• Title/Summary/Keyword: ultrasonic pulse velocity

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The Correlation analysis of Hydrotherapy and pulse wave velocity in patients with sequelae of CVA (중풍후유증 환자에 있어서 맥파전달속도와 초음파 족욕에 따른 상관관계에 관한 임상적 연구)

  • Yun, Dae-Chul;Kim, Hee-Taek;Ryu, Ju-Hyun;Choi, Jong-Min
    • The Journal of Korean Medicine Ophthalmology and Otolaryngology and Dermatology
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    • v.19 no.1
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    • pp.135-144
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    • 2006
  • Objective : The purpose of this study was to know the clinical effects of hydrotherapy based Ultrasonic spa using SoPung-Tang on pulse wave velocity in patients with sequelae of CVA. Methods : PWV(Pulse wave velocity), Bio Chemistry, Hematology, Blood Pressure were investigated in 20 patients(Experimental group 13, Control group 7) who have been in Semyung Oriental medicine hospital from December 2005 to February 2006. Results : 1. In experimental group, Rt PWV diminished 4.8%, Lt PWV 5.1%. 2. In control group, Rt PWV diminished 3.3%, Lt PWV 1.8%. Conclusion : Hydrotherapy based Ultrasonic spa using SoPung-Tang showed useful effects in patients with sequelae of CVA.

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Study on the Compressive Strength Equation using Ultrasonic Pulse Velocity with Concrete Exposed to High Temperature (고온을 받은 콘크리트 적용을 위한 초음파 속도를 이용한 강도추정식 검토)

  • Hwang, Eui-Chul;Kim, Gyu-Yong;Choe, Gyeong-Cheol;Yoon, Min-Ho;Lee, Bo-Kyeong;Lee, Young-Wook
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2015.11a
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    • pp.139-140
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    • 2015
  • The purpose of this study was to evaluate existing compressive strength equation with concrete exposed to high temperature by ultrasonic pulse velocity. As the result, original compressive strength equation is proper only for compressive strength of normal concrete. Therefore, an accumulation of experimental database of concrete exposed to high temperature is necessary for proposal of new compressive strength equation.

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Numerical modelling and finite element analysis of stress wave propagation for ultrasonic pulse velocity testing of concrete

  • Yaman, Ismail Ozgur;Akbay, Zekai;Aktan, Haluk
    • Computers and Concrete
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    • v.3 no.6
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    • pp.423-437
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    • 2006
  • Stress wave propagation through concrete is simulated by finite element analysis. The concrete medium is modeled as a homogeneous material with smeared properties to investigate and establish the suitable finite element analysis method (explicit versus implicit) and analysis parameters (element size, and solution time increment) also suitable for rigorous investigation. In the next step, finite element analysis model of the medium is developed using a digital image processing technique, which distinguishes the mortar and aggregate phases of concrete. The mortar and aggregate phase topologies are, then, directly mapped to the finite element mesh to form a heterogeneous concrete model. The heterogeneous concrete model is then used to simulate wave propagation. The veracity of the model is demonstrated by evaluating the intrinsic parameters of nondestructive ultrasonic pulse velocity testing of concrete. Quantitative relationships between aggregate size and testing frequency for nondestructive testing are presented.

Freezing and Thawing Properties of Polypropylene Fiber Reinforced Eco-concrete (폴리프로필렌 섬유보강 에코콘크리트의 동결융해 특성)

  • Sung Chan-Yong
    • Journal of The Korean Society of Agricultural Engineers
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    • v.48 no.2
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    • pp.59-66
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    • 2006
  • This study is performed to evaluate freezing and thawing properties of polypropylene fiber reinforced eco-concrete using soil, natural coarse aggregate, soil compound and polypropylene fiber. The mass loss ratio is decreased with increasing the content of natural coarse aggregate and soil compound, but it is increased with increasing the content of polypropylene fiber. The ultrasonic pulse velocity, dynamic modulus of elasticity and durability factor are increased with increasing the content of natural coarse aggregate and soil compound, but it is decreased with increasing the content of polypropylene fiber. The mass loss ratio, ultrasonic pulse velocity, dynamic modulus of elasticity and durability factor are $1.49{\sim}3.32%,\;1,870{\sim}2,465\;m/s,\;77X10^2{\sim}225X10^2\;MPa\;and\;84.6{\sim}92.8$ after freezing and thawing 300 cycles, respectively. These eco-concrete can be used for environment-friendly side walk and farm road.

Internal Damage Assessment of Concrete for Various Load Histories using Ultrasonic Pulse Velocity Method (초음파속도법을 이용한 하중이력상태에 따른 콘크리트 내부결함 평가)

  • Kim, Jong-Ho;Kim, Jee-Sang;Park, Jong-Bum
    • Proceedings of the Korea Concrete Institute Conference
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    • 2010.05a
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    • pp.347-348
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    • 2010
  • Ultrasonic pulse velocity method is investigated to evaluate assessment on concrete properties without loss of structural function. In addition, a relatively simple, and economical, and high adaptability, and so the need is increasing. In this study, the load of the concrete historical conditions based on ultrasonic pulse velocity measurements to analyze the results of the internal defects of concrete was evaluated.

