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1.
Brent Taylor  Rob C. de Loë 《Geoforum》2012,43(6):1207-1217
A major challenge to integrating local knowledge into collaborative environmental governance processes stems from the underlying differences between positivist science and local knowledge; these differences often result in strong differences of opinion regarding which forms of knowledge are valid in environmental decision-making. Previous research on these issues has mainly focused on the attitudes of scientists towards local knowledge. Studies of the views of local and non-scientific actors regarding their own knowledge are much less common. Through a qualitative case study of water allocation planning in South Australia, we analyzed participants’ conceptualizations of local knowledge and the role of local knowledge in collaborative governance. We found that participants defined local knowledge broadly across a number of dimensions and that many acknowledged variability in the nature and quality of different types of local knowledge. While most recognized the value of local knowledge in supporting technical investigations and developing policies, very few participants identified a role for local knowledge in the early stages of the collaborative process (i.e., in framing problems or establishing research protocols). Previous research has highlighted “epistemological anxiety” among scientists and resource managers toward local knowledge as a significant barrier to its effective use in environmental decision-making. This study suggests that state and local actors, and scientists and non-scientists, share similar reservations about local knowledge and highlights the need for researchers and practitioners to take into account the attitudes of all types of participants when considering how to overcome the epistemological challenges related to integrating local knowledge into collaborative management.  相似文献   

2.
Our ability to deal with complex systems has improved through information system research which includes improved modeling (both data and system), the use of semantics and advances in distributed computing. The past decade has seen an explosion in the amount and variety of geosciences data and the emergence of true open data repositories through which scientists can freely access this data. Those data are found in thousands of repositories located around the world. Virtual observatories have been created to address the challenge of helping scientists search those repositories to find and access the required data. This challenge is been addressed by using technologies such as the Internet (with ample connectivity and bandwidth), the Web, cheap computing power, cheap storage and standards for critical components. Many scientific disciplines are developing virtual observatories. Yet some of the most compelling science questions cross multiple domains. While semantics can provide cross domain reasoning, often the first step in answering a question is determining what resources are available which may be relevant to a topic. The topic can be expressed as simple phrases or word sequences. Using a common relevance scoring method at all locations can enable a federated search across loosely coupled providers. The results of which can be organized into facets to aid the user in selecting the most promising resources with which to pursue the scientific investigation. We describe an approach to developing and deploying relevance scoring methods and faceted results in this brave new (virtual) world. We have found that a scoring method which considers both the presence of terms and the proximity of these terms relative to the order of the terms in the query improves the assessment of relevance. We call this Term Presence-Proximity (TPP) scoring and describe a method for calculating a normalized score. TPP scoring compares favorably with other scoring approaches.  相似文献   

3.
Genetic commodification relies on methods that treat genes as information. By representing genes as information, scientists produce standardized and stable objects that are easily tradable. In this paper, I argue that a Midwestern plant conservation science institution (MPCSI) challenges genetic commodification through distinct knowledge-making and social practices. In particular, scientists at this institution treat genes not as information, but as contextual and contingent entities. By employing genetic technologies that deemphasize the code metaphor of genes, these scientists make genes unavailable to trade as information.I analyze the socionatural implications of this institution’s use of genetic technology in native ecosystem restoration. Drawing from interviews and participant observation, I focus on specific techniques used by the MPCSI’s scientists to view genes as embodied relational entities, rather than abstract information. I illustrate how these technologies allow the MPCSI to challenge the epistemologies and methodologies that are crucial to producing genetic commodities.Additionally, I illustrate how the MPCSI serves as a model for plant science institutions to reconceptualize their use of banked plant genetic resources. This model complicates the commodity speculation paradigm common to bioprospectors. At the same time, this genetic restoration approach relies on and produces different engagements with markets. I detail the MPCSI’s emerging relationship with commercial seed nurseries to illustrate how decommodification is integral to commodification. Finally, I argue that although the MPCSI’s genetic restoration strategy necessitates limited market engagements, their scientific practices and institutional relationships produce drastically different socioecological outcomes compared to institutions that treat genes as information.  相似文献   

