scholarly journals APLIKASI ALAT PULSE NEUTRON LOGGING UNTUK MENENTUKAN ZONA HIDROKARBON BARU DI LAPANGAN X

2020 ◽  
Vol 2 (2) ◽  
pp. 42-50
Author(s):  
Eko Prastio Eko

Pengukuran Neutron Porosity pada sumur terbuka (Open Hole) ditujukan untuk mengukur indeks hidrogen yang terdapat pada formasi batuan. Indeks hidrogen didefinsikan sebagai rasio dari konsentrasi atom hidrogen setiap cm3 batuan terhadap kandungan air murni pada suhu 75oF. Neutron Porosity log tidaklah mengukur porositas sesungguhnya dari batuan, melainkan yang diukur adalah kandungan hidrogen yang terdapat pada pori-pori batuan. Secara sederhana, semakin berpori batuan semakin banyak kandungan hidrogen dan semakin tinggi indeks hidrogen. Sehingga, shale yang banyak mengandung hidrogen dapat ditafsirkan memiliki porositas yang tinggi pula. Untuk mengantisipasi uncertainty tersebut, maka pada praktiknya, interpretasi porositas dapat dilakukan dengan mengelaborasikan log density logging. Pengukuran diatas dilakukan pada sumur terbuka (Open Hole) untuk mengetahui respon dari litology, salinity, tipe fluida dan lain-lain. Sedangkan, pengukuran Neutron pada sumur tertutup (Cased Hole) akan sulit dan membutuhkan alat yang khusus. Pada Tesis kali ini penulis ingin memberikan suatu metode penilian formasi dengan mengunakan alat Reservoir Tool Monitoring (RMT) yang dapat bekerja di dalam casing maupun di dalam tubing. Kata Kunci : Alat Pulse Neutron Logging, Hidrocarbon dalam Tubing

2017 ◽  
Vol 59 (9) ◽  
pp. 774-778
Author(s):  
Zhiyong Tan ◽  
Weili Dong ◽  
Jie Mei ◽  
Jialin Liu ◽  
Jiayi Liu ◽  
...  

2019 ◽  
Vol 32 (3) ◽  
pp. 306-315 ◽  
Author(s):  
Liang Xu ◽  
Yi He ◽  
Shaohua Ma ◽  
Li Hui

T800/high-temperature epoxy resin composites with different hole shapes were subjected to hygrothermal ageing and thermal-oxidative ageing, and the effects of these different ageing methods on the open-hole properties of the composites were investigated, including analyses of the mass changes, surface topography changes (before and after ageing), fracture morphologies, open-hole compressive performance, dynamic mechanical properties and infrared spectrum. The results showed that only physical ageing occurred under hygrothermal ageing (70°C and 85% relative humidity), and the equilibrium moisture absorption rate was only approximately 0.72%. In contrast, under thermal-oxidative ageing at 190°C, both physical ageing and chemical ageing occurred. After ageing, the open-hole compressive strength of the composite laminates with different hole shapes decreased significantly, but the open-hole compressive strength after thermal-oxidative ageing was greater than that after hygrothermal ageing. Among the aged and unaged laminates, the laminates with round holes exhibited the largest open-hole compressive strength, followed by those with the elliptical holes, square holes and diamond holes. The failure modes of the laminates were all through-hole failures. The unaged samples had a glass transition temperature ( T g) of 226°C, whereas the T g of the samples after hygrothermal ageing was 208°C, which is 18°C less than that of the unaged samples, and the T g of the samples after thermal-oxidative ageing was 253°C, which is 27°C greater than that of the unaged samples.


2018 ◽  
Vol 149 ◽  
pp. 66-73 ◽  
Author(s):  
Vedad Tojaga ◽  
Simon P.H. Skovsgaard ◽  
Henrik Myhre Jensen

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