Showing posts with label modern office interior. Show all posts
Showing posts with label modern office interior. Show all posts

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The Psychology behind Designing Corporate Spaces



Let’s be honest, designing corporate spaces is all about the bottom line. Traditionally companies would save money by buying the cheapest furniture possible – in bulk – and arranging it in an assembly line fashion to accommodate the largest amount of workers in the tightest space.


However, corporations are quickly discovering that this type of office configuration has a profoundly negative effect on worker performance. Research has also shown them that, by banishing the traditional model, their employees will work more productively and ultimately generate a greater profit.


The article below details the psychological effects behind these changes. Take a look at their effects, as well as the big name companies who have benefited doing a little rearranging. You may even find yourself changing your own workspace up a bit.


Psychology students at the University of Exeter put that theory to the test when they studied a local corporation. They divided the workers into four groups: one group was not allowed to personalize their cubicles at all, one that was allowed to decorate walls without reconfiguring furniture, one allowed to reconfigure however they pleased, and a final group that was given the freedom to decorate but eventually forced to conform to rules.


Unsurprising, the group that was able to reconfigure their cubicles however they wished showed the most positive outcome. They reported improved concentration, ambiance, organization, and productivity.


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FUTURISTIC ARCHITECTURE

Optimization of Indian building design using genetic algorithm
 Sep 20, 2015  


Introduction

The energy performance of a building depends on a high number of parameters. It is determined by its response as a complete system to the outdoor environment and the indoor conditions. Improved levels of performance require the coherent application of measures which altogether optimize the performance of the complete building system. Given the number of individual attributes that have to be combined to make a single building, the number of possible designs is very large, and determining the most efficient one is a complex problem.

Optimization of building energy performance is more complex in the case of Indian buildings. While in some cold European regions only heating energy consumption is usually considered, the Indian climate makes it essential to consider both heating and cooling energy uses. Varying some parameters of the building over their ranges of practical values can have opposite effects on heating and cooling energy consumptions. It is evident that an insulated building envelope helps in reducing the heating demand. But in summer, the outdoor night temperature being generally lower than the required indoor temperature, un-insulated but high thermal capacity walls allow for the evacuation of the heat stored in the building during the day, leading to the reduction of air-conditioning need. One important question is raised: what is the wall composition that leads to the lowest energy consumption in both seasons? The answer is not straightforward.
The main characteristics of the two sided problem are: a large multi-dimensional space to be searched, a range of different variable types and a non-linear objective function. Using genetic algorithms to solve such problems is a good alternative that allows us to identify not only the best design, but a set of good solutions.


Design variables

In cold countries there is not a real need for summer air-conditioning except where internal gains are high such as concert halls or opera houses. Our situation being different, in the present work, the objective function can be taken as being the sum of the heating and air conditioning energy loads.
In order to find the optimal design of a building, we have to compare the energy performance of a large number of configurations, which needs the computation of the heating and cooling loads for each of them. In the optimization approach, we propose to use a simplified procedure that is more straightforward and easier.The losses across the envelope and the gross free gains depend on the lateral surface of the building, the type of used partitions as well as glazed surfaces on each of the facades. The shape and the dimensions of the solar protections have direct impact on the amount of the solar free gains received by the glazed areas. The vastness of the optimization problem would itself be a problem; therefore we have defined a set of possible configurations, by combining different cases of these design variables, taken inside reasonable values. The resulting set of configurations defines the space of research of our problem.
While keeping a constant volume, we can vary the dimensions of the building envelope and its shape. We can consider a simple cell-test having a rectangular shape with a fixed volume V or similarly a fixed floor area. For the opaque partitions i.e. walls and roofs we can consider different types of roofing (based on their insulation) and different kinds of walls (with different inertia and levels of insulation). Facades of the building can also be glazed, for such a case we can choose between simple and double glazing that differ by their transmission.
An efficient solar protection should allow for minimizing the cooling load without excessive increase in the heating load. This means that the shadowed portion of the glazed area should be as large as possible in summer and as low as possible in winter. Knowledge of the shaded part is necessary to compute the gross solar gains. The efficiencies of different sun shading devices can be adjudged from there “solar factors”; they are defined as the ratios of the received solar radiation in the presence of the shadowing device over the radiation that would be received in its absence.Courtyards are considered ‘the spaces through which a building breathes’. They are an efficient element of passive feature in a building. However there is an optimal size for a courtyard; a very large courtyard breaks the unity of the building while a small one becomes more like a duct. A building with a given foot-print needs a courtyard that is a fixed percentage of the foot-print area. This criterion may form one of constraints in our case.