4.
The questions of how land use change affects climate, and how climate change affects land use, require examination of societal and environmental systems across space at multiple scales, from the global climate to regional vegetative dynamics to local decision making by farmers and herders. It also requires an analysis of causal linkages and feedback loops between systems. These questions and the conceptual approach of the research design of the Climate-Land Interaction Project (CLIP) are rooted in the classical human-environment research tradition in Geography.This paper discusses a methodological framework to quantify the two-way interactions between land use and regional climate systems, using ongoing work by a team of multi-disciplinary scientists examining climate-land dynamics at multiple scales in East Africa. East Africa is a region that is undergoing rapid land use change, where changes in climate would have serious consequences for people’s livelihoods, and requiring new coping and land use strategies. The research involves exploration of linkages between two important foci of global change research, namely, land use/land cover (LULC) and climate change. These linkages are examined through modeling agricultural systems, land use driving forces and patterns, the physical properties of land cover, and the regional climate. Both qualitative and quantitative methods are being used to illustrate a diverse pluralism in scientific discovery.  相似文献   

5.
Coastal and inland waters are continuing to decline in many parts of the world despite major efforts made to restore them. This is due in part to the inadequate role that ecological science has played in shaping restoration efforts. A significant amount of fundamental ecological knowledge dealing with issues such as system dynamics, state changes, context-dependency of ecological response, and diversity is both under-used by managers and practitioners and under-developed by ecologists for use in real-world applications. Some of the science that is being ‘used’ has not been adequately tested. Thus, restoration ecology as a science and ecological restoration as a practice are in need of reform. I identify five ways in which our ecological knowledge should be influencing restoration to a far greater extent than at present including a need to: shift the focus to restoration of process and identification of the limiting factors instead of structures and single species, add ecological insurance to all projects, identify a probabilistic range of possible outcomes instead of a reference condition, expand the spatial scale of efforts, and apply hierarchical approaches to prioritization. Prominent examples of restoration methods or approaches that are commonly used despite little evidence to support their efficacy are highlighted such as the use of only structural enhancements to restore biodiversity. There are also major gaps in scientific knowledge that are of immediate need to policy makers, managers, and restoration practitioners including: predictive frameworks to guide the restoration of ecological processes, identification of social-ecological feedbacks that constrain ecosystem recovery and data to support decisions of where and how to implement restoration projects to achieve the largest gains. I encourage ecologists to respond to the demand for their scientific input so that restoration can shift from an engineering-driven process to a more sustainable enterprise that fully integrates ecological processes and social science methods.  相似文献   

6.
Most of interpretational tasks in geophysics require an interdisciplinary knowledge and integration of information from comprehensive data bases. Towards this end a combination of different geophysical surveys employing seismics, gravity and magnetics, provides new insights into the structures and tectonic evolution of natural deposits together with geological and petrological studies. No doubt, any interdisciplinary approach is essential for numerical modelling of these structures and the processes acting on it. The interpretation of garvity and magnetics by 3D modelling requires data from other independent sources, due to the ambiguity of these methods.In close cooperation with geologists and computer scientists we are developing an object oriented model of the southern rim of the Northwest German Basin which consists of information from industry wells, stratigraphy and geophysical parameters (e.g. density and susceptibility). GOCAD is used for geometrical modelling purposes, IGMAS handels the interactive modifications of geophysical model parameters and geometry. Both modelling programs are supported by an object oriented data base system which will guarantee the consistency of data and models.Combined interpretations of the southern basin are presented and show, how the information from different geo-disciplines is visualized in order to ease the modelling process.  相似文献   

