Alternatives of work processes used for the building a metal framework.
\\n\\n
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Barely three months into the new year and we are happy to announce a monumental milestone reached - 150 million downloads.
\n\nThis achievement solidifies IntechOpen’s place as a pioneer in Open Access publishing and the home to some of the most relevant scientific research available through Open Access.
\n\nWe are so proud to have worked with so many bright minds throughout the years who have helped us spread knowledge through the power of Open Access and we look forward to continuing to support some of the greatest thinkers of our day.
\n\nThank you for making IntechOpen your place of learning, sharing, and discovery, and here’s to 150 million more!
\n\n\n\n\n'}],latestNews:[{slug:"webinar-introduction-to-open-science-wednesday-18-may-1-pm-cest-20220518",title:"Webinar: Introduction to Open Science | Wednesday 18 May, 1 PM CEST"},{slug:"step-in-the-right-direction-intechopen-launches-a-portfolio-of-open-science-journals-20220414",title:"Step in the Right Direction: IntechOpen Launches a Portfolio of Open Science Journals"},{slug:"let-s-meet-at-london-book-fair-5-7-april-2022-olympia-london-20220321",title:"Let’s meet at London Book Fair, 5-7 April 2022, Olympia London"},{slug:"50-books-published-as-part-of-intechopen-and-knowledge-unlatched-ku-collaboration-20220316",title:"50 Books published as part of IntechOpen and Knowledge Unlatched (KU) Collaboration"},{slug:"intechopen-joins-the-united-nations-sustainable-development-goals-publishers-compact-20221702",title:"IntechOpen joins the United Nations Sustainable Development Goals Publishers Compact"},{slug:"intechopen-signs-exclusive-representation-agreement-with-lsr-libros-servicios-y-representaciones-s-a-de-c-v-20211123",title:"IntechOpen Signs Exclusive Representation Agreement with LSR Libros Servicios y Representaciones S.A. de C.V"},{slug:"intechopen-expands-partnership-with-research4life-20211110",title:"IntechOpen Expands Partnership with Research4Life"},{slug:"introducing-intechopen-book-series-a-new-publishing-format-for-oa-books-20210915",title:"Introducing IntechOpen Book Series - A New Publishing Format for OA Books"}]},book:{item:{type:"book",id:"4609",leadTitle:null,fullTitle:"Progress in Stem Cell Transplantation",title:"Progress in Stem Cell Transplantation",subtitle:null,reviewType:"peer-reviewed",abstract:"This book documents the increased amount of stem cell-related research, basic and clinical applications as well as views for the future. The book covers a wide range of issues related to new developments and innovations in cell-based therapies discussed in basic and clinical chapters from authors around the world involved in stem cell studies and research. It thereby complements and extends the basic coverage of stem cells, such as mesenchymal stem cells, effect of stem cells on aging, cover hematopoietic stem cells, storage and cryopreservation, issues related to clinical applications such as haploidentical transplants and use of stem cells for the treatment of Huntingtons disease. Clearly, the treatment of various malignant and nonmalignant diseases depends heavily on stem cells, and this book is well positioned to provide comprehensive coverage of these developments.",isbn:null,printIsbn:"978-953-51-2227-2",pdfIsbn:"978-953-51-7273-4",doi:"10.5772/59336",price:119,priceEur:129,priceUsd:155,slug:"progress-in-stem-cell-transplantation",numberOfPages:208,isOpenForSubmission:!1,isInWos:null,isInBkci:!1,hash:"abbff25d9b960e013b0623b89cdf7367",bookSignature:"Taner Demirer",publishedDate:"December 2nd 2015",coverURL:"https://cdn.intechopen.com/books/images_new/4609.jpg",numberOfDownloads:15269,numberOfWosCitations:18,numberOfCrossrefCitations:19,numberOfCrossrefCitationsByBook:0,numberOfDimensionsCitations:25,numberOfDimensionsCitationsByBook:0,hasAltmetrics:0,numberOfTotalCitations:62,isAvailableForWebshopOrdering:!0,dateEndFirstStepPublish:"September 30th 2014",dateEndSecondStepPublish:"October 21st 2014",dateEndThirdStepPublish:"January 25th 2015",dateEndFourthStepPublish:"April 25th 2015",dateEndFifthStepPublish:"May 25th 2015",currentStepOfPublishingProcess:5,indexedIn:"1,2,3,4,5,6",editedByType:"Edited by",kuFlag:!1,featuredMarkup:null,editors:[{id:"67350",title:"Prof.",name:"Taner",middleName:null,surname:"Demirer",slug:"taner-demirer",fullName:"Taner