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Remeeting is a tool that helps you get more out of in-person
meetings. Calendar integration and a special email address allow
users to email agenda items prior to a certain meeting. A
discrete notification at the time of the meeting reminds the user
to start the recording. During the meeting, the user focuses on the conversation, or can add notes and photos if desired. After the meeting, every participant gets notified by an automated email that lists the participants along with automatically extracted keywords, notes and photos. This stimulates collaboration, and keeps follow-up contributions at a central place: Just reply to add further notes to the meeting. The resulting meeting “document” can be shared with others and reviewed using a web app that acts as a visual index to the meeting. This makes Remeeting the perfect tool for regular group meetings, standups and interviews, where people typically track progress and follow up on. Remeeting is leveraging, promoting and contributing to open source projects including kaldi and docker.
Verglichen mit Gebäuden in Mauerwerks- und Betonbauweise ist jedoch die Planung eines Bauobjektes in Holzbauweise für den Architekten und die Fachplaner eine deutlich größere Herausforderung.
Geeignete computergestützte Planungswerkzeuge, die eine Simulation der genannten bauphysikalischen und konstruktiven Eigenschaften bereits im frühen Planungsentwurf für das gesamte Bauwerk und nicht nur für einzelne Komponenten ermög-lichen, könnten den Planungsaufwand drastisch reduzieren.
Zur Prognose der Luft- und Trittschalldämmung nach EN 12354 wurde deshalb in einem aktuellen Gemeinschafts-Forschungsvorhabens zwischen der TU München, der Hochschule Rosenheim und dem ift Rosenheim eine SEA basierte Excel Anwendung erstellt, die die Besonderheiten des Holzmassivbaus berücksichtigt.
Die geometrischen Daten des Bauvorhabens sowie die Bauteilbezeichnungen können für die Prognose aus einem Bauwerkinformationsmodell (BIM) eingelesen werden.
Die Bauteilkennwerte und Stoßstellendämm-Maße werden aus einer separaten Bauteildatenbank ausgelesen, die innerhalb des Projekts durch Messungen aus verschiedenen Laboren gefüllt wird. Im Beitrag werden die Anwendung und der aktuelle Stand der Datenbank vorgestellt, sowie Vergleiche zwischen Messergebnissen am realen Objekt und der Prognoserechnung gezeigt.
SEA based prediction for integrated vibroacoustical design optimization of multi-storey buildings
(2015)
In order to enable the design of a multi-storey timbe
r building with respect to the requirements or
recommendations for an enhanced acoustic comfort, a c
ollaboration of various experts is required
during the design process creating their own indivi
dual building models.
A simplification of the
design process and the procedure of verification co
uld be achieved if all of the experts involved
work on one single CAD based Building Information Mo
del (BIM). The required design tools
(FEM and SEA for the acoustic computation) can be di
rectly coupled to the BIM.
For this
purpose, it is necessary to allocate much more valid
ated input data for timber building elements.
With the increasing mechanization of buildings, it is necessary to be able to predict both the structure-borne sound power input from building machinery and the subsequent propagation of structure-borne sound in the building. This paper considers lightweight constructions and describes the results of an experimental study in the laboratory on a T-junction that was constructed from a timber joist floor and two double leaf timber-frame walls. The focus in this paper is on the vibrational behaviour of one of the timber-frame walls. To assess the vibration pattern and the propagation of structure-borne sound, the surface velocity levels were measured on a grid on both leaves of the wall with point force excitation on one side. This grid allowed calculation of structural intensity vectors. The influence of elements such as the timber studs and tongue and grooved joints between the boards were apparent in different frequency regions. Experimental modal analysis was carried out using measurements on both leaves of the wall, giving information about the coupling in different frequency regions. The results give insight into how such a timber-frame wall could be modelled using statistical energy analysis.
Recent development of GaN power transistors with blocking voltages up to 650V enables novel power electronics applications with outstanding performance in high-frequency operation. This paper demonstrates a class E power amplifier with 13.56MHz switching frequency for inductively coupled DC power supplies. Continuous wave output power up to 200W is achieved with 95% Power Added Efficiency (PAE).