Operating a graphite calorimeter in quasi-isothermal mode under high-energy x-ray beams

Author:

Kim In Jung,Kim Yun Ho,Park Jong In,Kim Byoung-Chul,Yi Chul-Young

Abstract

Abstract In this study, we developed a semi-active method to run a graphite calorimeter in the quasi-isothermal mode under high-energy x-ray beams. The rate of energy imparted by the beam during irradiation was compensated mainly by removing the electrical heating power based on the pre-calculation and in part by an active automated algorithm, as well, while the temperature of the calorimeter core was kept constant. Irradiations were performed under the linear electron accelerator x-ray beams at 6, 8, 10, 15, and 18 MV. A simple model was applied to analyze the results. The energy imparted to the core was determined with an uncertainty level of 0.2%–0.3%, and the results were reaffirmed by comparing it with that obtained by the quasi-adiabatic mode. The normalized root-mean-square deviation to the mean from the quasi-adiabatic mode was 0.11%, and the associated uncertainty was 0.16% taking into account the correlation of the uncertainty components. This level of agreement showed that the present method is practical for the high-energy x-ray dosimetry.

Funder

Korea Research Institute of Standards and Science

Publisher

IOP Publishing

Subject

Radiology, Nuclear Medicine and imaging,Radiological and Ultrasound Technology

Reference27 articles.

1. AAPM’s TG-51 protocol for clinical reference dosimetry of high-energy photon and electron beams;Almond;Med. Phys.,1999

2. Absorbed-dose calibrations in high-energy photon beams at the national physical laboratory: conversion procedure;Burns;Phys. Med. Biol.,1994

3. BNM-LNHB graphite calorimeter: a new constant-temperature operating mode for absorbed dose rate measurements;Daures,2003

4. New constant-temperature operating mode for graphite calorimeter at LNE-LNHB;Daures;Phys. Med. Biol.,2005

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