Demirer",profilePictureURL:"https://mts.intechopen.com/storage/users/67350/images/3670_n.jpg",biography:"Dr Demirer graduated from Ankara University Medical School in Turkey in 1984. He then went on to train in the USA from 1987-1997. He was given the title of ‘Fellow of American College of Physicians (FACP)’ by ACP in July of 1996. During his career, he has written many papers in the medical journals and books in regard to stem cell mobilization kinetics, factors influencing the stem collection and engraftment, as well as HDC in patients with multiple myeloma, breast, and ovarian cancer. He was Chair of the EBMT Solid Tumors Working Party (STWP) between 2001-2007. Dr. Demirer is currently a professor of Medicine and Hematology/Oncology at the Ankara University Medical School in Ankara, Turkey.",institutionString:null,position:null,outsideEditionCount:0,totalCites:0,totalAuthoredChapters:"2",totalChapterViews:"0",totalEditedBooks:"2",institution:{name:"Ankara University",institutionURL:null,country:{name:"Turkey"}}}],equalEditorOne:null,equalEditorTwo:null,equalEditorThree:null,coeditorOne:null,coeditorTwo:null,coeditorThree:null,coeditorFour:null,coeditorFive:null,topics:[{id:"990",title:"Stem Cell Research",slug:"medicine-cell-biology-stem-cell-research"}],chapters:[{id:"48956",title:"Hematopoietic Stem Cell Source and Storage",doi:"10.5772/60994",slug:"hematopoietic-stem-cell-source-and-storage",totalDownloads:1611,totalCrossrefCites:0,totalDimensionsCites:0,hasAltmetrics:0,abstract:"Hematopoietic stem cell transplantation(HSCT), has been accepted as a feasible treatment option that prolongs survival in hematological malignancies. Stem cell choice during hematopoietic stem cell transplantation can differ according to the experience of physicians, mostly treated hematological diseases in the centers or ongoing clinical trials. In this chapter we will discuss the advantages and disadvantages of three stem cell sources peripheral blood, bone marrow and umbilical cord blood.",signatures:"Sinem Civriz Bozdag and Osman İlhan",downloadPdfUrl:"/chapter/pdf-download/48956",previewPdfUrl:"/chapter/pdf-preview/48956",authors:[{id:"160957",title:"Dr.",name:"Sinem Civriz",surname:"Bozdag",slug:"sinem-civriz-bozdag",fullName:"Sinem Civriz Bozdag"},{id:"173675",title:"Prof.",name:"Osman",surname:"Ilhan",slug:"osman-ilhan",fullName:"Osman Ilhan"}],corrections:null},{id:"48779",title:"Progress in Cryopreservation of Stem Cells and Immune Cells for Cytotherapy",doi:"10.5772/60620",slug:"progress-in-cryopreservation-of-stem-cells-and-immune-cells-for-cytotherapy",totalDownloads:1906,totalCrossrefCites:4,totalDimensionsCites:5,hasAltmetrics:0,abstract:"Cellular therapy with stem and immune cells has demonstrated significant success both in clinical treatments and the industrial market. Cryopreservation is a necessary and essential component of cellular therapy. In this chapter, first of all, some basic theories of cryoinjury and techniques in cryopreservation are reviewed. Then it focuses on the progress of cryopreservation of stem cells and immune cells, including new protocols and techniques, alternative cryoprotective agents (CPA), side effects after transplantation, and advances in reducing adverse reactions. Strategies to minimize adverse effects include medication before and after transplantation, optimizing the infusion procedure, reducing the CPA concentration or using alternative CPAs for cryopreservation, and removing CPA prior to infusion. Traditional and newly developed approaches including methods and devices for CPA removal are discussed. Future work is recommended including further optimization of cryopreservation protocols especially for lymphocytes; standardization of the optimized protocols with temperature monitoring and quality control; exploration of DMSO-free, serum-free, and even xeno-free media for cryopreservation; development of simple, reliable, and cost-effective devices for cryopreservation; and more fundamental cryobiological studies to avoid cellular injury.Keywords: cryopreservation, stem cell, immune cell, cytotherapy",signatures:"Zhiquan Shu, Shelly Heimfeld, Zhongping Huang, Carolyn Liu and\nDayong Gao",downloadPdfUrl:"/chapter/pdf-download/48779",previewPdfUrl:"/chapter/pdf-preview/48779",authors:[{id:"100298",title:"Prof.",name:"Dayong",surname:"Gao",slug:"dayong-gao",fullName:"Dayong