscope mud-logging-unit-microscope 1× 1 · part
3.3 UV Fluorescence Box mud-logging-unit-uv-box 1× 1 · part
3.4 Calcimeter mud-logging-unit-calcimeter 1× 1 · part
3.5 Wet Sieve Shaker mud-logging-unit-sample-shaker 1× 1 · part
3.6 Drying Oven mud-logging-unit-drying-oven 1× 1 · part
4 Rig Sensor Suite 7 parts mud-logging-unit-sensors 1× 1 12 assembly
4.1 Depth Sensor mud-logging-unit-depth-sensor 1× 1 · part
4.2 Pump Stroke Counter mud-logging-unit-pump-counter 2× 2 · part
4.3 Pit Level Sensor mud-logging-unit-pit-sensor 4× 4 · part
4.4 Flow Paddle mud-logging-unit-flow-sensor 1× 1 · part
4.5 Hookload Sensor mud-logging-unit-weight-sensor 1× 1 · part
4.6 Torque Sensor mud-logging-unit-torque-sensor 1× 1 · part
4.7 Pressure Sensor pressure-sensor 2× 2 · part
5 Data Acquisition 7 parts mud-logging-unit-acquisition 1× 1 18 assembly
5.1 Acquisition Chassis mud-logging-unit-acq-chassis 1× 1 · part
5.2 IO Module mud-logging-unit-io-module 4× 4 · part
5.3 Safety Barrier mud-logging-unit-barrier 4× 4 · part
5.4 Acquisition Computer mud-logging-unit-acq-computer 1× 1 · part
5.5 Bare PCB pcb-bare 1× 1 · part
5.6 Microcontroller mcu 1× 1 · part
5.7 Connector connector 6× 6 · part
6 Geologist Workstation 6 parts mud-logging-unit-workstation 1× 1 8 assembly
6.1 Workstation PC mud-logging-unit-workstation-pc 1× 1 · part
6.2 LCD Panel lcd-panel 3× 3 · part
6.3 Log Printer mud-logging-unit-log-printer 1× 1 · part
6.4 Satellite Link mud-logging-unit-satellite 1× 1 · part
6.5 Rig-Floor Repeater mud-logging-unit-rig-display 1× 1 · part
6.6 Wire Bundle wire-bundle 1× 1 · part
7 Power and Utilities 5 parts mud-logging-unit-power 1× 1 6 assembly
7.1 UPS mud-logging-unit-ups 1× 1 · part
7.2 Power Supply power-supply 2× 2 · part
7.3 Power Distribution mud-logging-unit-distribution 1× 1 · part
7.4 Carrier Gas Cylinder mud-logging-unit-carrier-gas 1× 1 · part
7.5 Fastener Set fastener-set 1× 1 · part

Sourcing: possible vendors

Browse the supplier directory → Prices, MOQ, and lead times are algorithmic estimates, not quotes, and not claims about these companies. Company mappings are curated by keyword; est. price band $10k–$50M. How estimates work
VendorHQSpecialtyMOQLead time
🇺🇸SLB
slb.com ↗
Houston, US Oilfield services & equipment made to order 24–48 wks
🇺🇸Halliburton
halliburton.com ↗
Houston, US Oilfield services made to order 24–48 wks
🇺🇸Baker Hughes
bakerhughes.com ↗
Houston, US Energy technology made to order 24–48 wks
🇺🇸NOV
nov.com ↗
Houston, US Drilling equipment made to order 24–48 wks
🇬🇧TechnipFMC
technipfmc.com ↗
London, GB Subsea & surface systems made to order 24–48 wks

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