7.
The growth of data volumes in science is reaching epidemic proportions. Consequently, the status of data-oriented science as a research methodology needs to be elevated to that of the more established scientific approaches of experimentation, theoretical modeling, and simulation. Data-oriented scientific discovery is sometimes referred to as the new science of X-Informatics, where X refers to any science (e.g., Bio-, Geo-, Astro-) and informatics refers to the discipline of organizing, describing, accessing, integrating, mining, and analyzing diverse data resources for scientific discovery. Many scientific disciplines are developing formal sub-disciplines that are information-rich and data-based, to such an extent that these are now stand-alone research and academic programs recognized on their own merits. These disciplines include bioinformatics and geoinformatics, and will soon include astroinformatics. We introduce Astroinformatics, the new data-oriented approach to 21st century astronomy research and education. In astronomy, petascale sky surveys will soon challenge our traditional research approaches and will radically transform how we train the next generation of astronomers, whose experiences with data are now increasingly more virtual (through online databases) than physical (through trips to mountaintop observatories). We describe Astroinformatics as a rigorous approach to these challenges. We also describe initiatives in science education (not only in astronomy) through which students are trained to access large distributed data repositories, to conduct meaningful scientific inquiries into the data, to mine and analyze the data, and to make data-driven scientific discoveries. These are essential skills for all 21st century scientists, particularly in astronomy as major new multi-wavelength sky surveys (that produce petascale databases and image archives) and grand-scale simulations (that generate enormous outputs for model universes, such as the Millennium Simulation) become core research components for a significant fraction of astronomical researchers.  相似文献   

8.
赵波  张志强  郑军卫 《地球科学进展》2005,20(12):1371-1375
对科研成果产出的定量科学评价,可以了解科研队伍的现状和科研的影响力。利用文献计量学方法,采集了2000—2004年SCI数据库中中国学者发表的地球科学论文,统计分析中国地球科学SCI论文的产出和被引用情况,以了解中国当前具有国际学术交流能力和SCI论文发表能力的地球科学研究队伍的现状和科研成果的国际影响力。分析结果表明,2000—2004年中国的国际地学研究论文数量以年均21.87%的速度递增,5年的论文篇均被引频次为2.57。地球科学二级学科领域SCI论文产出数量从高到低依次为:地质科学、地理科学、空间物理学、环境科学、地球物理学、大气科学、海洋科学、地球化学。在中国地学研究队伍中,中国科学院系统和教育部系统发表的论文数量最多,论文数量合计占中国国际地学论文总数的83.58%。中国当前具有国际学术交流能力和SCI论文发表能力的地球科学研究队伍人数在8 000人左右。  相似文献   

9.
The Chesapeake Bay is not only North America's largest estuary, but it is also home to one of most comprehensive computational modeling efforts that seeks to study and integrate a very large range of the complex socio-ecological dynamics within its watershed. Known as the Chesapeake Bay Modeling System (CBMS), this suite of models are invaluable to scientists, environmental policymakers, resource managers, and local government and community leaders, all of whom are engaged in efforts to reduce the negative impacts of population growth and development in the watershed on the ecosystems and living resources of the Chesapeake Bay. Until recently, the results of the CBMS were used to guide voluntary efforts to reduce nutrient and sediment runoff into the Chesapeake Bay. However, the results are now being used to guide and evaluate the implementation of Watershed Implementation Plans at the state and county levels, which in turn are based on CBMS estimates of total maximum daily loads (TMDLs) for these sub-watershed regions. The use of the CBMS for these regulatory efforts has also increased the number of public stakeholders who are now able to directly inquire about the how the CBMS works and raise questions about its ability to accurately represent their land use decisions and practices. This "going public" of the CBMS has raised many societal and cultural issues, including the articulation of local expert and scientific knowledge, and modelers, scientists, policymakers, and resource managers are now realizing the need to understand more of the human dimensions arising from the translation and implementation of the CBMS. A multidisciplinary approach is needed to understand these rapidly emerging societal and cultural dimensions of the expanded use of the CBMS. In this paper, we draw upon our collective experience as social and natural scientists, with modeling experience, to describe a range of social, economic, political, and cultural issues that have emerged as a result of the CBMS being used to support mandatory nutrient reduction regulations (TMDL).  相似文献   

