Abstract:
A ground heat exchanger (2) comprises a flow leg (3), a heat exchanger leg (4), an upper manifold (7) and a lower manifold (10) to be positioned at the bottom of the borehole (1 ). The flow leg extends from the upper part of the borehole (1 ) to the lower manifold (10). The heat exchanger leg (4) comprises an outlet pipe (5) extending upwards from the upper manifold and a plurality of heat exchanger pipes (6) between the upper manifold and the lower manifold. The lower manifold connects the flow leg and the heat exchanger leg. The upper manifold com¬ prises a body (13) forming a fluid space (14), a connection (15) from the fluid space to the outlet pipe and a plurality of connections (16) from the fluid space to the heat ex¬ changer pipes. The flow leg is arranged to go through the fluid space of the upper manifold. The distance between the centre axis (A) of the flow leg and the centre axis (B) of the upper manifold may be different in the upper part of the manifold than in the lower part of the manifold. The upper manifold may comprise a conduit pipe (17) through the fluid space of the body and the flow leg may be arranged to go through the fluid space inside a conduit pipe.
Abstract:
Method of deactivating and possibly reactivating a SIM card and a subscription using an ODA (On Demand Activation) application characterized in that the SIM card is connected to the ODA database, in that information in the memory of the SIM card, such as the IMSI (International Mobile Subscriber Identity) of the SIM is transferred to the ODA, in that the ODA is arranged to be connected to the HLR/AUC to retrieve the subscription information, in that the ODA replaces the IMSI of the SIM card with a temporary IMSI (IMSI-T), in that the ODA stores said retrieved information together with the IMSI-T in said ODA database, in that the ODA transfers to the network, including the HLR/AUC, an instruction to cancel the subscription in the network including HLR/AUC, and in that the SIM card may be reactivated using and the information stored in the ODA database and on the SIM card including said IMSI- T.
Abstract:
The present invention relates to a novel crystalline form of (2 R )-(3-amino-2- fluoropropyl)phosphinic acid, the present invention is also directed to the use of the crystalline form for the treatment of gastrointestinal disorders as well as to a pharmaceutical compositions comprising the same and a process for the preparation of the crystalline form.
Abstract:
An end (1a) of a pipe (1) made of a plastic material that has memory properties is connected onto an end (2a) of a connecting piece (2). The wall thickness of the pipe end (1a) is temporarily decreased. Thereafter the end (1a) of the pipe (1) is positioned on the nipple end (2a) of the connecting piece (2). The wall thickness of the end (1a) of the pipe (1) is returned towards its original size such that the pipe (1) firmly and sealingly presses against the connecting piece (2).
Abstract:
A ground heat exchanger (2) comprises a flow leg (3), a heat ex¬ changer leg (4), an upper manifold (7) and a lower manifold (10) to be positioned at the bottom of the borehole d). The flow leg extends from the upper part of the borehole (1) to the lower manifold (10). The heat exchanger leg (4) comprises an outlet pipe (5) extending upwards from the upper manifold and a plurality of heat exchanger pipes (6) between the upper manifold and the lower manifold. The lower manifold connects the flow leg and the heat exchanger leg. The upper manifold comprises a body (13) forming a fluid space (14), a connection (15) from the fluid space to the outlet pipe and a plurality of connections (16) from the fluid space to the heat exchanger pipes. The flow leg is arranged to go through the fluid space of the upper manifold. The distance between the centre axis (A) of the flow leg and the centre axis (B) of the upper manifold may be different in the up¬ per part of the manifold than in the lower part of the manifold. The upper manifold may comprise a conduit pipe (17) through the fluid space of the body and the flow leg may be arranged to go through the fluid space inside a conduit pipe.
Abstract:
The invention relates to a communication system (110) and a method for the exchange of signals between a public telecommunication network (20) and at least one communication arrangement (100) via the communication system (110). The communication system comprises a network adapter unit (60) comprising a first signal port (65) which is connectable to the public telecommunication network (20) and a second signal port (340). It further comprises at least one subscriber adapter unit (70) comprising a third signal port for the exchange of signals with the second signal port, and a fourth signal port which is connectable to the communication arrangement (100). The subscriber adapter unit (70) is arranged to initiate a communication session in response to a connection signal. The network adapter unit (60) is arranged to produce a completion message at the network adapter unit (60) in response to reception, on the first signal port (65), of a disconnection signal from the public telecommunication network (20).
Abstract:
Method in an identification module SIM of a device in a mobile communication system. The SIM provides S7 a first subscriber identity IMSI_F to the device and thus receives S9 updates for a list of forbidden networks FPLMN stored in a memory of the identification module. According to the present solution the SIM uses S11, S17 the received updates as a list of available networks for a second subscriber identity IMSI_ P and provides S15 the second subscriber identity IMSI_P to the device.
Abstract:
The invention relates to methods and devices in a mobile communications system for over the air management of mobile stations containing a secure identification element, preferably a subscriber identity module. Generally, the invention is based on the idea to use the standard challenge-response authentication procedure implemented in a mobile communications system not for its intended authentication purpose, but for providing a mobile station with subscription data. The standard challenge-response authentication procedure is modified in that the challenge is used as a carrier for subscription data. This challenge containing the subscription data is provided to the mobile station in response to a request of the mobile station to be allowed access or attachment to the mobile communications system containing a special mode indicator data element, which indicates to the mobile communications system that the mobile station is requesting subscription data and, therefore, is suitably forwarded to a data providing unit configured to provide subscription data.
Abstract:
The invention relates to a method for washing equipment, such as sights, sensors and the like (1, 5, 6, 7, 8), with washing medium (15) being sprayed out through one or several fixed nozzles (9, 10). The invention also Relates to a washing arrangement working according to the method and comprising fixed nozzles (9, 10), with pipes connected to the nozzles for conveying washing medium (15) from a container by means of a pump arrangement. The washing is carried out by the part of the equipment that is to be washed being rotated into a washing zone formed by the fixed nozzles (9, 10) in conjunction with the washing medium (15). An even and effective washing of the equipment is achieved by means of the invention.
Abstract:
The present invention relates to an intelligent mobile telecommunications network arrangement providing services. The network arrangement comprises means for providing communication within the Mobile and Intelligent Networks respectively and between at least one logical node of the Intelligent Network and at least one logical node of the Mobile Network. These means comprise first means (X-MAP) providing communication between a first logical node of the Mobile Network and a second logical node of the Mobile Network. The means further comprises a first interconnecting means (INAPX) separate from said first intraconnecting means (X-MAP), for providing communication between said first logical node of the Mobile Network (HLR/SDP) and a first logical node of the Intelligent Network (M-SCP).