A starter to the concepts of modularization and mass customization. Condensed and application-oriented approach for a broad audience in engineering, production, sales and marketing. Provides an extensive configurator evaluation checklist for future users and a supplement of business cases.
This book is about the growth and differentiation processes underlying the growth and differentia of filamentous fungi. The impetus for this work tion of fungi and that it provides the reader with stems from our perception that the coverage of adequate source references for further information. this highly diverse and important group of organ It is estimated conservatively that there are more isms has been neglected in recent years, despite than 1. 5 million species of fungi - more than five many significant advances in our understanding of times the number of vascular plants and second the underlying mechanisms of growth. This situ only in diversity to the insects. The extreme ation contrasts with the treatment of Saccharomyces diversity of form in the fungi has always been a cerevisiae, for example, which because of its ideal source of inspiration for mycologists. This book is properties for genetic analyses, has established concerned mainly with those systems that have itself as the model eukaryote for the analysis of the been well characterized from the biochemical, cell cycle, and basic studies of biochemical and physiological or genetic points of view. Although genetic regulation. This book does not deal with it has not been possible to illustrate the breadth of the detailed growth phYSiology of S.
In this book, methods from fractal geometry are applied to model growth forms, taking as a case study a type of growth process which can be found among various taxonomic classes such as sponges and corals. These models can be used, for example, to understand the amazing variety of forms to be found in a coral reef and to simulate their growth with 2D and 3D geometrical objects. Models which mimic the growth of forms and the environmental influence on the growth process are also useful for ecologists, as a combination of simulation models together with the actual growth forms can be used to detect the effects of slow changes in the environment.
Plant Factory Basics, Applications, and Advances takes the reader from an overview of the need for and potential of plant factories with artificial lighting (PFALs) in enhancing food production and security to the latest advances and benefits of this agriculture environment. Edited by leading experts Toyoki Kozai, Genhua Niu, and Joseph Masabni, this book aims to provide a platform of PFAL technology and science, including ideas on its extensive business and social applications towards the next-generation PFALs. The book is presented in four parts: Introduction, Basics, Applications, and Advanced Research. Part 1 covers why PFALs are necessary for urban areas, how they can contribute to the United Nations' Sustainable Development Goals, and a definition of PFAL in relation to the term "indoor vertical farm." Part 2 presents SI units and radiometric, photometric, and photonmetric quantities, types, components, and performance of LED luminaires, hydroponics and aquaponics, and plant responses to the growing environment in PFALs. Part 3 describes the indexes and definition of various productivity aspects of PFAL, provides comparisons of the productivity of the past and the present operation of any given PFALs, and compares PFALs with one another from the productivity standpoint by applying the common indexes. Part 4 describes the advances in lighting and their effects on plant growth, breeding of indoor and outdoor crops, production of fruiting vegetables and head vegetables, and concluding with a focus on a human-centered perspective of urban agriculture. Providing real-world insights and experience, Plant Factory Basics, Applications, and Advances is the ideal resource for those seeking to take the next step in understanding and applying PFAL concepts. - Provides the most in-depth assessment of PFAL available - Compares PFAL to "indoor vertical farming and provides important insights into selecting optimal choice - Presents insights to inspire design and management of the next generation of PFALs
Modular construction has the potential to improve housing quality, speed up delivery and reduce building costs – so why isn’t everyone doing it? This practical handbook combines real-world advice on designing modular housing with a compelling argument for off-site construction as a means for architects taking a greater role and achieving more influence in their housing projects. Focusing on the benefits as well as the challenges of modular construction, this book illustrates that off-site construction need not act as a design constraint and can in fact provide an opportunity for greater design impact. Richly illustrated with recent case studies and featuring over 100 photographs of exemplar projects, The Modular Housing Handbook provides inspiration as well as timely, practical advice.