Gao"},{id:"173780",title:"Dr.",name:"Zhiquan",surname:"Shu",slug:"zhiquan-shu",fullName:"Zhiquan Shu"},{id:"175497",title:"Dr.",name:"Shelly",surname:"Heimfeld",slug:"shelly-heimfeld",fullName:"Shelly Heimfeld"},{id:"175498",title:"Dr.",name:"Zhongping",surname:"Huang",slug:"zhongping-huang",fullName:"Zhongping Huang"}],corrections:null},{id:"49596",title:"Use of Monoclonal Antibodies in Conditioning Regimen in Transplantation",doi:"10.5772/61509",slug:"use-of-monoclonal-antibodies-in-conditioning-regimen-in-transplantation",totalDownloads:1483,totalCrossrefCites:0,totalDimensionsCites:0,hasAltmetrics:0,abstract:"Monoclonal antibodies (MoAbs) alone or in the combination of conventional therapies have been used in the treatment of many benign or malign diseases. In the transplantation setting, Moabs have been generally applied as a part of conditioning regimen in the aims of the prevention of graft versus host disease and/or graft failure or treatment of underlying hematologic disease. The most frequent used moAbs for this purpose are rituximab, alemtuzumab, Gemtuzumab Ozogamicin or radioimmunoconjugates. In this chapter, we discussed the role of moAbs use in the conditioning regimens of allogeneic or autologous stem cell transplantation.",signatures:"Pervin Topcuoglu, Sinem Civriz Bozdag and Taner Demirer",downloadPdfUrl:"/chapter/pdf-download/49596",previewPdfUrl:"/chapter/pdf-preview/49596",authors:[{id:"160954",title:"Prof.",name:"Pervin",surname:"Topcuoglu",slug:"pervin-topcuoglu",fullName:"Pervin Topcuoglu"}],corrections:null},{id:"49639",title:"Progress in Haploidentical Hematopoietic Stem Cell Transplantation",doi:"10.5772/61883",slug:"progress-in-haploidentical-hematopoietic-stem-cell-transplantation",totalDownloads:1560,totalCrossrefCites:0,totalDimensionsCites:0,hasAltmetrics:0,abstract:"Haploidentical hematopoietic cell transplantation (HaploHCT), with cells from HLA-half-matched first degree related donors (siblings, children and parents), could revolutionize hematopoietic transplantation as it expands this form of treatment to approximately 40% of patients who do not have an HLA-matched donor in USA. This need is particularly acute in developing countries, which usually do not have an unrelated donor registry and/or cost is a major issue in acquiring unrelated donor stem cells. Accordingly, the number of haploSCTs done in USA, Europe, China, and developing countries is on the rise. Advantages to HaploHCT include almost universal (more than 95% of patients will have a half-matched related donor) and immediate availability of donor progenitor cells, the opportunity to select the best donor among family members to minimize treatment-related mortality, decrease relapse rate and improve outcomes [2], and the possibility to collect donor cells for cellular therapy post-transplantation, with the goal to enhance the anti-tumor effects of the graft. Despite its potential advantages, until recently, high donor-recipient HLA-histoincompatibility has proven very difficult to overcome.",signatures:"Stefan O. Ciurea and Ulas D. Bayraktar",downloadPdfUrl:"/chapter/pdf-download/49639",previewPdfUrl:"/chapter/pdf-preview/49639",authors:[{id:"176456",title:"Dr.",name:"Darda",surname:"Bayraktar",slug:"darda-bayraktar",fullName:"Darda Bayraktar"}],corrections:null},{id:"48754",title:"Cell Therapy in Huntington’s Disease",doi:"10.5772/60618",slug:"cell-therapy-in-huntington-s-disease",totalDownloads:1402,totalCrossrefCites:0,totalDimensionsCites:0,hasAltmetrics:0,abstract:"Huntington’s disease (HD) is a rare neurodegenerative disease inherited in an autosomal dominant pattern. Expanded cytosine-adenine-guanine (CAG) repeats (polyQ) in the huntingtin gene cause the aggregates of abnormally expanded polyQ-containing huntingtin protein, and striatal medium spiny neurons are shown to be the most vulnerable. Affected patients develop cognitive, motor, and psychiatric symptoms typically in middle age, and several pharmacological drugs are currently used for symptomatic relief. Since the effect of current therapies is very limited and there is no way to modify disease progression, there is an unmet need for developing new therapies for HD. Toxin or genetic rodent models are widely used for drug development, and large animal models are also available. Previous studies transplanting cells originating from embryonic or fetal striatal