10.
Population increases, land-use changes and marketing opportunities are important factors affecting crop-livestock integration particularly with respect to their effect on soil fertility and feed supply for ruminant livestock. As the human population density rises, crop farmers and grazers are finding it profitable to establish contracts for paddocking, and they are reaching agreement on equitable ways to make use of crop residues and take care of livestocks. As the processes of intensification proceed, mixed crop-livestock systems are evolving as the viable and dominant farming system, allowing smallholder farmers to capitalize on the complementarity between crops and livestock. Strategies directed to raise the productivity of specific crop-livestock systems need to consider the stage of development of the target area in relation to intensification and the nature of crop-livestock interactions. Information related to crop and livestock systems in West Africa is currently available from various sources e.g., household surveys, aerial surveys, rural appraisal, experimental etc., and held by different agencies. The approach used in this study shows how such data (biophysical and socioeconomic) can be integrated within a GIS environment and synthesized to identify the evolution of systems across environments and also to identify constraints and potential of the systems. Potential for integrated crop-livestock systems remains untapped and/or knowledge of its existence is unknown for large parts of Nigeria. Using data from 36 case studies and georeferenced data on cropping intensities and livestock population for the entire country, it was possible to predict emerging crop-livestock systems using GIS. Indeed, depending on availability of data, it is now possible to extend a similar approach in other African countries. The potential contribution of this technology is largely unknown in West and Central Africa, where few operational programs use them. Major technological innovations and appropriate government policies have potential to shift the balance in regional developments, if targeted carefully at areas where the right conditions exist. Further research could then target specific areas thus ensuring efficient allocation of resources while policy makers can achieve development goals by directing policies and resources to domains that have the greatest potential. This revised version was published online in July 2006 with corrections to the Cover Date.  相似文献   

11.
This article provides a new way of analyzing and defining contemporary bioprospecting under emerging frameworks of neoliberal conservation. I document how bioprospecting has changed over time on the island-nation of Madagascar due to shifts in environmental governance. The most significant change includes efforts to speed up and industrialize the production of new drugs derived from nature. This has been accomplished through the switching over to rational collection strategies that employ new geo-referencing technologies, global networks of herbarium archives, and high-technology rapid screening methods. Results show that nature is re-constituted, traditional knowledge is rendered inefficient, and labour is mechanized within sites of production. This study demonstrates how changes in bioprospecting alter the way Malagasy scientists and local resource users participate in the practice and diminish their decision making power over natural resources. These developments, in turn, cause some Malagasy scientists, researchers and administrators to question their participation in bioprospecting projects and reveal that current natural resource policies of extraction, commercialization and benefit-sharing face many challenges.  相似文献   

12.
Although surface water quality and its underlying processes vary over time scales ranging from seconds to decades, they have historically been studied at the lower (weekly to interannual) frequencies. The aim of this study was to investigate intradaily variability of three water quality parameters in a small freshwater tidal lagoon (Mildred Island, California). High frequency time series of specific conductivity, water temperature, and chlorophylla at two locations within the habitat were analyzed in conjunction with supporting hydrodynamic, meteorological, biological, and spatial mapping data. All three constituents exhibited large amplitude intradaily (e.g., semidiurnal tidal and diurnal) oscillations, and periodicity varied across constituents, space, and time. Like other tidal embayments, this habitat is influenced by several processes with distinct periodicities including physical controls, such as tides, solar radiation, and wind, and biological controls, such as photosynthesis, growth, and grazing. A scaling approach was developed to estimate individual process contributions to the observed variability. Scaling results were generally consistent with observations and together with detailed examination of time series and time derivatives, revealed specific mechanisms underlying the observed periodicities, including interactions between the tidal variability, heating, wind, and biology. The implications for monitoring were illustrated through subsampling of the data set. This exercise demonstrated how quantities needed by scientists and managers (e.g., mean or extreme concentrations) may be misrepresented by low frequency data and how short-duration high frequency measurements can aid in the design and interpretation of temporally coarser sampling programs. The dispersive export of chlorophylla from the habitat exhibited a fortnightly variability corresponding to the modulation of semidiurnal tidal currents with the diurnal cycle of phytoplankton variability, demonstrating how high frequency interactions can govern long-term trends. Process identification, as through the scaling analysis here, can help us anticipate changes in system behavior and adapt our own interactions with the system.  相似文献   

