Simulasi respon model anomali lempeng tipis metode geofisika elektron magnetik horisontal loop

Lestari , Sri (1997) Simulasi respon model anomali lempeng tipis metode geofisika elektron magnetik horisontal loop. Undergraduate thesis, FMIPA UNDIP.

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Abstract

Telah dilakukan penelitian Simulasi Respon Model Anomali Lempeng Tipis Metode Geofisika Elektromagnetik Horisontal Loop. Pada metode ini menggunakan prinsip Induksi Gelombang Elektromagnetik. Dari simulasi tersebut diatas diperoleh tampilan, prinsip umum metode elektromagnetik, konfigurasi metode elektromagnetik horisontal, konfigurasi rumusan medan primer pada loop melingkar, profil lintasan pengukuran meta de elektromagnetik horisontal loop. Dari hasil-hasil simulasi tersebut diperoleh grafik hubungan kemiringan konduktor dengan ketidaksimetrisan kurva, kedalaman konduktor dengan lebar setengah tinggi puncak positif kurva, jarak T-R dengan lebar setengah tinggi puncak negatif kurva, panjang konduktor kebawah dengan lebar setengah puncak positif kurva, daya pisah konduktor dengan jarak Transmitter-Receiver. There was done the Examination of Simulation Respond Anomaly Thin-Sheet's Model the Method of Geophysics Electromagnetic Horizontal Loop. This method uses the principle of electromagnetic wave induction. From simulation above was appearance, the general principle of electromagnetic method the configuration of Electromagnetic Horizontal Loop's Method of Traverse Line of Electromagnetic Horizontal Loop. A lot of results of simulation are the graphic of Connect Sloping conductor with Uncimetrisme Curve, Depth Conductor with wide half height of top curve positive, T-R distance with wide half height of top curve negative, Long conductor is under with wide half top curve positive, power separate conductor with distance transmitter-receiver. viii Thik document is unclip institutional rceposnory LoiteLuuli. Ine pi ur Lupy n6, t owners) agree that UNDIP-IR may, without changing the content, translatii? the submission to any medium or format for the purpose of preservation. The author(s) or copyright owner(s) also agree that UNDIP-I,R may keep more than one copy of this submission for purposes of security, back-up and preservation. ( http://eprints.undip.ac.id) II

Item Type:Thesis (Undergraduate)
Subjects:Q Science > QC Physics
Divisions:Faculty of Science and Mathematics > Department of Physics
ID Code:30369
Deposited By:Mr UPT Perpus 1
Deposited On:28 Oct 2011 07:17
Last Modified:28 Oct 2011 07:17

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