Numerical simulation of magma intrusion on the thermal evolution of low-rank coal

Author:

Jiang JingyuORCID,Zhao Ke,Cheng Yuanping,Zheng Shaojie,Zhang Shuo,Wang Ran

Funder

National Natural Science Foundation of China

Priority Academic Program Development of Jiangsu Higher Education Institutions

Publisher

Springer Science and Business Media LLC

Subject

Earth-Surface Processes,Geology,Pollution,Soil Science,Water Science and Technology,Environmental Chemistry,Global and Planetary Change

Reference43 articles.

1. Aarnes I, Svensen H, Polteau S, Planke S (2011) Contact metamorphic devolatilization of shales in the Karoo Basin, South Africa, and the effects of multiple sill intrusions. Chem Geol 281:181–194

2. Barker CE, Pawlewicz MJ (1994) Calculation of vitrinite reflectance from thermal histories and peak temperatures: a comparison of methods: Vitrinite Reflectance as a Maturity Parameter. Amer Chem Soc Symp 570:216–229

3. Beamish BB, Crosdale PJ (1998) Instantaneous outbursts in underground coal mines: An overview and association with coal type. Int J Coal Geol 35(1–4):27–55

4. Carslaw HS, Jaeger JC (1959) Conduction of Heat in Solids. Oxford University Press, Oxford, pp 273–281

5. Charles EB, Yvonne B, Michael DL (1998) Fluid inclusion and vitrinite reflectance geothermometry compared to heat-flow models of maximum paleotemperature next to dikes, western onshore Gippsland Basin, Australia. Int J Coal Geol 37(1–2):73–111

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