• 제목/요약/키워드: Work management system

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산사태발생지(山沙汰發生地)와 피해위험지(被害危險地)의 환경학적(環境學的) 해석(解析)과 예방대책(豫防對策) -평창지구(平昌地區)를 중심(中心)으로- (Environmental Interpretation on soil mass movement spot and disaster dangerous site for precautionary measures -in Peong Chang Area-)

  • 마상규
    • 한국산림과학회지
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    • 제45권1호
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    • pp.11-25
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    • 1979
  • 1979년(年) 8월(月) 4일(日)과 5일(日)에 걸쳐 강원도 평창지구에 많은 사태(沙汰)가 발생된 바 있었다. 이 지역(地域)을 답사할 기회를 통해 산사태에 대한 조사연구(調査硏究)가 부족(不足)하고 예방대책(豫防對策)이 미약하다는 사실을 알게 되었다. 이에 현지답사시(現地踏査時) 얻었던 자료(資料)와 기 연구자들의 보고서 등을 참조로 하여 우리나라 산사태(山沙汰)의 발생조직과예방대책을 살펴본 결과는 다음과 같았다. 1. 지난 6년간(年間)의 자료(資料)로 1일(日)200mm이상(以上), 1시간당(時間當) 60mm이상(以上)의 호우지대(豪雨地帶)를 보면 횡성, 원주, 영동, 무주, 남원과 순천을 연결하는 서부지역과 경상남도의 남부해안지방(南部海岸地方)에 분포(分布)되 있다. 이 원인(原因)은 산맥(山脈)과 저기압(低氣壓)의 방향(方向)에 영향을 받은 것으로 사료(思料)된다. 2, 호우(豪雨)의 정점(頂點)의 분포(分布)는 야간에 나타나며 이 시점에서 산사태(山沙汰)를 일으키고 막대한 피해(被害)를 주는 것 같다. 3. 평창지역(平昌地域)의 산사태(山沙汰)는 화강암(花崗巖)의 조사질양토(粗砂質壤土)와 석회암(石灰巖) 정암(貞岩)의 점토질토양(粘土質土壤)에서 발생(發生)하며 토석류(土石流)는 기암면(基岩面)이나 석회암토양(石灰巖土壤)에서 나타나는 반시(盤尸)을 따라 일어나고 있었다. 4. 이들 암석(岩石)에서 유래한 토양(土壤)의 투수력(透水力)은 빠른 것 같으며 화강암토양(花崗巖土壤)은 토성(土性)의 영향으로 석회암토양(石灰岩土壤)은 토양구조(土壤構造), 폐식(廢植)의 높은 함량(含量)과 근계(根系)의 영향 때문이다. 5. 산사태발생(山沙汰發生)의 근원지의 지형(地形)은 대부분 곡두(谷頭)의 요형지(凹型地)와 산복 상부의 요형(凹型)지에서 나타나고 있다. 이는 유거수(流去水)의 집수력(集水力)때문인것 같고 이 지점의 토양단면(土壤斷面)을 보면 석회암지대(石灰岩地帶)는 혼연성토양(混淵性土壤), 화강암지대(花崗岩地帶)는 발(髮)한 심토호(深土戶)으로 되있다. 6. 산사태지(山沙汰地)의 경사도(傾斜度)는 대부분 $25^{\circ}$이상(以上)에서 나타났고 경사위치(傾斜位置)는 산복상부의 6~9부 능선에서 나타났다. 7. 산사태지(山沙汰地)의 식피(植被)는 대부분 화전(火田)경작지, 화전초지(火田草地), 화전조림지(火田造林地), 황폐지(荒廢地)의 불량임분(不良林分)과 미림목지(未林木地)이었다. 일부 성림지(成林地)(중경목지)에도 나타났으나 대개 표상(表上)에 암석시(岩石尸)이 있는 지역이다. 8. 산사태위험도(山沙汰危險度)는 몇가지 환경인자(環境因子)로 즉 식피(植被), 경사도(傾斜度), 경사형태(傾斜形態) 및 위치(位置), 기암(基岩)과 분포형태(分布形態), 토양단면(土壤斷面)의 특성(特性) 등(等)으로 추정이 가능할 것 같다. 9. 가옥피해(家屋被害)는 대부분 다음과 같은 지형(地形)에서 나타나고 있다. 충적추(沖積錐)와 선상지요형사면(扇狀地凹型斜面)의 산록, 곡간(谷間)이나 야계변(野溪邊)의 소단구(小段丘)와 붕적토지(崩積土地) 등(等)이다. 가옥피해위험지(家屋被害危險地)는 항공사진으로 가옥(家屋)주위의 지형상태(地形狀態)를 참고를 하면 판정(判定)이 가능할 것 같다. 10. 산사태(山沙汰)의 예방대책(豫防對策)으로 위험지(危險地)의 진단기술(診斷技術)의 개발(開發), 현지조사(現地調査)를 통해 가능한 조속(早速)히 예방사방(豫防砂防)이 이루어져야 할 것이다. 가옥(家屋)과 부락(部落)의 피해예방대책(被害豫防對策)이 수립(樹立) 실행(實行)하여야 되며 재해방비림(災害防備林)의 조성책(造成策)이 고려되어야 할 것이다. 11. 산사태(山沙汰)에 의한 가옥(家屋)과 부락(部落)의 피해위험도(被害危險度)를 판정(判定)하여 지도사업(指導事業)을 통해 알려 주어야 한다. 12. 사태위험지(沙汰危險地)의 계벌작업(階伐作業), 화전경작(火田耕作), 연료채취(燃料採取)를 철저히 금지(禁止)시키고 피해위험지(被害危險地)의 가옥(家屋)신축을 규제시켜야 될 것이다. 따라서 산림경영계획(山林經營計劃)의 편성시 산사태(山沙汰)여부 토양침식(土壤浸蝕)과 홍수문제(洪水問題)들이 고려되어야 하며 재해예방대책(災害豫防對策)이 포함되어야 할 것이다.

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Information Privacy Concern in Context-Aware Personalized Services: Results of a Delphi Study

  • Lee, Yon-Nim;Kwon, Oh-Byung
    • Asia pacific journal of information systems
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    • 제20권2호
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    • pp.63-86
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    • 2010
  • Personalized services directly and indirectly acquire personal data, in part, to provide customers with higher-value services that are specifically context-relevant (such as place and time). Information technologies continue to mature and develop, providing greatly improved performance. Sensory networks and intelligent software can now obtain context data, and that is the cornerstone for providing personalized, context-specific services. Yet, the danger of overflowing personal information is increasing because the data retrieved by the sensors usually contains privacy information. Various technical characteristics of context-aware applications have more troubling implications for information privacy. In parallel with increasing use of context for service personalization, information privacy concerns have also increased such as an unrestricted availability of context information. Those privacy concerns are consistently regarded as a critical issue facing context-aware personalized service success. The entire