tissues, neural stem cells, mesenchymal stem cells, and induced pluripotent stem cells (iPSCs) in HD animal models have shown the possibilities of clinical trials. Because clinical trials performed using human fetal striatal cells have shown variable outcomes, future directions of cell therapy in HD should consider the reconstitution of a functional dynamic information-processing circuit without ectopic connections. Another major challenge is to achieve controlled differentiation of embryonic stem cells or iPSCs into specific neuronal phenotypes.",signatures:"Hyun Sook Kim and Jihwan Song",downloadPdfUrl:"/chapter/pdf-download/48754",previewPdfUrl:"/chapter/pdf-preview/48754",authors:[{id:"160503",title:"Prof.",name:"Jihwan",surname:"Song",slug:"jihwan-song",fullName:"Jihwan Song"},{id:"174011",title:"Dr.",name:"Hyun Sook",surname:"Kim",slug:"hyun-sook-kim",fullName:"Hyun Sook Kim"}],corrections:null},{id:"48749",title:"Antiaging — Effect of Stem Cells on Aging and Stem Cell Aging",doi:"10.5772/60637",slug:"antiaging-effect-of-stem-cells-on-aging-and-stem-cell-aging",totalDownloads:1392,totalCrossrefCites:1,totalDimensionsCites:1,hasAltmetrics:0,abstract:"Aging is defined broadly as the normal progressive process, consequently leading to growing vulnerability to disease and death. A major challenge lies in dissecting the underlying mechanisms of aging with conventional experiments due to the complexity of and multicontributions to the aging process, reflecting a need for investigation into it in various aspects. For this reason, the age process has currently been subjected to OMICS technologies including genomics, transcriptomics, proteomics, and metabolomics, allowing the exploration of age-related changes in a multifactorial manner. In addition, since age-dependent decline in stem cell function is almost identical to the biological age, stem cells have used to understand “aging” and to investigate key reverse factors for “antiaging”. This suggests that a range of new approaches are needed to reveal the unknown biological basis for aging at a variety of different molecular levels using stem cells as a tool of normal aging process and can further apply fundamental aspects in biological aging and longevity.",signatures:"Jisook Moon and Sang-Hun Bae",downloadPdfUrl:"/chapter/pdf-download/48749",previewPdfUrl:"/chapter/pdf-preview/48749",authors:[{id:"173648",title:"Prof.",name:"Jisook",surname:"Moon",slug:"jisook-moon",fullName:"Jisook Moon"},{id:"175638",title:"MSc.",name:"Snag-Hun",surname:"Bae",slug:"snag-hun-bae",fullName:"Snag-Hun Bae"}],corrections:null},{id:"49156",title:"Mesenchymal Stem Cell Manufacturing for Clinical Use",doi:"10.5772/61370",slug:"mesenchymal-stem-cell-manufacturing-for-clinical-use",totalDownloads:1895,totalCrossrefCites:2,totalDimensionsCites:2,hasAltmetrics:0,abstract:"Mesenchymal stromal/stem cells (MSCs) are adult, self-renewable, multipotent cells that can be isolated in various tissues, most commonly bone marrow (BM) and adipose tissue. Because of their capacity for self-renewal and differentiation into tissues of mesodermal origin and due to their immunomodulatory ability, MSCs are used in many preclinical and clinical studies as possible new therapeutic agents for the treatment of a very broad range of conditions, including heart, hepatic, and neurodegenerative diseases.",signatures:"Franca Fagioli and Ivana Ferrero",downloadPdfUrl:"/chapter/pdf-download/49156",previewPdfUrl:"/chapter/pdf-preview/49156",authors:[{id:"173434",title:"Dr.",name:"Franca",surname:"Fagioli",slug:"franca-fagioli",fullName:"Franca Fagioli"}],corrections:null},{id:"49004",title:"Trends in Mesenchymal Stem Cells' Applications for Skeletal Muscle Repair and Regeneration",doi:"10.5772/60919",slug:"trends-in-mesenchymal-stem-cells-applications-for-skeletal-muscle-repair-and-regeneration",totalDownloads:2176,totalCrossrefCites:5,totalDimensionsCites:7,hasAltmetrics:0,abstract:"Skeletal muscle injuries are quite frequent in traumatic scenarios, such as war injuries or road- or work-related accidents. The skeletal muscle has good regenerative ability, but the extent or recurrence of muscle injury might impair complete structural and functional recovery. Severe tissue loss overwhelms skeletal muscle´s intrinsic regenerative capabilities and culminates in the development of noncontractile fibrous tissue scar. Conservative RICE -based and surgical treatments show limited efficacy in terms of improving these severe cases outcomes, pressing the need for new approaches on skeletal muscle’s therapy. Since the first suggestions of the potential of mesenchymal stem cells for regenerative medicine and tissue engineering, many applications have been explored for a variety of tissues and diseases, including the skeletal muscle, which is the focus of this literature review.",signatures:"A.R. Caseiro, T. Pereira, P.J. Bártolo, J.D. Santos, A.L. Luís and A. C.