In response to the growing demands of oil and gas geological research and production, the Wuxi Petroleum Geology Research Institute, part of the Petroleum Exploration and Development Research Institute, has introduced an upgraded hot-pressure simulation tester. This new model was developed by enhancing the heating system and automation control mechanisms of the original conventional device. The improvements have significantly enhanced the accuracy of temperature control and measurement, leading to more reliable and precise experimental results.
Compared to the previous version, the new simulator brings notable advancements in several key areas. First, it now features improved heat conduction and automatic temperature regulation, ensuring uniform temperature distribution within the chamber, especially during high-temperature conditions. This allows the simulated samples to better reflect the actual evolution of hydrocarbons. Second, the temperature control system has been optimized with both external and internal monitoring methods, effectively eliminating the risk of overheating that was present in the older model. Third, the vacuum pump circuit has been redesigned, enabling automatic switching between vacuuming and nitrogen filling, which simplifies the operation process and improves user experience.
According to industry reports, hot rock simulation tests are widely applied in oil and gas exploration, particularly in the study of organic matter evolution, source rock comparison, hydrocarbon generation mechanisms, and migration patterns. The use of this technology provides unique insights and valuable data, contributing significantly to our understanding of hydrocarbon formation and geochemical processes.
The successful development of this advanced hot-pressure simulation tester not only promotes the broader application of this testing method but also offers important theoretical value. Its ability to accurately measure and calculate the carbon number of liquid hydrocarbons across 6 to 14 fractions makes it a powerful tool for analyzing the hydrocarbon generation patterns of source rocks. It also supports quantitative evaluation of oil reservoirs and enhances our understanding of geochemical changes within specific hydrocarbon fractions.
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