Browse > Article

Physical Properties of Soils under the Grass Block Porous Pavements  

Han, Seung-Ho (Institute of Landscape Ecological Design, HANDSEL GREEN Co., Ltd.)
Kim, Won-Tae (Institute of Landscape Ecological Design, HANDSEL GREEN Co., Ltd.)
Kang, Jin-Hyoung (Institute of Landscape Ecological Design, HANDSEL GREEN Co., Ltd.)
Publication Information
Journal of the Korean Institute of Landscape Architecture / v.34, no.4, 2006 , pp. 96-104 More about this Journal
Abstract
Impervious pavement is primary contributor to the malfunctioning of the urban water circulation system. The aim of this research is to provide basic information and data for new pavement materials and paving technology which could enhance the urban water circulation system. For the study purposes, physical properties of soils sampled from 16 stations were analyzed. The sampling spots were paved with grass block porous pavement material. The findings from the analysis are as follows. The hardness of soils under the pavement was $17{\sim}22mm$ for thoroughfare and $6{\sim}32mm$ for parking areas. The bulk density was $1.42{\sim}1.81g/cm^{3}$ for thoroughfare and $1.38{\sim}1.75g/cm^{3}$ for parking area. The solid phase ration was $46.9{\sim}62.5m^{3}/m^{3}$ for thoroughfare and $45.6{\sim}61.3m^{3}/m^{3}$ for parking area. The porosity was $37.5{\sim}53.1m^{3}/m^{3}$ for thoroughfare and $38.7{\sim}54.4m^{3}/m^{3}$ for parking area. The saturated hydraulic conductivity was $8{\sim}164mm/hr$ for thoroughfare and $14{\sim}201mm/hr$ for parking area. The saturated hydraulic conductivity of the H sample area (the area was completed three months ago) and that of the other area were compared. There was up to 80% decreases of the saturated hydraulic conductivity within one year after the completion of pavement. After the first year, decrease in the saturated hydraulic conductivity was modest. Also there are changes in both surface and under soil physical properties of the grass block porous pavement depending on compaction. The extent of change depends on the degree of compaction. All these factors are combined to influence the permeability of the soil under the pavements. The results of this suggest that it is required to develop a new pavement technology which ensures both the durability and porosity of the pavement to improve the water circulation system by applying Ecological Area Rate.
Keywords
Soil Texture; Soil Hardness; Bulk Density; Soil Three Phase Distribution; Saturated Hydraulic Conductivity;
Citations & Related Records
연도 인용수 순위
  • Reference
1 농촌진흥청(2000) 토양 및 식물체 분석법. 수원: 농촌진흥청
2 대한주택공사(2006) 토목공사 전문시방서. 서울- 대한주택공사
3 박원엽, 이규승(2001) 타이어 접지압과 토양속 응력분포에 관한 연구. 한국농업기계학회지 26(3): 245-252
4 심상렬, 정대영, 김경남(2000) 스포츠 그라운드에 적합한 식재지반과 잔디 초종에 관한 연구, 한국조경학회지 28(2): 71-84
5 이현근(1983) 흙의 물리적 성질이 다짐에 미치는 영향에 관한 실험적 연구. 동국대학교 대학원 석사학위논문
6 Bouwer, H(1961) A double tube method for measuring hydraulic conductivity of soil in sites above water table. Soil Science Society of America 25: 334-342   DOI
7 Gardner, W. H(1958) Some steady-state solutions of the unsaturated moisture flow equation with application to evaporation from a water table, Soil Science 85: 228-232   DOI
8 早野美智子(1997) 踏固地における浸潤機構に關する研究. 千葉大學 大學院 博士學位論文
9 류순호, 김계훈, 김민균, 박무언, 양재의, 유인수, 윤세영. 이완주, 임정남, 정연태, 정영상(2000) 토양사전. 서울 서울대학교출판부
10 김경남, 심상렬(2003) 경기장 지반 종류별 난지형 및 한지형 잔디의 표변 경도. 토심 경도 및 투수 속도 비교, 한국조경학회지 44( 6): 991-997
11 환경부(2005) 생태면적률 적용지침 서울: 환경부
12 Schwanghart, H. (1991) Measurement of contact area. contact pressure and compaction under tires in soft soil, Journal of Terramechanics 28(4): 309-318   DOI   ScienceOn
13 조재현(1997) 답압이 블럭포장 하부의 토양물리성에 미치는 영향에 관한 연구. 경희대학교 대학원 박사학위논문
14 박무언, 유순호(1981) 가시 생물공극이 토양의 수리전도도에 미치는 영향. 한국토양비료학회지 14(2): 64-69
15 방윤경, 이성민, 이윤규(2005) 알기 쉬운 토질시험법. 서울: 동화기술
16 USDA(199l) Soil Survey Manual
17 Langerwerff J, V.. F, S, Nakayama, and M. H. Frere(1969) Hydraulic conductivity related to porosity and swelling of soil. Soil Science Society of America 33: 3-11   DOI
18 USGA Green Section Staff(1993) USGA recommendations for a method of putting green construction. USGA Green Section Record March/ April: 1-3
19 서울특별시(1993) 보도포장설계. 시공편람. 서울: 서울특별시
20 Abebe, A. T.. T. Tanake, and M, Yamazaki(1989) Soil compaction by multiple passes of a rigid wheel relevant for optimization of traffic, Journal of Terramechanics 26(2): 139-148   DOI   ScienceOn
21 이창우, 문태훈, 홍민선, 서현교(2000) 서울시 환경용량 평가에 관한 연구II. 서울시정개발연구원 보고서 2000-R-11
22 서울특별시(2000) 서울시 비오톱 현황조사 및 생태도시 조성 지침수립. 서울특별시 연구보고서
23 김필주, 이도경, 정덕영(1997) 토양의 용적밀도에 따른 포화 수리전도도 및 음이온의 용출양상. 한국토양비료학회지 30(3) : 234-241
24 김선태(2002) 투수성 포장공법의 시공실태 및 개선방안에 관한 연구. 한양대학교 대학원 석사학위논문