\nMaurício",downloadPdfUrl:"/chapter/pdf-download/49004",previewPdfUrl:"/chapter/pdf-preview/49004",authors:[{id:"40796",title:"Prof.",name:"Paulo",surname:"Bártolo",slug:"paulo-bartolo",fullName:"Paulo Bártolo"},{id:"56285",title:"Prof.",name:"Ana Colette",surname:"Maurício",slug:"ana-colette-mauricio",fullName:"Ana Colette Maurício"},{id:"56292",title:"Dr.",name:"Ana Lúcia",surname:"Luís",slug:"ana-lucia-luis",fullName:"Ana Lúcia Luís"},{id:"161695",title:"Prof.",name:"José",surname:"Domingos",slug:"jose-domingos",fullName:"José Domingos"},{id:"174264",title:"Ph.D. Student",name:"Ana Rita",surname:"Caseiro",slug:"ana-rita-caseiro",fullName:"Ana Rita Caseiro"},{id:"174267",title:"Dr.",name:"Tiago",surname:"Pereira",slug:"tiago-pereira",fullName:"Tiago Pereira"}],corrections:null},{id:"48953",title:"Mesenchymal Stem Cells — Their Antimicrobial Effects and Their Promising Future Role as Novel Therapies of Infectious Complications in High Risk Patients",doi:"10.5772/60640",slug:"mesenchymal-stem-cells-their-antimicrobial-effects-and-their-promising-future-role-as-novel-therapie",totalDownloads:1844,totalCrossrefCites:7,totalDimensionsCites:10,hasAltmetrics:0,abstract:"Mesenchymal stem cells (MSCs) are heterogeneous progenitor cells that have the capacity of self-renewal and multi-lineage differentiation. These adult stem cells can be derived from several sources including bone marrow (BM), peripheral blood, cord blood, placenta, amniotic fluid, skin and adipose tissue. They have certain distinguishing features and their immunomodulatory and immunosuppressive properties enable them to have several therapeutic and clinical applications. Recently, MSCs have gained enormous potential as they can potentially cure various intractable and chronic diseases and as they have shown effectiveness in the treatment of various infections in animal models and in early clinical trials. MSCs are essential constituents of the framework that supports organ integrity and tissue barriers. Suppression of both T and B cells allows them to be major players in the innate response to bacterial infection and in controlling inflammatory response. Human BM-MSCs possess direct antibacterial activity against Gram-negative bacilli and they have been shown to improve survival and reduce mortality in animal models having septic complications. BM-MSCs are effective in treating sepsis and acute respiratory distress syndrome in high-risk patients such as those with malignant hematological disorders, recipients of solid organ and hematopoietic stem cell transplantation (HSCT) and patients receiving advanced level of care in intensive care units. Additionally, human BM-MSCs can act as drug delivery vehicles by enhancing the effectiveness of conventional antimicrobials and thus they may prevent the evolution of drug-resistant microbes. MSCs contain a subset of interleukin-17+ that is capable of inhibiting the growth of Candida albicans (C. albicans). Also, CD 271+ BM-MSCs may provide a long-term protective intracellular niche in the host where Mycobacterium tuberculosis (M.TB) organisms remain viable but in a dormant state. Two recent clinical trials in humans that included 57 patients have shown that autologous transplantation of MSCs can successfully treat multidrug resistant (MDR) strains of M.TB. Animal studies have demonstrated that MSCs enhance host defenses against malaria. MSC therapy improves liver function and promotes hepatocellular regeneration in patients with hepatic fibrosis caused by schistosomiasis. Transplantation of MSCs has been shown to reverse right ventricular dilatation, cardiomyopathy and advanced cardiac involvement caused by Trypanosoma cruzi infection.",signatures:"K.A. Al-Anazi and A.M. Al-Jasser",downloadPdfUrl:"/chapter/pdf-download/48953",previewPdfUrl:"/chapter/pdf-preview/48953",authors:[{id:"37255",title:"Dr.",name:"Khalid",surname:"Al-Anazi",slug:"khalid-al-anazi",fullName:"Khalid