field of information privacy is growing as an important area of research, with many new definitions and terminologies, because of a need for a better understanding of information privacy concepts. Especially, it requires that the factors of information privacy should be revised according to the characteristics of new technologies. However, previous information privacy factors of context-aware applications have at least two shortcomings. First, there has been little overview of the technology characteristics of context-aware computing. Existing studies have only focused on a small subset of the technical characteristics of context-aware computing. Therefore, there has not been a mutually exclusive set of factors that uniquely and completely describe information privacy on context-aware applications. Second, user survey has been widely used to identify factors of information privacy in most studies despite the limitation of users' knowledge and experiences about context-aware computing technology. To date, since context-aware services have not been widely deployed on a commercial scale yet, only very few people have prior experiences with context-aware personalized services. It is difficult to build users' knowledge about context-aware technology even by increasing their understanding in various ways: scenarios, pictures, flash animation, etc. Nevertheless, conducting a survey, assuming that the participants have sufficient experience or understanding about the technologies shown in the survey, may not be absolutely valid. Moreover, some surveys are based solely on simplifying and hence unrealistic assumptions (e.g., they only consider location information as a context data). A better understanding of information privacy concern in context-aware personalized services is highly needed. Hence, the purpose of this paper is to identify a generic set of factors for elemental information privacy concern in context-aware personalized services and to develop a rank-order list of information privacy concern factors. We consider overall technology characteristics to establish a mutually exclusive set of factors. A Delphi survey, a rigorous data collection method, was deployed to obtain a reliable opinion from the experts and to produce a rank-order list. It, therefore, lends itself well to obtaining a set of universal factors of information privacy concern and its priority. An international panel of researchers and practitioners who have the expertise in privacy and context-aware system fields were involved in our research. Delphi rounds formatting will faithfully follow the procedure for the Delphi study proposed by Okoli and Pawlowski. This will involve three general rounds: (1) brainstorming for important factors; (2) narrowing down the original list to the most important ones; and (3) ranking the list of important factors. For this round only, experts were treated as individuals, not panels. Adapted from Okoli and Pawlowski, we outlined the process of administrating the study. We performed three rounds. In the first and second rounds of the Delphi questionnaire, we gathered a set of exclusive factors for information privacy concern in context-aware personalized services. The respondents were asked to provide at least five main factors for the most appropriate understanding of the information privacy concern in the first round. To do so, some of the main factors found in the literature were presented to the participants. The second round of the questionnaire discussed the main factor provided in the first round, fleshed out with relevant sub-factors. Respondents were then requested to evaluate each sub factor's suitability against the corresponding main factors to determine the final sub-factors from the candidate factors. The sub-factors were found from the literature survey. Final factors selected by over 50% of experts. In the third round, a list of factors with corresponding questions was provided, and the respondents were requested to assess the importance of each main factor