13.
Some resource-based economies become wealthy while others stay poor and Norway belongs to the first category. This paper argues that part of the answer to why Norway has managed to benefit from its rich natural resources is found in the formation of a well-functioning national innovation system. The paper integrates the innovation system approach with a historical approach through the concept of co-evolution. The empirical study investigates how innovation systems evolve in natural resource industries through analysing the co-evolution between industry, knowledge organisations and national policy in the Norwegian aluminium and petroleum sectors. Parallels are found in the development of these two sectors, which are: (i) the deliberate use of concession laws to seize value creation and technological development from foreign direct investments, (ii) the establishment and prioritisation of state-owned companies and (iii) the more or less intentional formation of a national innovation system. The paper points to the relevance of analysing the historical evolution of national innovation systems to understand the creation of their specific path-dependent characteristics, to analyse how policy influences the creation and working of innovation systems, to use a multilevel approach in studies of innovation systems and to consider how innovation processes in different industries are linked in value chains and through knowledge flows.  相似文献   

14.
15.
This article examines how law is implicated in the formation of place, and how place in turn can shape law. It is an empirical explication of Latour’s call for researchers to study the global through its local instantiations. Drawing upon recent theoretical work in both material culture studies and legal geography the article examines the interplay of law and material formations at one originating site, Sir Richard Arkwright’s Cromford Mills in Derbyshire in order to examine the creation and circulation of a new form of place in the late eighteenth century: the industrial scale cotton mill. It shows how a diverse range of legal elements ranging across patent law, the Calico Acts and ancient local Derbyshire lead mining laws all helped to shape that place-form, its proliferation across the United Kingdom, and ultimately further afield. In doing so the article conceptualises processes of localisation, translocalisation and thing-law by which the abstractions of both place-forms and law elements become activated through their pragmatic local emplacement. Whilst the case study concerns 200 year old place-making machinations, many of the spatio-legal articulations of Arkwright and his opponents have a surprisingly modern feel about them. The paper therefore advocates the benefits of a longitudinal, historical approach to the study of place-making, and in particular, calls for a greater attentiveness in legal geography to law’s role in the intentional formation of (work)places by their owners.  相似文献   

16.
Helena Valve 《Geoforum》2011,42(2):222-230
Identification of GM plants with their internal molecular-genetic qualities serves transformation of living organisms into identifiable commodities and objects of regulation. From molecular reductionist assumptions it also follows that scientific research is to be based on experiments that allow analysis of genetic influence in isolation. In this paper, I analyse molecular reductionism ‘in action’ by means of an ethnographic case study, focusing on the practices and transformations through which a field trial of transgenic trees created understanding of the risks or risklessness of the trees. The results show how the mobilisation of the field trial design, choosing of key analytical scales and formation of the research team stabilised the paths that experimentation was to follow. The scientists took the emerging inconsistencies and surprises calmly, indicating that unexpected events are an essential part of a scientific process. However, surprises could matter only in relation to the testing arrangements. Therefore, what could become visible and what could make a difference for the constitution of risk/risklessness were the fluctuations that the particular analytical assemblages defined as significant from the outset. Meanwhile, it was impossible to treat the trees and the field ecosystem as mutually constitutive. Nevertheless, there is no reason to think of knowledge production concerning transgenic organisms in deterministic terms. First, scientists are bound to be complexly engaged with the ecosystems that they are supposed to sort out. Second, consideration of the public lessons of experiments may elicit problems and limitations of molecular reductionism.  相似文献   

17.
This article explores the relationship between science and the extension of colonial power through an examination of the rise of the Northern Rhodesian (later, Zambian) Copperbelt in the 1930s. The rise of the Copperbelt rested in part on scientific prospecting operations perhaps unparalleled in size and scope in the world at the time. These operations brought new ‘scientific’ prospecting techniques to the area which enabled the Northern Rhodesian subsurface to be ‘seen’ in new ways. The seemingly universal and fixed knowledge scientists produced served both political and commercial aims, animating the ‘civilising’ project of imperial power and transforming a newly acquired territory into a profitable annex to empire. Two prospecting operations are explored in detail: (1) the first large concession floated as the Rhodesian Congo Border Concession and (2) the first attempt to use geological science to generate a complete geological map of mineral resources on the Copperbelt in the Nkana Concession. Examining the efforts of these two prospecting operations reveals the methodological, theoretical and epistemological challenges of producing a viable mineral investment and practicing science in the periphery. Finally, the disconnects between the logics and goals of science and those of colonial extraction in Africa are explored. Here it is argued that it was the very malleability of the knowledge produced by European scientists, rather than its abstract fixity or placeless universality, that enabled it to become part of wider political and economic flows.  相似文献   

