<style>
/* Default Off-Canvas (Hidden) */
.e-off-canvas {
    z-index: 100;
    display: none;
    visibility: hidden;
    opacity: 0;
    transition: visibility 0s linear 0.2s, opacity 0.2s linear;
}

/* Show Off-Canvas */
.e-off-canvas-visible {
    display: block !important;
    visibility: visible !important;
    opacity: 1 !important;
    z-index: 9999 !important;
}

/* Hide Off-Canvas */
.e-off-canvas-hidden {
    visibility: hidden !important;
    opacity: 0 !important;
    z-index: 10 !important;
}

/* White Background Behind Off-Canvas (Using ::before on Body) */
body::before {
    content: "";
    position: fixed;
    top: 0;
    left: 0;
    width: 100vw;
    height: 100vh;
    background: rgba(255, 255, 255, 1); /* Solid White */
    opacity: 0;
    visibility: hidden;
    z-index: 9998; /* Just behind Off-Canvas */
    transition: opacity 0.2s linear, visibility 0s linear 0.2s;
}

/* When an Off-Canvas is Open, Show the Background */
body.off-canvas-active::before {
    opacity: 1;
    visibility: visible;
    transition: opacity 0.2s linear;
}
</style>

<script>
jQuery(function($) {
    // Function to force repaint/reflow
    function forceRepaint() {
        document.body.style.display = 'none';
        document.body.offsetHeight; // Force reflow
        document.body.style.display = 'block';
        window.dispatchEvent(new Event('resize'));
    }

    function closeAllOffCanvas(exceptID = null) {
        let anyOpen = false; // Track if another Off-Canvas remains open

        $(".e-off-canvas").each(function() {
            let canvasID = $(this).attr("id");

            if (!exceptID || canvasID !== exceptID) {
                $(this).removeClass("e-off-canvas-visible")
                       .addClass("e-off-canvas-hidden")
                       .attr("aria-hidden", "true")
                       .css({
                           "z-index": "10",
                           "visibility": "hidden",
                           "opacity": "0"
                       });

                // Full removal delay set to 0ms
                setTimeout(() => {
                    if ($(this).attr("aria-hidden") === "true") {
                        $(this).css("display", "none");
                    }
                }, 0);
            } else {
                anyOpen = true; // At least one Off-Canvas is still open
            }
        });

        // Remove white background delay set to 0ms
        setTimeout(() => {
            if (!$(".e-off-canvas-visible").length) {
                $("body").removeClass("off-canvas-active");
                forceRepaint(); // Force repaint when closing all
            }
        }, 0);
    }

    function openOffCanvas(targetID) {
        let targetCanvas = $(targetID);

        if (targetCanvas.length) {
            // Close all others EXCEPT the one we're opening
            closeAllOffCanvas(targetID);

            // Open immediately with delay set to 0ms
            setTimeout(() => {
                targetCanvas.removeClass("e-off-canvas-hidden")
                            .addClass("e-off-canvas-visible")
                            .attr("aria-hidden", "false")
                            .css({
                                "z-index": "9999",
                                "visibility": "visible",
                                "opacity": "1",
                                "display": "block"
                            });

                // Ensure the White Background Stays Visible
                $("body").addClass("off-canvas-active");
                
                // Force repaint after opening
                forceRepaint();

            }, 0);
        }
    }

    // Decode Base64
    function decodeBase64(str) {
        try {
            return atob(str);
        } catch (e) {
            return null;
        }
    }

    // Handle Elementor Off-Canvas OPEN clicks
    $(document).on('click', '[href*="elementor-action%3Aaction%3Doff_canvas%3Aopen"]', function(event) {
        event.preventDefault();
        let href = decodeURIComponent($(this).attr("href"));

        let base64Match = href.match(/settings=([^&]+)/);
        if (base64Match) {
            let decodedSettings = decodeBase64(base64Match[1]);

            try {
                let settingsObj = JSON.parse(decodedSettings);
                if (settingsObj.id) {
                    let offCanvasID = "#off-canvas-" + settingsObj.id;
                    openOffCanvas(offCanvasID);
                }
            } catch (e) {}
        }
    });

    // Handle Elementor Off-Canvas CLOSE clicks
    $(document).on('click', '[href*="elementor-action%3Aaction%3Doff_canvas%3Aclose"]', function(event) {
        event.preventDefault();
        closeAllOffCanvas();
    });

    // Ensure all Off-Canvas elements start hidden
    $(".e-off-canvas").each(function() {
        $(this).attr("aria-hidden", "true").css({
            "z-index": "10",
            "visibility": "hidden",
            "opacity": "0",
            "display": "none"
        });
    });

    // Handle same-page anchor link clicks
    $(document).on('click', 'a[href*="#"]', function(event) {
        let href = $(this).attr('href');
        if (href.indexOf('#') !== -1) {
            // Close all off-canvas widgets when an anchor link is clicked
            closeAllOffCanvas();
        }
    });

});
</script>
				
			

„Energie- und Ressourcenverbrauch senken“ ARIC unterstützt das Konsortium Opti.Prod.NRW

Dortmunds Technologiepark war am 24.01.2020 der Schauplatz des Kickoff-Meetings zum Forschungsprojekt Optiprod.NRW, das von INOSIM koordiniert wird.

Die Prozessindustrie (Chemie, Öl & Gas, Biotech, Pharma) ist ein wichtiger Industriezweig. Ihre Wettbewerbsfähigkeit hängt maßgeblich von einer guten Planung der Produktion ab. Heutzutage wird die Produktionsplanung oft händisch durchgeführt, was langwierig, teuer und ineffizient ist.

Im Projekt OptiProd.NRW entwickeln IKT-Experten der Firma INOSIM Software GmbH und Wissenschaftler des Lehrstuhls für Systemdynamik und Prozessführung (DYN) der Technischen Universität Dortmund zusammen mit der Bayer AG, ein neues Softwaresystem, das modernste Methoden der mathematischen Optimierung nutzt, um automatisch optimale Produktionspläne zu berechnen.

Optimale Produktionspläne werden die Umweltbelastung sowie den Energie- und Ressourcenverbrauch der Prozessindustrie senken und die Leistung von Produktionsanlagen erhöhen.

Unterstützt und beraten werden die Projektpartner durch die Evonik Technology & lnfrastructure GmbH, die Innovations Kontakt Stelle (IKS) Hamburg und durch das Artificial Intelligence Center Hamburg (ARIC).

Weiteren Informationen zum Projekt finden Sie unter https://www.optiprod.nrw/
Projektinfos: Jan Ruhnke und Steven Dehlan