Al-Anazi"},{id:"158060",title:"Dr.",name:"Asma",surname:"Al-Jasser",slug:"asma-al-jasser",fullName:"Asma Al-Jasser"}],corrections:null}],productType:{id:"1",title:"Edited Volume",chapterContentType:"chapter",authoredCaption:"Edited by"},subseries:null,tags:null},relatedBooks:[{type:"book",id:"813",title:"New Advances in Stem Cell Transplantation",subtitle:null,isOpenForSubmission:!1,hash:"3da60ac77b0741e395276bcaaf911246",slug:"new-advances-in-stem-cell-transplantation",bookSignature:"Taner Demirer",coverURL:"https://cdn.intechopen.com/books/images_new/813.jpg",editedByType:"Edited by",editors:[{id:"67350",title:"Prof.",name:"Taner",surname:"Demirer",slug:"taner-demirer",fullName:"Taner Demirer"}],equalEditorOne:null,equalEditorTwo:null,equalEditorThree:null,productType:{id:"1",chapterContentType:"chapter",authoredCaption:"Edited by"}},{type:"book",id:"216",title:"Stem Cells in Clinic and Research",subtitle:null,isOpenForSubmission:!1,hash:"5a31b9aa4ace99ed56f02e53a74d068e",slug:"stem-cells-in-clinic-and-research",bookSignature:"Ali Gholamrezanezhad",coverURL:"https://cdn.intechopen.com/books/images_new/216.jpg",editedByType:"Edited by",editors:[{id:"29557",title:"Dr.",name:"Ali",surname:"Gholamrezanezhad",slug:"ali-gholamrezanezhad",fullName:"Ali Gholamrezanezhad"}],equalEditorOne:null,equalEditorTwo:null,equalEditorThree:null,productType:{id:"1",chapterContentType:"chapter",authoredCaption:"Edited by"}},{type:"book",id:"388",title:"Embryonic Stem Cells",subtitle:"Basic Biology to Bioengineering",isOpenForSubmission:!1,hash:"75fab84c1c8e75f1882393bd48c0e7a5",slug:"embryonic-stem-cells-basic-biology-to-bioengineering",bookSignature:"Michael S. 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Modern construction industry is developing rapidly, thanks to new technologies. Steel frame structures are often used in the construction of public and industrial buildings. Buildings from insulated metal structures have the following advantages: excellent architectural look that meets the strictest requirements for modern buildings; simple and fast mounting enabling to erect a big building in a very short time calculated in months or even in weeks; good thermal-technical characteristics as modern metal structures enable to avoid thermal bridging at connections, and the thickness of heat insulating layer is selected according to applicable standards; good operation characteristics as reliable elements ensure the required tightness of the building, and metal elements are protected from corrosion by more than one layer of coating.
Modern steel frames are made of the following components: bearing metal elements of the structural framework (partitions and load bearing elements); roof, roof-wall and wall cladding; partition insulation packages (thermal insulation, noise insulation, wind and vapour barriers). Elements of partitions structures and external wall insulation systems are presented in Figures 1 and 2.
Elements of partition structures.
External wall insulation systems.
Methods of insulating walls of existing industrial buildings:
Thermal insulating layer is fixed directly to the façade that is afterward finished by reinforced (with mesh or fibre) plastering. It is a frameless insulation system.
Wood or metal studs are fixed to the wall, thermal insulation is placed into the spaces between studs, and various finishing panels are fixed to the studwork. It is a framework system (ventilated).
Finished elements made of joined thermal insulation, and finishing layers (composite panels) are fixed to the wall.
The main stages for designing network models for steel frame building are as follows:
making combinations of complex processes used in steel frame building;
finding possible alternatives of partial processes in steel frame building;
finding technological links between the alternatives of partial processes in steel frame building;
drawing networks for steel frame building technology.
In terms of system approach, steel frame building is a complex process made of various partial (work) processes that can be completed by different working methods, which are determined by work object characteristics, construction materials, work tools, equipment, number of workers and their qualification. Each of the above factors is described by certain technical and economic indicators [1, 2, 3].
