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Preservation of Natural Stone and Rock Weathering

Preservation of Natural Stone and Rock Weathering
Author: Pedro Sola
Publisher: CRC Press
Total Pages:
Release: 2017-10-06
Genre:
ISBN: 9781138465800

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Natural stone is utilised in monumental works both as a construction material and as a foundation. This volume contains papers and special lectures on monument preservation, reflecting a broad spectrum of issues in three different fields: Architecture, Civil Engineering and Geology. The topics discussed covered the entire process of preservation and included: - Processes of rock degradation - Stone conservation and treatments - Compatible material for restoration - Preservation and risk assessment - In situ and laboratory testing and monitoring - Rock Mechanics studies and modelling in the context of monuments. - Foundation problems - Rock-slope problems at protected sites - Case histories The workshop �Preservation of Natural Stone and Rock Weathering�, was held in Madrid in July 2007, within the framework of the 11th International Congress of the ISRM. Consultants, researchers, designers and contractors, as well as a great variety of professionals in many public and private agencies, will benefit from this volume that brings an updated view of the technical problems of the preservation of stone monuments.


Stone in Architecture

Stone in Architecture
Author: Siegfried Siegesmund
Publisher: Springer
Total Pages: 557
Release: 2014-07-08
Genre: Science
ISBN: 3642451551

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The weathering of historical buildings and, indeed, of monuments and sculptures of natural stone is a problem that has been encountered for hundreds of years. However a dramatic increase in deterioration in the structure of our built heritage has been observed during the past century. To understand the complex interaction that the stone in a building suffers with its near environment (the building) and the macro environment (the local climate and atmospheric conditions) requires an interdisciplinary approach and the application of many disciplines. Climate change over the next 100 years is likely to have a range of direct and indirect impacts on many natural and physical environments, including the built environment. The protection of our architectural heritage has both cultural and historical importance, as well as substantial economic and ecological value. Large sums of money are being spent world-wide on measures for the preservation of monuments and historical buildings. The past few decades has seen an unprecedented level of research activity in this area, the result of which is often difficult to access and are summarized in the new edition of STONE IN ARCHITECTURE. The 4th edition of Stone in Architecture: Properties, Durability, is a sophisticated and thorough exploration of stone – its properties, performance and conservation – in monumental contexts. The current editors, Siegfried Siegesmund and Rolf Snethlage, note the pioneering work of Erhard Winkler who wrote the first edition in 1973 when so little information could be found in the literature on the subject. This new edition, also published by Springer, nearly doubles the size of Winkler’s 1994 effort. If you are familiar with the field and need to know little more than this statement, you can put aside this review and go buy the book. George Wheeler, Department of Scientific Research, The Metropolitan Museum of Art, New York.


Stone in Architecture

Stone in Architecture
Author: Siegfried Siegesmund
Publisher: Springer Science & Business Media
Total Pages: 559
Release: 2011-01-25
Genre: Technology & Engineering
ISBN: 3642144756

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The weathering of historical buildings and, indeed, of monuments and sculptures of natural stone is a problem that has been encountered for hundreds of years. However, a dramatic increase in deterioration in the structure of our built heritage has been observed during the past century. To understand the complex interaction that the stone in a building suffers with its near environment (the building) and the macro environment (the local climate and atmospheric conditions) requires an interdisciplinary approach and the application of many disciplines. Climate change over the next 100 years is likely to have a range of direct and indirect impacts on many natural and physical environments, including the built environment. The protection of our architectural heritage has both cultural and historical importance, as well as substantial economic and ecological value. Large sums of money are being spent world-wide on measures for the preservation of monuments and historical buildings. The past few decades has seen an unprecedented level of research activity in this area, the results of which are often difficult to access and are summarized in the new edition of STONE IN ARCHITECTURE.


Stone in Architecture

Stone in Architecture
Author: Erhard Winkler
Publisher: Springer Science & Business Media
Total Pages: 328
Release: 2013-03-14
Genre: Technology & Engineering
ISBN: 3662100703

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The readers of the first two editions of Stone: Properties, Durabi lity in Man's Environment, were mostly architects, restoration architects of buildings and monuments in natural stone, profes sionals who sought basic technical information for non-geologists. The increasing awareness of rapidly decaying monuments and their rescue from loss to future generations have urged this writer to update the 1973 and 1975 editions, now unavailable and out of print. Due to the 20-year-Iong interval, extensive updating was necessary to produce this new book. The present edition concentrates on the natural material stone, as building stone, dimension stone, architectural stone, and decorative field stones. Recently, the use of stone for thin curtain walls on buildings has become fashionable. The thin slabs exposed to anew, unknown complexity of stresses, resulting in bowing of crystalline marble, has attracted much negative pUblicity. The costs of replacing white slabs of marble on entire buildings with its legal implications have led construction com panies into bankruptcy. We blame many environmental problems on acid rain. Does acid rain really accelerate stone decay that much? Stone preservation is being attempted with an ever-increasing number of chemicals applied by as many specialists to save crumbling stone. Chemists filled this need during a time of temporary job scarcity, while the general geologist missed this opportunity; he was too deeply involved in the search for fossil fuels and metals.


