• DTS-1000B,HERTZINNO,DTS-1000B | High-Precision Distributed Temperature Sensing for Well Logging
  • DTS-1000B,HERTZINNO,DTS-1000B | High-Precision Distributed Temperature Sensing for Well Logging

DTS-1000B

The DTS-1000B is an ultra-high-precision Distributed Fiber Optic Temperature Sensing Analyzer specifically engineered for the demanding environments of oil and gas wells. Based on the principles of Raman scattering and Optical Time Domain Reflectometry (OTDR), the system converts a passive fiber optic cable into a continuous string of thousands of high-accuracy sensors.

Model
DTS-1000B
Operating Distance
10 km
Temperature Resolution
0.05°C @ 1km / 0.1°C @ 8km
Spatial Resolution
0.5 m
Sampling Interval
0.5 m
Measurement Time
10 seconds
Internal Channels
1 Channel
Sensing Fiber
Multimode Fiber 50/125μm
  • DTS-1000B,HERTZINNO,DTS-1000B | High-Precision Distributed Temperature Sensing for Well Logging
  • Description

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With its superior spatial resolution and temperature sensitivity, the DTS-1000B provides real-time, online monitoring of downhole thermal dynamics, enabling operators to optimize production, detect leaks, and monitor injection profiles with unprecedented detail.
  • Industry-Leading Precision: Delivers a spatial resolution of 0.5m and a temperature resolution of 0.05°C (at 1km), ensuring highly granular data for complex well logging applications.

  • Rapid Data Acquisition: Achieves a full measurement cycle in just 10 seconds, allowing for the capture of transient thermal events in dynamic well environments.

  • Zero-Power Downhole Sensing: The sensing cable requires no electrical power downhole, making it intrinsically safe and immune to electromagnetic interference (EMI).

  • Long-Range Coverage: Provides a continuous monitoring range of up to 10km, suitable for deep vertical wells and long horizontal segments.
  • High Reliability: Engineered for a missing report rate of zero, ensuring continuous data availability for critical decision-making.
  • Unattended Operation: Supports long-distance automated monitoring and remote access, facilitating remote reservoir management.

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