and its corresponding sub factors. Finally, we calculated the mean rank of each item to make a final result. While analyzing the data, we focused on group consensus rather than individual insistence. To do so, a concordance analysis, which measures the consistency of the experts' responses over successive rounds of the Delphi, was adopted during the survey process. As a result, experts reported that context data collection and high identifiable level of identical data are the most important factor in the main factors and sub factors, respectively. Additional important sub-factors included diverse types of context data collected, tracking and recording functionalities, and embedded and disappeared sensor devices. The average score of each factor is very useful for future context-aware personalized service development in the view of the information privacy. The final factors have the following differences comparing to those proposed in other studies. First, the concern factors differ from existing studies, which are based on privacy issues that may occur during the lifecycle of acquired user information. However, our study helped to clarify these sometimes vague issues by determining which privacy concern issues are viable based on specific technical characteristics in context-aware personalized services. Since a context-aware service differs in its technical characteristics compared to other services, we selected specific characteristics that had a higher potential to increase user's privacy concerns. Secondly, this study considered privacy issues in terms of service delivery and display that were almost overlooked in existing studies by introducing IPOS as the factor division. Lastly, in each factor, it correlated the level of importance with professionals' opinions as to what extent users have privacy concerns. The reason that it did not select the traditional method questionnaire at that time is that context-aware personalized service considered the absolute lack in understanding and experience of users with new technology. For understanding users' privacy concerns, professionals in the Delphi questionnaire process selected context data collection, tracking and recording, and sensory network as the most important factors among technological characteristics of context-aware personalized services. In the creation of a context-aware personalized services, this study demonstrates the importance and relevance of determining an optimal methodology, and which technologies and in what sequence are needed, to acquire what types of users' context information. Most studies focus on which services and systems should be provided and developed by utilizing context information on the supposition, along with the development of context-aware technology. However, the results in this study show that, in terms of users' privacy, it is necessary to pay greater attention to the activities that acquire context information. To inspect the results in the evaluation of sub factor, additional studies would be necessary for approaches on reducing users' privacy concerns toward technological characteristics such as highly identifiable level of identical data, diverse types of context data collected, tracking and recording functionality, embedded and disappearing sensor devices. The factor ranked the next highest level of importance after input is a context-aware service delivery that is related to output. The results show that delivery and display showing services to users in a context-aware personalized services toward the anywhere-anytime-any device concept have been regarded as even more important than in previous computing environment. Considering the concern factors to develop context aware personalized services will help to increase service success rate and hopefully user acceptance for those services. Our future work will be to adopt these factors for qualifying context aware service development projects such as u-city development projects in terms of service quality and hence user acceptance.