Stone

Stone
Author: Mick R. Smith
Publisher: Geological Society of London
Total Pages: 508
Release: 1999
Genre: Science
ISBN: 9781862390294

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Preservation of Natural Stone and Rock Weathering

Preservation of Natural Stone and Rock Weathering
Author: Pedro Sola
Publisher: CRC Press
Total Pages: 0
Release: 2007-06-28
Genre: Technology & Engineering
ISBN: 9780415450188

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Natural stone is utilised in monumental works both as a construction material and as a foundation. This volume contains papers and special lectures on monument preservation, reflecting a broad spectrum of issues in three different fields: Architecture, Civil Engineering and Geology. The topics discussed covered the entire process of preservation and included: - Processes of rock degradation - Stone conservation and treatments - Compatible material for restoration - Preservation and risk assessment - In situ and laboratory testing and monitoring - Rock Mechanics studies and modelling in the context of monuments. - Foundation problems - Rock-slope problems at protected sites - Case histories The workshop “Preservation of Natural Stone and Rock Weathering”, was held in Madrid in July 2007, within the framework of the 11th International Congress of the ISRM. Consultants, researchers, designers and contractors, as well as a great variety of professionals in many public and private agencies, will benefit from this volume that brings an updated view of the technical problems of the preservation of stone monuments.


Carbonate Stone

Carbonate Stone
Author: K. Lal Gauri
Publisher: John Wiley & Sons
Total Pages: 310
Release: 1999-10-18
Genre: Science
ISBN: 0471179779

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A Practical, Quantitative Approach to Conservation Methodology What can be done about the harmful effects of industrial pollutants on carbonate stone monuments, buildings, and sites? Here is an important guide to this phenomenon of the twentieth century. Written by two conservation technology experts with an intimate knowledge of the restoration of major world monuments, Carbonate Stone: Chemical Behavior, Durability, and Conservation covers: * Properties of carbonate rocks affecting the weathering of stone * Weathering mechanisms in polluted and natural environments, plus biodeterioration * Mathematical modeling for reaction rates and durability factors * The use of porosimetry in determining rock durability * Conservation methodologies from the real world * The theory of neural networks and their application to correlate large volumes of chemical and physical data * Application of archaeology to geochronology


Biodeterioration of Stone Surfaces

Biodeterioration of Stone Surfaces
Author: Larry St.Clair
Publisher: Springer Science & Business Media
Total Pages: 320
Release: 2004-11-29
Genre: Science
ISBN: 9781402028038

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This is a timely volume in view of the considerable interest currently shown in the preservation of our cultural heritage and the extensive and growing literature on the subject. Unfortunately, the latter is to be found in a wide variety of published sources, some aimed at a very specific readership. The present volume draws together a spectrum of biodeterioration work from across the world to provide an overview of the materials examined and the methodologies employed to elucidate the nature of the problems, as well as an extensive and current bibliographical resource on lichen biodeterioration. Generally, we do not think of rock surfaces as particularly conducive to the growth and development of living things. Occasionally, we may encounter grasses or forbs or even more rarely a small shrub or stunted tree growing from a crack in a large boulder or rock wall; but for most people, rock is perceived as dry, sterile, impenetrable, and generally uninviting. However, to the experienced eye rock surfaces are often teeming with life – lichens, bryophytes, a host of small invertebrate animals, as well as a vast array of microscopic organisms including bacteria, cyanobacteria, algae and non-lichenized fungi. The longevity and structural stability of most rocks superficially suggest that rock surface inhabitants are benign; however, slowly and steadily all rock dwelling organisms contribute to the relentless decomposition of rock surfaces – augmented by the natural physical forces associated with changing seasons, weather patterns, and in some localized settings the caustic effects of air pollution. Rock dwelling communities vary in complexity and composition depending on the specific structural and chemical features of the rock. Even human manipulated or manufactured stone supports to some degree a living community – and herein are found the real issues and concerns related to biodeterioration of rock substrata. In a natural setting biodecomposition of rock is accepted as normal and even desirable – integral to the process of soil development; however, in the human environment biodeterioration of monuments, buildings, artwork, statues and gravestones is counted as a serious problem. Even in natural settings, culturally significant prehistoric and historic rock art is subject to the same processes of biodeterioration. In this volume the editors have compiled current papers from leading experts dealing with various issues related to biodeterioration of rock substrata. Topics range from biodeterioration effects on prehistoric rock art as well as culturally significant, historic rock structures. This is the first treatment of the subject of biodeterioration that includes a careful consideration of the role of related disciplines including geology, archaeology, crystallography, cultural conservation and resource management. This combination of disciplines makes this book valuable not only as a solid scientific treatise but equally important as a serious resource for evaluating both impact processes and preservation options related to biodeterioration of culturally significant rock substrata.