18.
当前世界进入基于大数据进行数据密集型科学研究的时代,协同操作的数据、信息、系统、空间基础设施对整个地球科学研究和应对巨大社会挑战至关重要.2012年8月在澳大利亚布里斯班召开的第34届国际地质大会,吸引了世界范围内的行业领军科学家交流讨论了地学信息领域取得的进展、成果和发展趋势.从本届地质大会来看,计算机技术、数据库技术、网络技术、虚拟技术等现代化的技术深入应用到了地学众多专业领域,地学信息产品服务成为了信息化时代各国为公众提供公益性服务的主流渠道,地学信息逐步突破孤立的专题、地区、国家的限制,跨专业、跨学科、跨国乃至跨大洲级别的数据共享将逐步达成共识.当前,全球的地学信息科学家都在朝着这同一方向努力,让地学知识能够快速、便捷、高效的为变化的地球服务.  相似文献   

19.
Numerous studies have concluded that better use of scientific information could improve the quality of coastal and estuarine environmental management. Approaches for effecting such a change include ecosystem-based, integrated, and adaptive management, but such basic re-orientation of estuarine and coastal management has proved difficult to achieve. Even environmental indicators, seemingly straightforward ways of injecting scientific information into decision making, have achieved broad on-the-ground use in relatively few instances—principally the largest estuary management programs. A conceptual framework useful for examining environmental management systems affecting the five PNCERS (Pacific Northwest coastal Ecosystems Regional Study) estuaries conceives of environmental managers, researchers, and interested and affected parties in the public as interacting through the multi-layered institutional arrangements that currently promote the utilization, management, or protection of coastal and estuarine resources. Considerable variation exists in the approach and effectiveness of the region's environmental management organizations. Interaction between science and management in the region appears to be limited to an extent by high transaction costs; a cultural divide between environmental scientists and environmental managers is perceived by members of both groups who work with the PNCERS estuaries as inhibiting communications between them. Mechanisms that both groups identify as useful for improving the flow of information between science and management are little used, perhaps as a result. The two groups have very different patterns of information dissemination and acquisition, and though both chose agency archives and databases as their top methods for disseminating information, neither group relies much on these vehicles for information they seek. Both residents' and practitioners' perceptions of threats to the PNCERS estuaries show patterns of estuary-to-estuary variation. One theme that emerges is that problems associated with poor land management in adjacent uplands are common to most of these estuaries, potentially providing a sense of commonality through which a more regional approach to estuary management could emerge. A common set of estuarine environmental indicators implemented for all estuaries could help instigate such a regional approach, but resource constraints, especially at the local level, will have to be overcome for that to occur. There is currently substantial lack of common vision among coastal practitioners as to the purpose and desirability of indicators, and relatively little experience or knowledge of their use, particularly at the local level. Use of estuarine science in the management of these estuaries appears to be greatest during periods in which the largest programmatic shifts in environmental management approaches occur, an observation consistent with other studies that have concluded that the use of environmental science in environmental management tends to be episodic.  相似文献   

20.
USArray及其近期科学发现   总被引:2,自引:0,他引:2  
美国台阵(USArray)是EarthScope计划的主要内容之一。旨在探测北美大陆变形、结构及其演化。USArray主要由平移/滚动台阵和机动台阵两部分构成。滚动台阵由400个宽频带地震台站组成,以向前滚动的方式扫过美国本土和阿拉斯加。利用来自该台阵的数据,科学家能获得地球内部精细图像,藉此考察地震和火山的过程。作为滚动台阵的补充,机动台阵被用于对关键目标进行详细观测和短期测量。美国台阵计划启动5年来,采集的数据已经提供了足以令科学界考虑重新审视地震物理、火山过程、核幔结构、活动变形构造、大陆结构及其演化、地球动力学和地壳流体等基本科学问题的基础资料。  相似文献   

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