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Cranfield Thermosiphon Test DTS Data

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Thermal profile data acquired using Silixa Ultima Distributed Temperature Sensor (DTS) at Cranfield, MS field test

Citation Formats

TY - DATA AB - Thermal profile data acquired using Silixa Ultima Distributed Temperature Sensor (DTS) at Cranfield, MS field test AU - Freifeld, Barry DB - Open Energy Data Initiative (OEDI) DP - Open EI | National Renewable Energy Laboratory DO - 10.15121/1261964 KW - geothermal KW - CO2 geothermal KW - thermal profile KW - thermosiphon KW - distributed temperature sensor KW - DTS KW - distributed temperature sensing KW - thermosiphoning LA - English DA - 2015/01/19 PY - 2015 PB - Lawrence Berkeley National Laboratory T1 - Cranfield Thermosiphon Test DTS Data UR - https://doi.org/10.15121/1261964 ER -
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Freifeld, Barry. Cranfield Thermosiphon Test DTS Data. Lawrence Berkeley National Laboratory, 19 January, 2015, GDR. https://doi.org/10.15121/1261964.
Freifeld, B. (2015). Cranfield Thermosiphon Test DTS Data. [Data set]. GDR. Lawrence Berkeley National Laboratory. https://doi.org/10.15121/1261964
Freifeld, Barry. Cranfield Thermosiphon Test DTS Data. Lawrence Berkeley National Laboratory, January, 19, 2015. Distributed by GDR. https://doi.org/10.15121/1261964
@misc{OEDI_Dataset_6969, title = {Cranfield Thermosiphon Test DTS Data}, author = {Freifeld, Barry}, abstractNote = {Thermal profile data acquired using Silixa Ultima Distributed Temperature Sensor (DTS) at Cranfield, MS field test}, url = {https://gdr.openei.org/submissions/776}, year = {2015}, howpublished = {GDR, Lawrence Berkeley National Laboratory, https://doi.org/10.15121/1261964}, note = {Accessed: 2025-05-03}, doi = {10.15121/1261964} }
https://dx.doi.org/10.15121/1261964

Details

Data from Jan 19, 2015

Last updated Jan 21, 2018

Submitted Apr 19, 2016

Organization

Lawrence Berkeley National Laboratory

Contact

Barry Freifeld

510.486.4381

Authors

Barry Freifeld

Lawrence Berkeley National Laboratory

Research Areas

DOE Project Details

Project Name Geothermal Energy Production Coupled with CCS Heat Recovery Using an Innovative High Efficiency Supercritical CO2 Turboexpansion Cycle

Project Lead Sean Porse

Project Number FY16 AOP 1.3.2.1

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