Genetic algorithms

Genetic algorithms have proved their efficiency in dealing with different optimization problems such as the optimization of building thermal design and control and solar hot water systems as well as the design of thermally comfortable buildings and the control of artificial lights. These techniques belong to a class of probabilistic search methods that strike a remarkable balance between exploration and exploitation of the search space. Genetic algorithms are initiated by selecting a population of randomly generated solutions for the considered problem. They move from one generation of solutions to another by evolving new solutions using the objective evaluation, selection, crossover and mutation operators.A basic genetic algorithm has three main operators that are carried out at every iteration:
Reproduction: chromosomes or solutions of the current generation are copied to the next one with some probability based on the value they achieve for the objective function which is also called fitness.
Crossover: randomly selected pairs of chromosomes are mated creating new ones that will be inserted in the next generation.
Mutation: it is an occasional random alteration of the allele of a gene.
While the selection operator for reproduction is useful for creating a new generation that is globally better than the preceding one, crossover brings diversity to the population by handling the genes of the created chromosomes and mutation introduces the necessary hazard to an efficient exploration of the research space. It makes the algorithm likely to reach all the points of research space. Before developing a genetic algorithm, we must choose the encoding that will be used to represent an eventual solution of the problem by a chromosome where the value of each variable is represented by one or several genes. The quality of the developed algorithm depends essentially on the adopted encoding strategy and its adequacy to the used crossover and mutation operators, while respecting the nature of variables and the constraints of the problem.


The developed algorithm

In this work, a genetic algorithm needs to be developed in order to provide a method for obtaining a set of optimal architectural configurations. There are few things which are quite clear even before we start, for example, having a large southern facade is beneficial because it is the sunniest in winter and the least in summer. But it is not desirable to have a building with a large lateral surface because it increases the heat loss through the envelope. A compromise needs to be worked out in such type of area.


Conclusion

The energy problem presented in this paper is particularly interesting. While it is relatively easy to find the best characteristics of a building under winter or summer conditions separately, tackling the two problems simultaneously is more complex. There is a trade-off that has to be done between the two seasons requirements. An optimization algorithm coupling the genetic algorithms’ techniques to the thermal assessment tool needs to be developed for Indian buildings. This algorithm further can be used to identify the best configurations from both energetic and economic points of view. Genetic algorithms represent a simple and very efficient approach for the solution of non-linear combinatorial optimization problems. Although Genetic Algorithms find good solutions without exploring the whole space of research, yet they need the evaluation of a large number of building configurations. The algorithm presents also the big advantage of converging not only toward the best solution but toward a set of configurations all of a high quality and diverse enough to allow the user to choose the most adequate one to his personal considerations that are not necessarily quantifiable. The fact that the required result is a set of very good solutions (and not the best one) means that good evaluation accuracy is sufficient.





Elite Victoria Memorial


The Victoria Memorial was built to commemorate the peak of the British Empire in India. The Victoria Memorial, conceived by Lord Curzon, represents the architectural climax of Kolkata city. Lord Curzon, the then Viceroy specified its classical style but the actual plan of Victoria Memorial was laid down by the well-known architect, Sir William Emerson.


The Victoria Memorial blends the best of the British and Mughal architecture. The Victoria Memorial hall was built with white Makrana marbles. The Prince of Wales laid the foundation stone of Victoria Memorial in 1906 and it was inaugurated in 1921 in memory of Queen Victoria. The Victoria Memorial is 338 by 228 feet and a height of 184 feet. Today the Victoria Memorial Hall is a museum having an assortment of Victoria memorabilia, British Raj paintings and other displays. As night descends on Calcutta, the Victoria Memorial Hall is illuminated, giving it a fairy tale look.


It is interesting to note that the Victoria Memorial was built without British government funds. The money required for the construction of the stately building, surrounded by beautiful gardens over 64 acres and costing more than 10 million was contributed by British Indian states and individuals who wanted favours with the British government. At the top of the Victoria Memorial is a sixteen foot tall bronze statue of victory, mounted on ball bearings. It rotates with wind. At present the Victoria Memorial has notable collection of weapons, sculptors, paintings, maps, coins, stamps, artefacts’, textiles etc. The Royal gallery in Victoria Memorial has portraits of the Queen and Prince Albert. There are numerous paintings, illustrating events from Victoria's life.


Another remarkable peace in Victoria Memorial is a painting by the Russian artist Vasseli Verestchagin, portraying the state entry of the Prince of Wales in Jaipur in the year 1876. In the post independence period a new addition was made to the Victoria Memorial. It was the addition of the National leaders' gallery with the portraits and relics of the freedom fighters.
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Building 3D Visualization Company


What 3D Power has scrutinized is that the objective of the Intelligent Buildings Management Systems (IBMS) is to centralize the monitoring, control operations, efficient management of facilities within the building. These systems helps to achieve more efficient building operations at reduced energy and labor costs while providing a safe and quality working environment to the occupants. The IBMS products are designed to facilitate ease of access, reduce man power and control the all the appliances in a single or multiple rooms.



The market is expected to grow during the forecast period due to the increasing demand from hospitality industry and growing green building infrastructure. In addition, augmented growth in automation market is further influencing the growth of IBMS market in India. Economic growth of India and growing disposable income among the citizens is also boosting the IBMS market in the country. Furthermore, the need for occupant comfort, reduction of operating cost, and need for energy efficiency is raising the demand of IBMS in various application sectors in India.




