Calculation of the Model of Coesite Inclusions and Analysis of Their Retrometamorphic Paths
Dawei Meng, DING Xiaokun, Xiuling Wu
Abstract
Dawei Meng, DING Xiaokun, Xiuling Wu
Abstract
Abstract The process and path of retrometamorphism of coesite have great significance to our understanding of the P‐T tracks of the exhumation of ultrahigh‐pressure metamorphic rocks. Most of the coesites in the eclogite from Shima, Anhui Province, the Dabie Mountains, China, are found degraded to quartz partly or wholly, with ruptures occurring in the shells, outside which include the coesite and quartz. According to the microscopic observation, the sample of coesite inclusion is composed of garnet, quartz and coesite, based on which we have built a three‐shelled composite sphere model to compute the transition of coesite. Based on the crystal growth formulas and pressure conditions of the ruptures in the garnet, we have calculated the radius of the quartz sphere, which depends on temperature, and eventually drawn the different retrometamorphic paths for different retrometamorphism rates.
A significance statement is not available in the OpenAlex record.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Abstract The process and path of retrometamorphism of coesite have great significance to our understanding of the P‐T tracks of the exhumation of ultrahigh‐pressure metamorphic rocks. Most of the coesites in the eclogite from Shima, Anhui Province, the Dabie Mountains, China, are found degraded to quartz partly or wholly, with ruptures occurring in the shells, outside which include the coesite and quartz. According to the microscopic observation, the sample of coesite inclusion is composed of garnet, quartz and coesite, based on which we have built a three‐shelled composite sphere model to compute the transition of coesite. Based on the crystal growth formulas and pressure conditions of the ruptures in the garnet, we have calculated the radius of the quartz sphere, which depends on temperature, and eventually drawn the different retrometamorphic paths for different retrometamorphism rates.
Key concepts: Coesite, Eclogite, Quartz, Geology, Inclusion (mineral), RADIUS, Metamorphic rock, Pyrope