The complex process of steel frame building can be divided into the following partial technological processes: F—steel frame mounting, B—mounting of bearing structures (beams and trusses); I—installing connections (Figure 3).
Diagram of steel frame building complex process combination.
The complex process of wall and roof erection can be divided into the following partial technological processes: P—mounting of purlins, IL—inner layer mounting, S—sound insulation mounting, T—thermal insulation mounting, W—wind insulation mounting, and FL—finishing layer (Figures 4 and 5).
Diagram of wall erection complex process combination.
Diagram of roof erection complex process combination.
The analysis of steel frame building reveals many technological systems of this complex process. Many alternative solutions can be found by changing work methods. Different work methods result from the change of building structures, work tolls and mechanisms used.
Available alternatives of work processes used for the building steel framework are presented in Table 1.
Partial process alternative code | Title of partial process in steel frame building: partial process alternatives (short description) |
---|---|
Mounting of columns: | |
F1 | Manually, bolted connections |
F2 | Manually, welding |
F3 | Mechanically, crane lifting, bolted connections |
F4 | Mechanically, crane lifting, welding |
F5 | Mechanically, hoist lifting, bolted connections |
F6 | Mechanically, hoist lifting, welding |
Mounting of bearing structures: | |
B1 | Mounting beams manually, bolted connections |
B2 | Mounting beams manually, welding |
B3 | Mounting beams, crane lifting, bolted connections |
B4 | Mounting beams, crane lifting, welding |
B5 | Mounting beams, hoist lifting, bolted connections |
B6 | Mounting beams, hoist lifting, welding |
B7 | Mounting trusses, hoist lifting, assembling on the ground |
B8 | Mounting trusses at designated height, hoist lifting |
B9 | Mounting trusses, assembling on the ground, crane lifting |
B10 | Mounting trusses at designated height, crane lifting |
Making connections: | |
I1 | Making connections manually, welding |
I2 | Making connections manually, bolting |
I3 | Making connections, hoist lifting, bolting |
I4 | Making connections, hoist lifting, bolting |
I5 | Making connections, crane lifting, welding |
I6 | Making connections, crane lifting, bolting |
Alternatives of work processes used for the building a metal framework.
Network modelling of construction processes significantly improves operations management, work culture and efficiency, shortens the commissioning term, and reduces construction costs [4].
The method is beneficial only if the following conditions are met: well-organised data collection, transfer and processing; expedient system of decision-making and task delegation to operators supported by computerised network and specialists highly competent in network planning and control.
The graphical representation of the variety of works in a construction process with marked technological and organisational links is called a network model [5]. The network model with computed space, time, and technological parameters is called a network. Alternatives of separate (partial) technological processes and dependency relationship between them must be set in the design of network technological model. Technological links are made for three building alternatives: steel frame (Figure 6), roof (Figure 7), and wall (Figure 8).
Technological links between partial processes in steel frame building.
Technological links between partial processes in roof building.
Technological links between partial processes in wall building.
Technological network model for the complex installation of steel frame is shown in Figure 9.
Technological network model for the complex installation of steel frame.
Applicable technological and other project decision optimisation methods used in projection and construction processes could be divided into two major groups: applied mathematics and systemic-technical analysis methods. A great deal of construction organisation tasks could be solved by using mathematic statistics (correlation and regression analysis), theory of chances, mathematic programming, ‘gambling’ theory, multi-criteria optimisation and other methods.
The selection of optimisation method depends on the task character which is solved, the possessed source information and frequently it requires local interpretation. While solving practical construction optimisation tasks, most frequently only one (the most important) of several economic criteria is chosen (e.g. total construction price, object construction or separate pieces of construction per one solid metre (1 m3) price, the revenue received, the greatest turnover, etc.). The significance of the criterion selected is very important. It shows that one of the criterions mentioned (e.g. revenue received), which is selected by the interested party, is much more important than the other one, for example, total construction price. Therefore, to be concrete, it shows the significance of one criterion to the interested party in comparison with the rest, which are left as less significant or insignificant.
The significance of the criterion could be determined by employing statistical, expert opinion-based methods, even comparison, and entropy methods. These methods help to determine various theoretical, subjective, and complex values of great significance that are further used in the decision optimisation counting processes. By counting values, it is meant that the interested party could choose the criterion (they think) of the greatest significance.