Work in partnership with nature to nurture your soil for healthy plants and bumper crops - without back-breaking effort! Have you ever wondered how to transform a weedy plot into a thriving vegetable garden? Well now you can! By following the simple steps set out in No Dig, in just a few short hours you can revolutionize your vegetable patch with plants already in the ground from day one! Charles Dowding is on a mission to teach that there is no need to dig over the soil, but by minimizing intervention you are actively boosting soil productivity. In fact, The less you dig, the more you preserve soil structure and nurture the fungal mycelium vital to the health of all plants. This is the essence of the No Dig system that Charles Dowding has perfected over a lifetime growing vegetables. So put your gardening gloves on and get ready to discover: - Guides and calendars of when to sow, grow, and harvest. - Inspiring information and first-hand guidance from the author - “Delve deeper” features look in-depth at the No Dig system and the facts and research that back it up. - The essential role of compost and how to make your own at home. - The importance of soil management, soil ecology, and soil health. Now one of the hottest topics in environmental science, this "wood-wide web" has informed Charles's practice for decades, and he's proven it isn't just trees that benefit - every gardener can harness the power of the wood-wide web. Featuring newly- commissioned step-by-step photography of all stages of growing vegetables and herbs, and all elements of No Dig growing, shot at Charles’s beautiful market garden in Somerset, you too will be able to grow more veg with less time and effort, and in harmony with nature - so join the No Dig revolution today! A must-have volume for followers of Charles Dowding who fervently believe in his approach to low input, high yield gardening, as well as gardeners who want to garden more lightly on the earth, with environmentally friendly techniques like organic and No Dig.
We live in a dynamic economic and commerical world, surrounded by objects of remarkable complexity and power. In many industries, changes in products and technologies have brought with them new kinds of firms and forms of organization. We are discovering news ways of structuring work, of bringing buyers and sellers together, and of creating and using market information. Although our fast-moving economy often seems to be outside of our influence or control, human beings create the things that create the market forces. Devices, software programs, production processes, contracts, firms, and markets are all the fruit of purposeful action: they are designed. Using the computer industry as an example, Carliss Y. Baldwin and Kim B. Clark develop a powerful theory of design and industrial evolution. They argue that the industry has experienced previously unimaginable levels of innovation and growth because it embraced the concept of modularity, building complex products from smaller subsystems that can be designed independently yet function together as a whole. Modularity freed designers to experiment with different approaches, as long as they obeyed the established design rules. Drawing upon the literatures of industrial organization, real options, and computer architecture, the authors provide insight into the forces of change that drive today's economy.
In urban environments, where space is costly, an innovative approach to increasing the abundance of plants in cities is to grow them vertically as ‘green walls’, rather than horizontally. Whether growing on independent self-supporting structures or directly on buildings, plants can use largely underexploited vertical space allowing an additional type of urban greening to be incorporated into the urban environment. This is especially true for urban laneways that can undergo revitalisation, activation and engagement through greening. It is becoming clear that to bring city people closer to the ecosystem services that urban green infrastructure provides, it is important to incorporate urban greening into small-scale projects in local, residentially oriented communities. By increasing green spaces and other nature-based solutions through methods such as laneway greening including low cost green wall systems, individuals will be provided with valuable opportunities to engage with the positive outcomes Introduction of urban greening and support a sustainable movement. While there is a vast and growing literature on both the benefits of volunteering and value of urban green space, the social impact of community gardening remains largely overlooked. To ensure the longevity of green wall projects, their benefits to society must be investigated, promoted and realised to encourage community involvement. Research in the space suggests that urban, low income individuals can have limited connections between themselves and nature, restricting potential social interactions, health, wellbeing and recreation. The objective of this guide is to establish an enabling environment to facilitate the uptake of vertical greening systems, more commonly known as ‘Green Walls’, within urban environments at a community level. To achieve this, a coherent framework is provided, that will provide guidance on planning, designing and managing a green wall within community space. This project is a collaborative enterprise that unites academia, government and community know-how to produce a complete, practical and inclusive means of enabling the expansion of urban greening.