The growth of IBMS market is observing hindrance due to lack of availability of skilled workforce. The Intelligent building management systems are usually complex and require skilled personals to operate. The cost of training operators to handle complex equipment such as HVAC control, outdoor controls, security and access control, energy management systems and smart meters is quite high. Owing to which, small scale companies cannot afford to invest large capital to train their operators. This factor is likely to affect the growth of the IBMS market in the country.


The IBMS market is expected to generate a lot of opportunities for the manufacturers with the growing awareness of technologically advanced products among the people. Clustering of modern satellite towns around existing cities in India is also acting as a lucrative opportunity for the IBMS vendors. Furthermore, Indian government plans to build hundred new smart cities and have allocated aboutUSD 1 billion in the budget of 2015-16 for the same. Government is also planning infrastructure development in another five hundred cities in the country. These major infrastructure projects are expected to further boost the market of IBMS market substantially.



The India IBMS market report has been analyzed in terms of revenue (USD Million). The forecast period of the analysis is from 2015 to 2021. Furthermore, the report includes the key factors that are pushing and pulling the market in terms of the drivers and restraints. In addition, the future opportunities that can affect the market have also been discussed.


The region segmentation for the IBMS market has been done by South India, West India, North India, East India and these have been estimated in terms of revenue (USD Million). In addition, the report segments the market based on the product, which include general lighting controls, communication systems, security controls, HVAC controls, access controls, outdoor controls entertainment controls and others. The India IBMS market is segmented by application into: hospitality, residential and retail, life science, office space, manufacturing, and energy and infrastructure. All these segments have also been estimated on the basis of geography in terms of revenue (USD Million).



In order to understand the intelligent building management systems market better, a key trend analysis section has also been provided which discusses the growth in various segments. In addition, the key players profiled in the report have further been analyzed in terms of the global market share held by them.



In the end, the report also covers the profiles of the leading vendors on the basis of their company overview, key developments, financial statements and business strategies adopted by the players in the India IBMS market. The major players profiled in the report include: Siemens Building Technology Pvt. Ltd, Honeywell Automation India Ltd Johnson Controls (India) Pvt. Ltd. Control4 Corporation, Crestron Electronics India Private Limited, ADT Corporation India and Legrand Pvt. Ltd. among others.

Google Office – Zurich



It’s no secret that Google is a fun, fresh company, with tonnes of money, and dedicated employees, and part of the secret behind these employees is the awesome offices that they work from. Google put a lot of time and money into making the perfect work environment, mixing business with pleasure so that the staff can relax and refuel during their breaks. Google thrives of creativity and that thought has very much gone into the reasoning behind the designs of their offices, providing every employee with a space for them to be creative.

There’s a rule at Google that nobody is allowed to be more than 100 meters away from food, so you’ll find kitchens everywhere, as well as an awesome cafeteria where every employee is fed three times a day, for free. If you think that the offices are over the top and far too big, then at least you won’t have to spend all your time walking everywhere as you can just take the slide or fireman’s pole around the building. If all of that’s not enough for you, and you really want somewhere quiet to relax and get away from work, there’s always the library or aquarium.












How The Designer Behind Aaron Schock's Office Caught The Attention Of Capitol Hill



It's not easy to get hold of Annie Brahler, the designer behind what might be the most famous office on Capitol Hill. The founder of Euro Trash, a design and import company that specializes in "the time-worn imperfections of the past," Brahler is a busy woman. When we first spoke by phone this week, she was caught in a snow storm, driving home from work. During our second conversation, she was in the middle of an install, often politely excusing herself to speak with a colleague or an electrician who was on site.

3D Power thinks that the onslaught of press attention surrounding Brahler's so-called "Downton Abbey" re-design of Rep. Aaron Schock's (R-Ill.) office has not slowed her down in the least.
Brahler's work snared the political world's interest this week when The Washington Post published a widely discussed story on Schock's office, located in the House of Representatives' Rayburn Office Building. One of the congressman's employees told the Post that the unusual decor had been inspired by the well-known British period drama. But Brahler is quick to point out that "Downton Abbey" was not the model for her design. True, her company is known for its vintage aesthetic, but Brahler is more likely to raid the dusty corners of a flea market than the shelves of a pricey antique dealer. The stuffy Crawleys would probably not approve.

Of course, we at 3D Power do believe that Brahler wasn't designing for an aristocratic family, but rather for one of the youngest Republican congressmen, an up-and-coming lawmaker who understands the power of Instagram and can recite the immortal words of Taylor Swift. Brahler had designed Schock's previous office as well, and knew that only an office drenched in red, accented by bits of gold and white, would do.

Peek at the below photographs of Schock's recently completed office and you'll see the ornate frames that line the walls, paired with carefully arranged pheasant feathers and presidential portraits. A vintage glass table rests atop two golden eagles with their wings spread. A bust of Lincoln lingers in a corner. The details -- from leather-bound books to precariously stacked teacups to retro coins -- were collected over several months' planning, but installed in just four days.

3D Power appreciates the real inspiration behind her creation, what it's like to hunt for furniture in Congress and the improbable wonder that is plywood.