Moreover, the client is frequently much more interested not in the price, but in other criteria such as construction duration, aesthetics, harmfulness to the health of the materials used, longevity, convenience to exploit, comfortability, and so on. So any construction technological decisions could be described and optimised according to the following system of criteria evaluation, where the criteria could be expressed by the indices of technological economy and quality characteristics. For this purpose, methods of multi-criteria decisions are used [1, 2].
It can be argued that each of the decision optimisation method mentioned has its own advantages and disadvantages. Moreover, each of them could be used to solve the tasks of specific constructions groups. They help to create various optimisation models of theoretical objects, technological or work processes like technological net models (alternative decisions, resources, dynamic, duration), mathematic models (shape of matrices, equation systems, various probability models), expert level systems, decision support systems and many others models.
Researches of modelling and optimisation were founded based on the applied mathematics method, economics, system theory, cybernetics, and in the sphere of counting technological science and its integration. While optimising technological construction processes, it is advisable to apply the theoretical principles of system methodology on the grounds that, nowadays, the technological projection methods which are used do not correspond to the requirements of effective decision-making. It could be noted that one of the major disadvantages are the decisions are accepted synonymically, without any preliminary examination and evaluation of the model of construction process technology and many the like multi-criteria evaluation [3]. While solving the any technological decision optimisation problem, it is necessary to perform three major steps of construction process systemic examination (Figure 10).
The steps of construction composite process systemic examination.
While modelling the construction composite process technological decisions, it is advisable to accept these main preconditions:
all possible variations of complex process technologic decisions have to be constructed. Moreover, technological connections and partial variants of the processes (partial alternative decisions) have to be established;
while forming the net model, consisting of partial process technological variants, it is necessary to take a precondition that only one of many other partial process technological variants will be implemented;
every partial process has got its individual time duration, which is either technologically based or depends on the work expenditure.
So while creating the mathematical model of alternative technological decision-making, it is advisable to define the set of the compared alternative decisions and their evaluation criteria. In that case, the source data matrix
Alternative decisions | Evaluation criteria | |||
---|---|---|---|---|
K1 | K2 | … | Kn | |
a1 | x11 | x12 | x1n | |
a2 | x21 | x22 | x2n | |
… | … | … | … | … |
am | xm1 | xm2 | xmn |
The source data matrix
The source data matrix
The quantitative and qualitative characteristics are shown in Table 3.
Criteria | Unit of measurement | Definition |
---|---|---|
The price of a part of assembly process | (EUR/unit of measurement) | Price (in EUR) per conventional unit of measure of the analysed partial process alternative |
The qualification level of construction workers | Category | Evaluation criterion indicating the workers’ ability to do the work of the relevant complexity |
Mechanisation level of a part of assembling process | % | |
Durability | In year | Life cycle of steel frames |
Complexity of assembling work | In points | Complexity of work evaluation criterion |
Alternatives of work processes used for the building a metal framework.
The main essence of the multi-criteria evaluation method is the formation of generalised composed criterion. It is based on the comparison deviation of the criteria from so-called the ideal criteria, consisting of the best variant criteria being analysed. By applying the method and
Application algorithm of the method of proximity to an ideal point.
The matrix
where
If the significance of the subjective or theoretical (
If there are no values of significance, then
where
The ideal negative variant is being established:
The difference (distance) between real and ideal positive variant is being found:
where
The difference between real and ideal negative variant is being found:
0 ≤
The best (the most rational) architectural solution will become the one, which
The method of proximity to an ideal point can be applied to find the most effective engineering solution alternative.
The rational alternative for steel frame building is found from the diagram presented in Figure 12.
Algorithm for the selection of the rational alternative for the complex process.
Taking into consideration the factors that affect the rationality of steel frame building process solutions, it is feasible to do the technological modelling of multi-criteria evaluation of alternative buildings.
A criteria system for the evaluation of alternative partial processes must be designed in order to find the rational steel frame building alternative. Criteria values and importance may be subsequently adjusted taking priorities and the current situation into account.
In practice, it is possible to find the most rational technological alternatives for metal framework, roof and wall structures separately with the help of network technological model and multi-criteria analysis of steel frame building solutions.
In multiple criteria evaluation of technological solutions for assembling buildings from steel frame structures by pairwise comparison method, the criteria by significance are distributed as follows: durability is the most important criterion in the evaluation of alternatives; the price (EUR/unit of measurement) of a part of assembly process; construction workers’ qualification level (category); mechanisation level of a part of assembling process (%); and complexity of assembling work (in points) are less important criteria.
The author declares no conflict of interest.
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