
Complex K8
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FOB, CIF & EXW terms available
Key Highlights
- Made in Russia - engineered for durability
- Suitable for challenging environments
- Lower cost of ownership than European alternatives
- Bulk orders available with volume discounts
- Documentation and customs clearance assistance provided
Description
The instrument is designed to measure:
- apparent resistivity (AR) of the rocks intersected by the borehole, gradient lateral logging probes (LLP) A8,0M1,0N, A4,0M0,5N, A2,0M0,5N, N0,5M2,0A, A1,0M0,1N, A0,4M0,1N, potential-probe (KC) N11.0M0.5A, two three-electrode lateral logging probes (BC and BCs), two-electrode lateral micro logging probe (BMK), gradient-micro probe A0.025M0.025N (MZg) and potential-micro probe A0.05M (MZp);
- apparent specific electrical conductivity (ESEC) of the rocks intersected by the borehole with the 3I1.0 induction logging (IL) probe;
- UES of the fluid filling the borehole with a resistivityvimeter (REZ);
- spontaneous polarisation potential (SP);
- four mutually perpendicular distances (radii) R1, R2, R3, R4 from the instrument axis to the borehole wall by profiler (PF);
- two mutually perpendicular diameters (profiles) D1 and D2 of the borehole passing through the instrument axis by the profiler: D1=R1+R3; D2 =R2+R4.
- apparent resistivity (AR) of the rocks intersected by the borehole, gradient lateral logging probes (LLP) A8,0M1,0N, A4,0M0,5N, A2,0M0,5N, N0,5M2,0A, A1,0M0,1N, A0,4M0,1N, potential-probe (KC) N11.0M0.5A, two three-electrode lateral logging probes (BC and BCs), two-electrode lateral micro logging probe (BMK), gradient-micro probe A0.025M0.025N (MZg) and potential-micro probe A0.05M (MZp);
- apparent specific electrical conductivity (ESEC) of the rocks intersected by the borehole with the 3I1.0 induction logging (IL) probe;
- UES of the fluid filling the borehole with a resistivityvimeter (REZ);
- spontaneous polarisation potential (SP);
- four mutually perpendicular distances (radii) R1, R2, R3, R4 from the instrument axis to the borehole wall by profiler (PF);
- two mutually perpendicular diameters (profiles) D1 and D2 of the borehole passing through the instrument axis by the profiler: D1=R1+R3; D2 =R2+R4.
Specifications
Measuring the tension of the logging cable
0...2000 kg
Measurement of DER of natural gamma radiation by GC probe
1...250
Measurement of borehole tool casing position sight angle
0...360
Measurement of borehole azimuthal angle with inclinometer
0...360
Measurement of borehole zenith angle with inclinometer
0...180
Measurement of profiles and diameter of a circular cross section of a borehole with a profiler
100...700 mm
Measurement of borehole radii with profiler
50...350 mm
Measurement of SAR with SAR probe
-0.5...0.5 V
Measurement of borehole fluid UES with resistivimeter
0.05...5 ohm
Measurement of apparent resistivity of rocks with IR probe
10...2500
D measurement with micro-cavernometer
110...300 mm
Measurement of apparent UES of rocks by probes A0.025M0.025N and A0.05M
0.1...40 ohm
Measurement of apparent UES of rocks by probes A0.025M0.025N and A0.05M
0.2...500 ohm
Measurement of apparent resistivity of rocks by BMK probe
0.2...10000 ohm
Measurement of apparent resistivity of rocks with BK and BKc probes
0.2...1000 ohm
Measurement of apparent resistivity of rocks by KC probe
0.2...5000 ohm
Measurement of apparent UES of rocks by BKZ probes
0.2...5000 ohm
Note: All specifications are provided by the manufacturer and may be subject to change. Please contact us to confirm the latest specifications before placing your order.
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Delivery Time
Sea freight: 30-60 days (depending on destination)
Air freight: 14-21 days (for urgent orders)
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