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Permeability of Polypropylene Fiber Reinforced Soil Concrete Pavement Material (폴라프로필렌 섬유보강 흙콘크리트 포장재료의 투수 특성)

  • Sung, Chan-Yong
    • Journal of The Korean Society of Agricultural Engineers
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    • v.46 no.6
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    • pp.13-19
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    • 2004
  • This study was performed to evaluate permeable properties of eco-concrete using soil, natural coarse aggregate, soil compound and polypropylene fiber. The fIexural strength, ultrasonic pulse velocity and dynamic modulus of elasticity were increased with increasing the content of coarse aggregate, soil compound and polypropylene fiber. The flexural strength, ultrasonic pulse velocity and dynamic modulus of elasticity were 259 MPa, 3,527 m/s and 275 ${\times}$ 102 MPa at the curing age of 28 days, respectively. The coefficient of permeability was decreased with increasing the content of coarse aggregate and soil compound, but it was increased with increasing the content of polypropylene fiber. Accordingly, this concrete can be used for farm road.

Investigation on the Ultrasonic Pulse Velocity Equation for Estimating Compressive Strength of High Performance Concrete (고성능 콘크리트의 압축강도 추정을 위한 초음파속도식의 검토)

  • Lee, Tae-Gyu;Kim, Gyu-Yong;Choe, Gyeong-Cheol;Kang, Yeon-Woo;Kim, Soon-Mook;Kim, Soo-Bong
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2014.11a
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    • pp.5-6
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    • 2014
  • For estimating compressive strength of concrete, non-destructive test has conducted generally. It used experimental equation to calculate compressive strength from construction. This study investigated experiment to apply non-destructive test, based on fresh property, compressive strength and ultrasonic pulse velocity of high performance concrete. And it conducted to compare various proposed equation.

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Strengths and Non-destruction Properties of Super Flow Concrete Using Recycled Coarse Aggregate (재생굵은골재를 사용한 초유동 콘크리트의 강도 및 비파괴 특성)

  • Sung, Chan-Yong
    • Journal of The Korean Society of Agricultural Engineers
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    • v.47 no.1
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    • pp.25-32
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    • 2005
  • This study was performed to evaluate strengths and non-destruction properties of super flow concrete using recycled coarse aggregate. At the curing age of 28 days, the compressive strength was 22.7-37.5 MPa, the splitting tensile strength was $2.65\~3.73$ MPa, the flexural strength was $5.78\~6.86$ MPa, the ultrasonic pulse velocity was $3,103\~3,480$ mis, the dynamic modulus of elasticity was $3.401{\times}104\~4.521{\times}104$MPa, respectively. The strengths, ultrasonic pulse velocity and dynamic modulus of elasticity of super flow concrete were decreased with increasing the content of recycled coarse aggregate. The super flow concretes using recycled coarse aggregate were improved by substitution in the range of less than the fly ash content 30010 and recycled coarse aggregate content $75\%$.

Ultrasonic Pulses Characteristics in Lightweight Fine Aggregate Concrete under Various Load Histories (하중 이력에 따른 경량 잔골재 콘크리트의 초음파 특성)

  • Yoo, Kyung-Suk;Kim, Jee-Sang;Kim, Ik-Beam
    • Journal of the Korean Recycled Construction Resources Institute
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    • v.2 no.3
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    • pp.209-216
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    • 2014
  • One of the widely used NDT(Non-destructive techniques) is the ultrasonic pulse velocity (USPV) method, which determines the travel time of the ultrasonic pulse through the tested materials and most studies were focused on the results expressed in time domain. However, the signal of ultrasonic pulse in time domain can be transformed into frequency domain, through Fast fourier transform(FFT) to give more useful informations. This paper shows a comparison of changes in the pulse velocity and frequency domain signals of concrete for various load histories using lightweight fine aggregates. The strength prediction equation for normal concrete using USPV cannot be used to estimate lightweight fine aggregate concrete strength. The signals in frequency domain of ultrasonic pulse of lightweight fine aggregate concrete does not show any significant difference comparing with those of normal concrete. The increases in stress levels of concrete change the pulse velocities and maximum frequencies, however the apparent relationship between themselves can not be found in this experiment.

A Study on the Improvement in Performance of Ultrasonic Pulsed Doppler Velocimeter (초음파 펄스 도플러 속도계의 성능 개선에 관한 연구)

  • 이은방;이상집
    • Journal of the Korean Institute of Navigation
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    • v.20 no.3
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    • pp.85-95
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    • 1996
  • In the velocimeter, the ultrasonic pulse signal is used for measuring the profile velocity of moving targets distributed in space because of the merits of its high distance resolution and harmless affect to the human body. The velocity reading in conventional ultrasonic pulsed velocimeter depends on the wave pattern reflecting the spatial distribution of scatters and includes observational error due to the signal processing of analyzing pulse signal. In this paper, we evaluate an influence of the received waveform of pulsed signal on the velocity information by setting a model. Subsequently, in order to improve the distance resolution and to obtain precise velocity information without the influence of the spatial distribution of scatterers, we propose a new method for the analysis of Doppler pulsed signal, in which the pulsed signal is transformed into a phase function with local data. Finally, it is confirmed that the performance of the velocimeter is more improved in the proposed method than in the conventional one.

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